科學(xué)研究:
研究方向:
主要研究方向為化學(xué)反應(yīng)工程(流態(tài)化工程),可再生能源,顆粒技術(shù),能源環(huán)境工程,能源環(huán)境材料,溫室氣體二氧化碳捕獲和利用技術(shù)。
承擔科研項目情況:
作為項目負責人,主持國家863項目、國家自然科學(xué)基金項目、國家海洋能項目、教育部新世紀優(yōu)秀人才、山東省自然科學(xué)杰出青年基金項目、山東省自然科學(xué)基金重點項目、中韓國際合作項目等項目28項。
一、縱向項目
1. 2021.1-2024.12,國家自然科學(xué)基金聯(lián)合基金重點項目,**********研究 (U20A20124),項目負責人。
2. 2019.01-2022.12,國家自然科學(xué)地區(qū)基金項目:****************研究 (21868025),主持人:郭慶杰。
3. 2018.05-2021.04,國家重點研發(fā)計劃課題:***********研究 (2018YFB0605401),主持人:郭慶杰。
4. 2020.01-2021.12,院地合作項目:**********研究(2020NXZD2),主持人:郭慶杰。
5. 2018.01-2020.12,寧夏回族自治區(qū)重點研發(fā)計劃重大項目:****************技術(shù)及示范(2018BCE01002),主持人:郭慶杰。
6. 2018.01-2021.12,寧夏回族自治區(qū)重點研發(fā)計劃課題:****************分析(2018BCE01004),主持人:郭慶杰。
7. 2017.01-2018.12,寧夏回族自治區(qū)重點研發(fā)計劃項目 煤/焦炭一步法制備甲烷關(guān)鍵技術(shù)(2016BY005),結(jié)題,項目負責人。
8. 2013.01–2016.12,國家自然科學(xué)基金面上項目:流動/多組分反應(yīng)對循環(huán)載氧體尺度、結(jié)構(gòu)和反應(yīng)活性影響(21276129), 結(jié)題,項目負責人。
9. 2008.01–2010.12,國家自然科學(xué)基金面上項目:CaSO4載氧顆粒/固體燃料化學(xué)鏈燃燒過程氧傳遞機理研究(20876079),結(jié)題,項目負責人。
10. 2006.01–2008.12,國家自然科學(xué)基金面上項目:超細可吸入顆粒氣固射流-聲場耦合包裹團聚脫除機理研究(20676064 ),結(jié)題,項目負責人。
11.2008.01–2010.12,教育部新世紀優(yōu)秀人才支持計劃:固體燃料串行流化床化學(xué)鏈燃燒應(yīng)用基礎(chǔ)研究(NCET-07-0473),結(jié)題,項目負責人。
12.2012.01–2015.12,“十二五”國家863項目:廢舊橡塑制備高強度工程材料及其工藝包(SS2012AA06213),結(jié)題,項目負責人。
13.2011.01–2012.12,國家海洋局能源專項: 海洋微藻生物柴油耦合電廠CO2減排技術(shù)及設(shè)備研究示范( GHME2001SW02),結(jié)題,項目負責人。
14.2015.01–2016.12,山東省自然科學(xué)基金重點項目:MW級煤炭載氧體化學(xué)鏈氣化系統(tǒng)關(guān)鍵基礎(chǔ)化學(xué)工程問題研究(ZR2015QZ02),項目負責人。
15.2010.01–2012.12,山東省自然科學(xué)杰出青年基金:復(fù)合載氧體顆粒/固體燃料顆;瘜W(xué)鏈燃燒應(yīng)用基礎(chǔ)研究(JQ 200904),結(jié)題,項目負責人。
16.2007.01–2009.12,山東省中青年科學(xué)家科研獎勵基金:生物質(zhì)雙流化床制備顆;钚蕴繖C理和技術(shù)研究(2006BS08002),結(jié)題,項目負責人。
17.2005.01–2009.12,山東省泰山學(xué)者建設(shè)工程項目:可再生資源的潔凈綜合利用過程若干化學(xué)工程關(guān)鍵問題研究( JS200510036),結(jié)題,項目負責人。
18.2014.01–2015.12,青島市應(yīng)用基礎(chǔ)研究計劃項目:微藻催化熱裂解液化機理及資源化研究(14-2-4-5-jch),結(jié)題,項目負責人。
19.主持泰山學(xué)者建設(shè)工程項目:“可再生能源潔凈綜合利用中的若干化學(xué)工程問題”。
二、國際合作與交流項目:
1、2012.01–2014.12, International cooperation project with Korea Institute of Energy, B3–2421–06, Development of Ca-based cheap oxygen carrier for solid fuel chemical looping combustion,結(jié)題,項目負責人。
三、橫向項目:
1、2009.11–2011.07,水煤漿氣化及煤化工國家工程研究中心,煤炭化學(xué)鏈載氧體制備合成氣技術(shù),結(jié)題, 項目負責人。
科研成果:
已在國內(nèi)外化學(xué)工程期刊上發(fā)表論文300余篇。第一作者或通訊作者65篇論文發(fā)表在國際化學(xué)工程領(lǐng)域重要期刊AIChE Journal, Industrial & Engineering Chemistry Research, Chemical Engineering Science,Chemical Engineering Journal,Chemical Engineering & Processing。論文已被SCI收錄108篇,EI收錄151篇。已申請和授權(quán)美國發(fā)明專利和中國發(fā)明專利42項,其中授權(quán)美國和中國發(fā)明專利32項。其中作為第一發(fā)明人授權(quán)美國發(fā)明專利1項,中國發(fā)明專利31項。
1. 缺陷與摻雜調(diào)制碳納米管載流子遷移率的理論模擬 白紅存;黃元河;王果;郭慶杰;吳玉花;冀永強;袁妮妮;馬雨佳 寧夏大學(xué) 2018
2. 高溫流化床流動反應(yīng)特性及放大規(guī)律 郭慶杰;劉永卓;胡修德;常國璋;白紅存;馬晶晶 寧夏大學(xué) 2016
3. 復(fù)合載氧體-固體燃料化學(xué)鏈轉(zhuǎn)化機理和技術(shù) 郭慶杰;劉永卓;田紅景;胡修德 寧夏大學(xué) 2014
4. 生物質(zhì)熱化學(xué)轉(zhuǎn)化的理論與應(yīng)用研究 王翠蘋;郭慶杰;王鳳印;齊艷 青島大學(xué) 2013
5. 流化床的混沌特性、超細顆粒流化、外場強化及耦合反應(yīng) 郭慶杰;田紅景;劉會娥 青島科技大學(xué) 2012
6. 流化床中混沌特性、外場強化規(guī)律與顆粒流化/反應(yīng)的耦合性能 郭慶杰;田紅景;王翠蘋 青島科技大學(xué) 2010
7. 媒循環(huán)流化床大規(guī)模氣化制氫集成技術(shù)研究 郭慶杰;劉會娥;劉寶勇;郭貞;陳爽;申文忠;梁治國;張玉貞 中國石油大學(xué) 2008
8. 耦合雙射流管流化床系列專利技術(shù)及應(yīng)用 郭慶杰;曹長青;韓清潔;田書顯;劉新民;徐東彥 青島科技大學(xué) 2005
國外發(fā)明專利:
1 Guo Qingjie, Yue Guangxi, A type of jetting fluidized bed with a separated gas distributor and the double nozzles. 2004,美國,授權(quán)專利號: US 6835355
國內(nèi)發(fā)明專利:
[1]馬利海,郭慶杰,張建利,趙天生,高新華,馬清祥. 一種鈣鈦礦型載氧體的制備方法和應(yīng)用[P]. CN112206783A,2021-01-12.
[2]郭慶杰,郭欣桐,潘鑫,胡修德,李彥坤. 一種碳捕集加壓燃煤供熱系統(tǒng)及運行方法[P]. CN112175675A,2021-01-05.
[3]郭慶杰,馬利海,張建利,趙天生,高新華,馬清祥. 一種鈣鈦礦型復(fù)合載氧體和應(yīng)用[P]. CN112169817A,2021-01-05.
[4]郭慶杰,郭欣桐,李彥坤,胡修德,潘鑫. 一種加壓煤化學(xué)鏈氣化裝置及制備高壓燃氣方法[P]. CN112175674A,2021-01-05.
[5]張建利,馬利海,郭慶杰,趙天生,高新華,馬清祥. 一種用于CO2加氫直接制低碳烯烴的催化劑和應(yīng)用[P]. CN112121803A,2020-12-25.
[6]張建利,馬利海,郭慶杰,趙天生,高新華,馬清祥. 一種CO加氫鐵基催化劑及其制備方法[P]. CN112121804A,2020-12-25.
[7]馬利海,張建利,郭慶杰. 一種加氫催化劑的制備方法和應(yīng)用[P]. CN112121806A,2020-12-25.
[8]郭慶杰,馬利海,張建利. 一種CO2加氫催化劑和應(yīng)用[P]. CN112121807A,2020-12-25.
[9]郭慶杰,馬利海,張建利. 一種鈣鈦礦催化劑的制備方法和應(yīng)用[P]. CN112121814A,2020-12-25.
[10]張建利,馬利海,郭慶杰,趙天生,高新華,馬清祥. 一種用于CO2加氫的鈣鈦礦催化劑和應(yīng)用[P]. CN112121815A,2020-12-25.
[11]張建利,馬利海,郭慶杰,趙天生,高新華,馬清祥. 一種加氫催化劑的載體和應(yīng)用[P]. CN112121867A,2020-12-25.
[12]郭慶杰,馬利海,張建利. 一種CO2加氫催化劑的制備方法及應(yīng)用[P]. CN112076755A,2020-12-15.
[13]劉永卓,趙書菊,宋鳴航,王濤,郭慶杰,張秀麗,吳曼. 一種耦合固體燃料反應(yīng)與分離的化學(xué)鏈轉(zhuǎn)化裝置及方法[P]. CN110500578B,2020-11-06.
[14]郭慶杰,吳唯,常國璋,胡修德. 一種用于煤制氣甲烷合成催化劑的制備方法[P]. CN111760576A,2020-10-13.
[15]吳曼,毛林,姜敬霞,郭慶杰,張秀麗,劉永卓. 一種以煤氣化細渣為原料制備磁性活性炭NaX分子篩復(fù)合材料的方法[P]. CN111715196A,2020-09-29.
[16]劉永卓,趙書菊,張欣濤,劉濤,郭慶杰. 一種基于化學(xué)鏈的低階煤和生物質(zhì)分級利用裝置及方法[P]. CN110437882B,2020-09-29.
[17]裴彥鵬,郭慶杰,胡修德. 一種合成金屬有機框架材料Co-MOF-71的方法[P]. CN107099038B,2020-06-19.
[18]馬晶晶,李金帥,郭慶杰. 一種鈉修飾化學(xué)鏈制氫協(xié)同CO2捕集系統(tǒng)[P]. CN111153381A,2020-05-15.
[19]馬晶晶,李金帥,郭慶杰. 一種用于化學(xué)鏈制氫復(fù)合載氧體及其制備[P]. CN111154526A,2020-05-15.
[20]郝健,王秀,郭慶杰. 一種基于紙張制備硫氧共摻雜多孔碳的方法[P]. CN110902678A,2020-03-24.
[21]郭慶杰,左成,吳曼,劉永卓,安陽,袁思杰. 一種多金屬復(fù)合載氧體的制備方法[P]. CN110898844A,2020-03-24.
[22]郭慶杰、郭欣桐、潘鑫、胡修德、李彥坤. 一種可實現(xiàn)碳捕集的加壓燃煤供熱系統(tǒng)及運行方法,專利申請?zhí)枺篊N202011068137.2,2020
[23]馬晶晶,郭慶杰. 一種用于化學(xué)鏈制氫復(fù)合載氧體及其制備,專利申請?zhí)枺?02010012167.5, 2020
[24]郭慶杰,左成,吳曼,張秀麗. 一種用于丙烷化學(xué)鏈脫氫制丙烯的載氧體制備方法[P]. CN109482174B,2019-12-03.
[25]劉永卓,趙書菊,宋鳴航,王濤,郭慶杰,張秀麗,吳曼. 一種耦合固體燃料反應(yīng)與分離的化學(xué)鏈轉(zhuǎn)化裝置及方法[P]. CN110500578A,2019-11-26.
[26]劉永卓,趙書菊,郭慶杰,劉濤,張秀麗,趙軍. 一種強化雙組分固體顆;旌系目焖倭骰磻(yīng)系統(tǒng)[P]. CN110452740A,2019-11-15.
[27]劉永卓,趙書菊,張欣濤,劉濤,郭慶杰. 一種基于化學(xué)鏈的低階煤和生物質(zhì)分級利用裝置及方法[P]. CN110437882A,2019-11-12.
[28]裴彥鵬,郭慶杰,胡修德. 一種CO加氫制低碳混合醇的催化劑及其制備方法[P]. CN106975486B,2019-10-25.
[29]郝健,夏洪強,郭慶杰. 一種二氧化碳變電容吸脫附裝置[P]. CN209490646U,2019-10-15.
[30]郭慶杰,左成,吳曼,張秀麗. 一種用于丙烷化學(xué)鏈脫氫制丙烯的載氧體制備方法[P]. CN109482174A,2019-03-19.
[31]郭慶杰,王燕霞,胡修德. 一種以固體廢棄物為基體制備的復(fù)合材料及制備方法[P]. CN109467799A,2019-03-15.
[32]郭慶杰,王燕霞,胡修德. 一種改性廢棄汽車熱固性塑料填充熱塑性樹脂的方法[P]. CN109467800A,2019-03-15.
[33]郭慶杰,安梅,胡修德. 一種煤化學(xué)鏈氣化制富氫合成氣中磁性載氧體及其制備[P]. CN109433212A,2019-03-08.
[34]郝健,夏洪強,郭慶杰. 一種可控調(diào)節(jié)氮摻雜量的多孔碳及其制備方法[P]. CN109279594A,2019-01-29.
[35]郝健,夏洪強,郭慶杰. 一種二氧化碳變電容吸脫附裝置[P]. CN109012011A,2018-12-18.
[36]馬晶晶,郭慶杰. 一種用于測量煤熱解氣單質(zhì)汞含量的裝置及方法[P]. CN108020601A,2018-05-11.
[37]馬晶晶,郭慶杰. 一種煤熱解氣單質(zhì)汞取樣系統(tǒng)[P]. CN107991144A,2018-05-04.
[38]趙軍,郭慶杰,周鈺寒. 一種胺基改性二氧化硅氣凝膠的制備方法[P]. CN107162007A,2017-09-15.
[39]趙軍,郭慶杰,周鈺寒. 一種疏水廢紙纖維素氣凝膠復(fù)合材料及其制備方法[P]. CN107126932A,2017-09-05.
[40]裴彥鵬,郭慶杰,胡修德. 一種合成金屬有機框架材料Co#MOF#71的方法[P]. CN107099038A,2017-08-29.
[41]趙軍,郭慶杰,周鈺寒. 一種銀/碳纖維素氣凝膠超級電容器電極材料的制備方法[P]. CN107017095A,2017-08-04.
[42]裴彥鵬,郭慶杰,胡修德. 一種CO加氫制低碳混合醇的催化劑及其制備方法[P]. CN106975486A,2017-07-25.
[43]郭慶杰,趙梅杰,吳曼,趙軍. 一種增強增韌廢舊汽車保險杠/高粱秸稈外皮粉復(fù)合材料的制備方法[P]. CN106634011A,2017-05-10.
[44]馬晶晶, 郭慶杰. 一種用于測量煤熱解氣單質(zhì)汞含量的裝置,CN108020601A,2017
[45]郭慶杰,王燕霞,胡修德. 一種以固體廢棄物為基體制備的復(fù)合材料及制備方法,專利申請?zhí)枺?01710805527.5
[46]郭慶杰,王燕霞,胡修德. 一種改性廢棄汽車熱固性塑料填充熱塑性樹脂的方法,專利申請?zhí)枺?01710806011.2
[47]劉永卓,郭慶杰,劉濤,岳永強,燕希敏,張秀麗,汪合龍. 一種基于煤化學(xué)鏈氣化直接制備甲烷的裝置及方法[P]. CN106220461A,2016-12-14.
[48]劉永卓,郭慶杰,萬奇順,王博,張秀麗. 一種固體燃料化學(xué)鏈轉(zhuǎn)化的多室流化床裝置[P]. CN106196027A,2016-12-07.
[49]郭寶貴,郭慶杰,韓梅,傅進軍,王軍,田紅景,于利紅,金剛. 一種氣化爐[P]. CN204400927U,2015-06-17.
[50]郭寶貴,郭慶杰,韓梅,傅進軍,王軍,田紅景,于利紅,金剛. 一種氣化爐[P]. CN104560211A,2015-04-29.
[51]李磊,郭慶杰,郭寶貴,田紅景,于利紅,劉永卓,李彩艷,趙梅梅,荊波,褚夫奎,尹立志,金剛,路文學(xué),傅進軍,李海鳴,王軍. 一種用于煤炭化學(xué)鏈載氧體制備合成氣技術(shù)的工藝流程[P]. CN103695040A,2014-04-02.
[52]郭慶杰,白少峰,王許云,劉永卓,杜留娟. 一種煤制天然氣用催化劑的制備方法[P]. CN103551160A,2014-02-05.
[53]田紅景,昌晶,韓明棟,孫廣林,郭慶杰. 一種從煙氣中脫除SO2制備硫單質(zhì)顆粒的脫硫裝置及方法[P]. CN103301744A,2013-09-18.
[54]郭慶杰,張璇,韓敏,陳琳琳,曲健林,田紅景,王許云. 一種硼氫化鈉水解制氫裝置[P]. CN103253631A,2013-08-21.
[55]劉新民,郭慶杰,王振,宮本月,王許云. 一種厭氧流化床微生物燃料電池堆棧裝置[P]. CN102916208A,2013-02-06.
[56]郭慶杰,吳曼,王許云,劉魯燕,田紅景,劉永卓. 一種廢棄電路板非金屬顆粒流化床包覆裝置及方法[P]. CN102784589A,2012-11-21.
[57]郭慶杰,仲衛(wèi)成,王許云,常聰,時艷,劉永卓. 一種微藻熱裂解油的精制工藝[P]. CN102786986A,2012-11-21.
[58]王許云,劉興倩,郭慶杰,岳學(xué)海,白立俊. 一種導(dǎo)電復(fù)合物修飾碳基材料微生物燃料電池復(fù)合陽極的制備方法[P]. CN102780010A,2012-11-14.
[59]王許云,郭慶杰,王新,田紅景. 一種聚偏氟乙烯平板微孔膜的制備方法[P]. CN102658037A,2012-09-12.
[60]郭慶杰,付國家,郭拓,劉新民,田紅景,王許云. 一種生物質(zhì)藥用炭的制備方法[P]. CN102442666A,2012-05-09.
[61]王許云,郭慶杰,杜曉梅,付國家. 一種用啤酒糟制備纖維素酶和活性炭的方法[P]. CN102433315A,2012-05-02.
[62]郭慶杰,劉新民,李超,王許云,田紅景. 一種廢舊汽車破碎殘渣催化氣化裝置[P]. CN102433165A,2012-05-02.
[63]王許云,郭慶杰,趙書菊,岳學(xué)海,孔維芳. 一種液固流化床微生物燃料電池產(chǎn)氫裝置[P]. CN102208668A,2011-10-05.
[64]徐東彥,戴萍,郭慶杰. 一種用于硼氫化物水解制氫的整體催化劑及其制備方法[P]. CN102125836A,2011-07-20.
[65]郭寶貴,郭慶杰,劉永卓,張鴻林,王許云,張濤,田紅景,金剛,路文學(xué),劉新民,張新鳳,徐東彥,李磊,付進軍,劉可,張大晶,李彩艷. 一種用于煤基化學(xué)鏈過程的雙循環(huán)流化床裝置[P]. CN101975395A,2011-02-16.
[66]郭寶貴,郭慶杰,劉永卓,張鴻林,王許云,張濤,田紅景,金剛,路文學(xué),劉新民,張新鳳,徐東彥,李磊,付進軍,劉可,張大晶,李彩艷. 一種煤炭顆粒/載氧體化學(xué)鏈制備合成氣的方法及其裝置[P]. CN101962575A,2011-02-02.
[67]郭慶杰,郭寶貴,田紅景,張鴻林,王許云,張濤,劉新民,金剛,路文學(xué),劉永卓,張新鳳,李磊,付進軍,劉可,張大晶,李彩艷. 一種多功能復(fù)合型載氧體顆粒的制備方法[P]. CN101906344A,2010-12-08.
[68]郭慶杰,郭寶貴,田紅景,張鴻林,王許云,張濤,劉永卓,金剛,劉新民,路文學(xué),張新鳳,李磊,付進軍,劉可,張大晶,李彩艷. 一種抑制含硫氣體釋放的載氧體顆粒制備方法[P]. CN101906345A,2010-12-08.
[69]郭慶杰,郭寶貴,田紅景,張鴻林,王許云,路文學(xué). 一種復(fù)合型載氧體顆粒的制備方法[P]. CN101892110A,2010-11-24.
[70]郭慶杰,侯良玉,王許云,耿啟金,徐東彥,趙書菊,楊振楠. 一種耦合催化重整與膜分離反應(yīng)制氫方法及其裝置[P]. CN101837955A,2010-09-22.
[71]郭慶杰,耿啟金,劉永卓. 一種聲光耦合環(huán)隙光催化流化床降解VOCs裝置[P]. CN101837242A,2010-09-22.
[72]郭慶杰,田紅景,王洪敏,劉永卓. 一種復(fù)合型載氧體顆粒的制備方法[P]. CN101502773,2009-08-12.
[73]郭慶杰,司崇殿,張健,徐東彥,曹長青. 一種顆粒狀活性炭的制備裝置[P]. CN101475169,2009-07-08.
[74]郭慶杰,趙書菊,王許云,岳學(xué)海,劉新民. 厭氧流化床空氣陰極微生物燃料電池裝置[P]. CN101462785,2009-06-24.
[75]郭慶杰,田紅景,徐東彥. 雙分布板煤基串行流化床化學(xué)鏈燃燒裝置[P]. CN101261010,2008-09-10.
[76]郭慶杰,耿啟金,曹長青,司崇殿,劉新民. 光催化流化床反應(yīng)器降解可揮發(fā)性有機物的裝置[P]. CN101234291,2008-08-06.
[77]王志奇,郭慶杰. 廢聚苯乙烯微米級球形顆粒的制備方法[P]. CN101230152,2008-07-30.
[78]郭慶杰,司崇殿,曹長青,徐東彥,劉新民. 生物質(zhì)雙流化床制取活性炭的裝置[P]. CN101164877,2008-04-23.
[79]郭慶杰,孫德帥,曹長青,王志奇,劉新民,徐東彥. 氣固射流-聲場超細顆粒耦合包裹團聚裝置[P]. CN101091860,2007-12-26.
[80]申文忠,劉以紅,郭慶杰,路勝旗,孫宗禮,盛奎龍,潘金亮. 一種用于輕質(zhì)油品氧化脫氮的催化劑及其制備方法[P]. CN1919454,2007-02-28.
[81]申文忠,王先鋒,劉以紅,曹炳鋮,郭慶杰,張艷姝. 一種用于輕質(zhì)油品氧化脫硫的催化劑及其制備方法[P]. CN1803992,2006-07-19.
[82]郭慶杰,梁治國,申文忠,楊向平. 雙上升管循環(huán)流化床煤氣化裝置[P]. CN1749368,2006-03-22.
[83]郭慶杰,申文忠,陳爽,張建,劉會娥. 一種污水污泥催化熱解制取液體燃料的裝置及其應(yīng)用方法[P]. CN1743415,2006-03-08.
[84]郭慶杰,李彥,劉會娥,梁治國,陳爽,王銘華. 一種流化床粘性顆粒的包裹裝置[P]. CN1663673,2005-09-07.
[85]郭慶杰,梁治國,張玉貞,盧水根. 一種風帽氣體分布板[P]. CN1583237,2005-02-23.
[86]呂俊復(fù),岳光溪,郭慶杰,劉青,王昕. 一種流化床發(fā)生高溫煙氣的方法及裝置[P]. CN1341823,2002-03-27.
[87]李登新,張建勝,呂俊復(fù),郭慶杰,岳光溪. 一種正燃式蜂窩狀煙煤無煙燃燒型煤[P]. CN1336420,2002-02-20.
[88]郭慶杰,王啟民,徐孟,呂俊復(fù),岳光溪,王昕. 一種混合物料初始粘結(jié)溫度的測試方法及裝置[P]. CN1323986,2001-11-28.
[89]郭慶杰,王昕,呂俊復(fù),岳光溪. 流化床內(nèi)顆粒最小粘結(jié)溫度的測試裝置及方法[P]. CN1290834,2001-04-11.
[90]郭慶杰,岳光溪. 分隔式分布板雙射流管射流流化床[P]. CN1273877,2000-11-22.
[91]張濟宇,郭慶杰,張鴻,劉振宇. 射流流化床壓力信號測試探針及其應(yīng)用方法[P]. CN1268661,2000-10-04.
[92]張濟宇,郭慶杰,劉振宇,羅國華. 一種多射流流化床[P]. CN2373172,2000-04-12.
論文專著:
已在國內(nèi)外化學(xué)工程期刊上發(fā)表論文347篇,其中157篇論文發(fā)表在國際化學(xué)工程期刊上。第一作者42篇論文發(fā)表在AIChE Journal等重要國際化學(xué)工程期刊,其中在國家化學(xué)工程三種重要期刊AIChE Journal,Industrial Engineering & Chemistry Research, Chemical Engineering Science上發(fā)表論文31篇。論文被SCI收錄116篇,EI收錄143篇。
出版專著:
[1]郭慶杰編著. 溫室氣體二氧化碳捕獲和利用技術(shù)進展. 化學(xué)工業(yè)出版社. 北京. 2010
發(fā)表英語論文:
[1]Qingjie Guo*, Jiyu Zhang, J. Werther. Jetting Transition Velocity in a Jetting Fluidized Bed with Two Nozzles. Chemical Engineering Journal. 2003, 92(1–3): 63–67. (SCI, IF=5.310)
[2]Qingjie Guo*, Guangxi Yue, Toshiyuki SUDA, Junichi SATO, Flow Characteristics in a bubbling fluidized bed at Elevated Temperature, Chemical Engineering & Processing, 2003, 42(6): 439–447. (SCI, IF=2.154)
[3]Qingjie Guo*, Joachim Werther, Cornelis Aue-Klett, Ernst-Ulrich Hartge. Flow maldistribution at bubble cap distributor in a plant-scale CFB riser, AIChE Journal. 2005, 51(5): 1359–1366. (SCI, IF=2.980)
[4]Qingjie Guo*, Wenzhong Shen, Huie Liu, Influence of sound wave characteristics on fluidization behaviors of ultrafine particles, Chemical Engineering Journal, 2006, 119(1): 1–9. (SCI, IF=5.310)
[5]STRONG>Qingjie Guo, Joachim Werther, Influence of a gas maldistribution of the distributor design on the hydrodynamics of a CFB riser, Chemical Engineering & Processing, 2008, 47: 237–244. (SCI, IF=2.154)
[6]Chongdian Si, Qingjie Guo*, Fluidization Characteristics of Binary Mixtures of Biomass and Quartz Sand in an Acoustic Fluidized Bed, Industrial and Engineering Chemistry Research, 2008, 47(3): 9773–9782. (SCI, IF=2.567)
[7]Qijin Geng, Qingjie Guo*, Changqing Cao, Yunchen Zhang, and Lintong Wang, Investigation into Photocatalytic Degradation of Gaseous Ammonia in CPCR, Industrial & Engineering Chemistry Research, 2008, 47(13): 4363–4368. (SCI, IF=2.567)
[8]Hongjing Tian, Qingjie Guo*, Dingyan Xu, Hydrogen generation from catalytic hydrolysis of alkaline sodium borohydride solution using attapulgite clay-supported Co-B catalyst, Journal of Power Sources, 2010,195(8): 2136–2142. (SCI, IF=6.333)
[9]Qingjie Guo*, Xuehai Yue, Minghua Wang, Yongzhuo Liu, Pyrolysis of Scrap Printed Circuit Board Plastic Particles in a Fluidized Bed, Powder Technology, 2010, 198: 422–428. (SCI, IF=2.759)
[10]Qijin Geng, Qingjie Guo*, Xuehai Yue, Adsorption and Photocatalytic Degradation Kinetics of Gaseous Cyclohexane in an Annular Fluidized Bed Photocatalytic Reactor, Industrial & Engineering Chemistry Research, 2010, 49 (10): 4644–4652. (SCI, IF=2.567)
[11]Qingjie Guo*, Chongdian Si, Jian Zhang,F(xiàn)low characteristics in a jetting fluidized bed with acoustic assistance, Industrial & Engineering Chemistry Research, 2010, 49 (16): 7638–7645. (SCI, IF=2.567)
[12]Weifang Kong, Qingjie Guo*, Xuyun Wang, and Xuehai Yue, Electricity Generation from Wastewater Using an Anaerobic Fluidized Bed Microbial Fuel Cell, Industrial & Engineering Chemistry Research, 2011, 50 (21): 12225–12232. (SCI, IF=2.567)
[13]Qingjie Guo*, Zhennan Yang, Jianshe Zhang, Influence of combined external field on agglomeration of inhalable particles from coal combustion plant, Powder Technology, 2012, 227: 67–73. (SCI, IF=2.759)
[14]Qingjie Guo*, Chao Li, Xinmin Liu, Jinhui Li, TG–MS study of the thermo-oxidative behaviors of plastic automobile shredder residues, Journal of Hazardous Materials, 2012, 209-210: 443–448. (SCI, IF=4.836)
[15]Jianshe Zhang, Qingjie Guo*, Yu Cheng, Yongzhuo Liu, Preparation and characterization of Fe2O3/Al2O3 using the solution combustion approach for chemical looping combustion. Ind. Eng. Chem. Res., 2012, 51 (39): 12773–12781. (SCI, IF=2.567)
[16]Qingjie Guo*, Yu Cheng, Yongzhuo Liu, Weihua Jia, Ho-Jung Ryu, Coal Chemical Looping Gasification Process for Syngas Generation Using Fe-based Oxygen Carrier, Ind. Eng. Chem. Res., 2014, 53 (1): 78–86. (SCI, IF=2.567)
[17]Man Wu, Qingjie Guo*, Luyan Liu, Hydrodynamic performance of Spout-Fluid Bed with Draft Tube at Different Temperature, Ind. Eng. Chem. Res. 2014, 53 (5): 1999–2010. (SCI, IF=2.567)
[18]Xia Wang, Linlin Chen, Qingjie Guo. Development of hybrid amine-functionalized MCM-41 sorbents for CO2 capture, Chemical Engineering Journal, 2015, 260: 573–581. (SCI, IF=5.310)
[19]Xia Wang, Qingjie Guo*, Tongtong Kong, Tetraethylenepentamine-Modified MCM-41/Silica gel with Hierarchical Mesoporous Structure for CO2 Capture, Chemical Engineering Journal, Chemical Engineering Journal, 2015, 273: 472–480. (SCI, IF=5.310)
[20]Qingjie Guo*, Mingming Yang, Yongzhuo Liu, Qinqin Yang, Yunpeng Zhang, Multicycle investigation of a sol-gel-derived Fe2O3/ATP oxygen carrier for coal chemical looping combustion, AIChE Journal, 2016, 62(4):996–1006 (SCI, IF=2.980)
[21]常國璋,苗鵬,王洪超,王凌云,胡修德,郭慶杰*.A synergistic effect during the co-pyrolysis of Nannochloropsis sp. and palm kernel shell for aromatic hydrocarbon production.Energy Conversion and Management,173,545-554.
[22]常國璋,燕希敏,齊鵬宇,安梅,胡修德,郭慶杰*.Characteristics of reactivity and structures of palm kernel shell (PKS) biochar during CO2/H2O mixture gasification.Chinese Journal of Chemical Engineering,26(10),2153-2161.
[23]郝健,潘磊,張航川,遲彩霞,郭慶杰,趙九蓬⁎,楊宇,劉曉旭,馬曉軒,李垚⁎.A general method for high-performance Li-ion battery Ge composites electrodes from ionic liquid electrodeposition without binders or conductive agents: The cases of CNTs, RGO and PEDOT.Chemical Engineering Journal,346 ,427.
[24]郝健⁎,王燕霞,遲彩霞,王晶,郭慶杰,楊宇,李垚,劉曉旭,趙九蓬⁎.Enhanced storage capability by biomass-derived porous carbon for lithium-ion and sodium-ion battery anodes.Sustainable Energy Fuels,2, 2358.
[25]Boyang Bai, Qingjie Guo⁎, Yankun Li, Xiude Hu ,Jingjing Ma.Catalytic Gasification of Crushed Coke and Changes of Structural .Energy Fuels,2,3356-3367.
[26] Mei An, Jingjing Ma, Qingjie Guo, Transformation and migration of mercury during chemical-looping gasification of coal,Industrial & Engineering Chemistry Research. 2019, 58(44): 20481-20490.
[27] Yanxia Wang, Xiude Hu, Jian Hao, Rong Ma, Qingjie Guo*, Hongfeng Gao, Hongcun Bai, Nitrogen and oxygen codoped porous carbon with superior CO2 adsorption performance: A combined experimental and DFT calculation study, Industrial & engineering chemistry research, 2019,58 (29),13390-13400
[28] Guo X, Chang G, Tan X, Qingjie Guo,et al. Kinetics of Coal Char Gasification with Fe-Based Oxygen Carriers under Pressured Conditions[J]. Energy & Fuels. 2020, 34(6): 6879-6893.
[29] Pengcheng Shi , Guozhang Chang , Xiaoli Tan, Qingjie Guo*. Enhancement of bituminous coal pyrolysis for BTX production by Fe2O3/MoSi2-HZSM-5 catalysts.Journal of Analytical and Applied Pyrolysis. 2020,150: 104867
[30] Mei An, Qingjie Guo, Jingjing Ma, Xiude Hu. Chemical-looping Gasification of coal with CuFe2O4 oxygen carriers: the reaction characteristics and structural evolution, The Canadian Journal of Chemical Engineering, 2020; 1-13.
[31] Yanxia Wang, Tuo Guo, Xiude Hu, Jian Hao, Qingjie Guo*, Mechanism and kinetics of CO2 adsorption for TEPA- impregnated hierarchical mesoporous carbon in the presence of water vapor, Powder technology, 2020,368,227-236
[32]Rong Ma, Jian Hao, Guozhang Chang, Yanxia Wang and Qingjie Guo*. Nitrogen‐Doping Microporous Adsorbents Prepared from Palm Kernel with Excellent CO2 Capture Property.THE CANADIAN JOURNAL OF CHEMICAL ENGINEERING, 2020,98: 503-512.
[33]Yanxia Wang, Xiude Hu, Tuo Guo, Jian Hao, Chongdian Si, Qingjie Guo*, Efficient CO2 adsorption and mechanism on nitrogen-doped porous carbons, Frontiers of chemical science and engineering, 2020,DOI:10.1007/s11705-020-1967-0
[34]Fei Xie, Mei An, Ping Li ⁎, Xiude Hu, Hongcun Bai, Qingjie Guo.Simulation study on the gasification process of Ningdong coal with iron-based oxygen carrier.Chinese Journal of Chemical Engineering,2020
[35]Jian Hao, * Xiu Wang, Yanxia Wang, Xiaoyong Lai, Qingjie Guo, Jiupeng Zhao, Yu Yang and Yao Li.Hierarchical structure N, O-co-doped porous carbon/carbon nanotube composite derived from coal for supercapacitors and CO2 capture.Nanoscale Adv,
[36]Mei An, Qingjie Guo, Jingjing Ma. Investigation of Chemical-looping Gasification Characteristics of Chinese Western Coals with Hematite-CuO Oxygen Carrier, China Petroleum Processing & Petrochemical Technology, Accepted.
[37]Jiameng Hu, Jingjing Ma * , Mei An, QingjieGuo * . Behavior of selenium during chemical-looping gasification of coal using a copper-based oxygen carrier. Journal of Thermal Analysis and Calorimetry(SCI). (under review)
[38]Nini Yuan, Hongcun Bai, Mei An, Jinpeng Zhang, Xiude Hu and Qingjie Guo. Modulation of Fe-based oxygen carriers by low concentration doping of Cu in chemical looping process: reactivity and mechanism based on experiments combined with DFT calculations.Powder Technology,under review.
[39]Xin Pan, Jingjing Ma, Xiude Hu*, Qingjie Guo*. Energy and Economic Analysis of a Hydrogen and Ammonia Co-generation System Based on Double Chemical Looping. Chinese J. Chem. Eng., 2020.DOI: https://doi.org/10.1016/j.cjche.2020.10.007.
[40] Yanxia Wang, Xiude Hu, Tuo Guo, Wengang Tian, Jian Hao, Qingjie Guo*,The competitive adsorption mechanism of CO2 , H2O and O2 on a solid amine adsorbent,Chemical Engineering Journal,
Volume 416,2021,129007,ISSN 1385-8947,https://doi.org/10.1016/j.cej.2021.129007.
[41] Wu, J. L., G. Z. Chang, X. Li, J. H. Li, and Q. J. Guo*. "Effects of Naoh on the Catalytic Pyrolysis of Lignin/Hzsm-5 to Prepare Aromatic Hydrocarbons." [In English]. Article. Journal of Analytical and Applied Pyrolysis 146 (Mar 2020): 9 104775.
[42] Zhang, X. L., C. H. Li, Q. J. Guo*, and K. L. Huang. "Performance of Anaerobic Fluidized Bed Microbial Fuel Cell with Different Porous Anodes." [In English]. Article. Chinese Journal of Chemical Engineering 28, no. 3 (Mar 2020): 846-53.
[43] Guo, Q. J*., L. Yang, K. Wang, X. F. Xu, M. Wu, and X. L. Zhang. "Effect of Hydration-Calcination Cao on the Deoxygenation of Bio-Oil from Pyrolysis of Nannochloropsis Sp." [In English]. Article. International Journal of Green Energy 16, no. 14 (Nov 2019): 1179-88.
[44] Liu, T., Q. J. Guo*, and G. Z. Chang. "Enhancement of Low-Temperature Lignite Pyrolysis by Recycled Carbocoal for High-Quality Tar in Fixed-Bed Reactor." Article. Canadian Journal of Chemical Engineering 97, no. 6 (Jun 2019): 1792-802.
[45] Wang, X., W. L. Zeng, M. J. Song, F. L. Wang, X. D. Hu, Q. J. Guo*, and Y. Z. Liu. "Polyetheramine Improves the Co2 Adsorption Behavior of Tetraethylenepentamine-Functionalized Sorbents." [In English]. Article. Chemical Engineering Journal 364 (May 2019): 475-84.
[46] Wu, M., M. J. Zhao, G. Z. Chang, X. D. Hu, and Q. J. Guo*. "A Composite Obtained from Waste Automotive Plastics and Sugarcane Skin Flour: Mechanical Properties and Thermo-Chemical Analysis Updates." [In English]. Article. Powder Technology 347 (Apr 2019): 27-34.
[47] Yang, L., Q. J. Guo*, X. Wu, C. L. Tan, Y. Liu, C. Song, and F. Liu. "Effects of Bi2o3 on the Reactivity of Iron-Based Oxygen Carriers in Chemical Looping Combustion." [In English]. Article. Energy & Fuels 33, no. 4 (Apr 2019): 3594-601.
[48] Wang, H. C., G. Z. Chang, P. Y. Qi, X. Li, and Q. J. Guo*. "Preparation of Aromatic Hydrocarbons from Catalytic Pyrolysis of Microalgae/Palm Kernel Shell Using Pks Biochar-Based Catalysts." [In English]. Article. Energy & Fuels 33, no. 1 (Jan 2019): 379-88.
[49] Qi, P. Y., G. Z. Chang, H. C. Wang, X. L. Zhang, and Q. J. Guo*. "Production of Aromatic Hydrocarbons by Catalytic Co-Pyrolysis of Microalgae and Polypropylene Using Hzsm-5." [In English]. Article. Journal of Analytical and Applied Pyrolysis 136 (Nov 2018): 178-85.
[50] Chen, P., X. Q. Sun, M. G. Gao, J. J. Ma, and Q. J. Guo*. "Transformation and Migration of Cadmium During Chemical-Looping Combustion/Gasification of Municipal Solid Waste." [In English]. Article. Chemical Engineering Journal 365 (Jun 2019): 389-99.
[51] Wu, M., Q. J. Guo*, M. J. Zhao, and Y. Z. Chen. "Study on the Flow Behavior of Irregular Plastic Particles in a Spout-Fluid Bed with a Draft Tube." [In English]. Article. Particulate Science and Technology 36, no. 8 (2018): 945-54.
[52] Liu, Y. Z., M. G. Gao, X. T. Zhang, X. D. Hu, and Q. J. Guo*. "Characteristics of a Caso4 Composite Oxygen Carrier Supported with an Active Material for in Situ Gasification Chemical Looping Combustion of Coal." [In English]. Article. Rsc Advances 8, no. 41 (2018): 23372-81.
[53] Wang, X., and Q. J. Guo*. "Co2 Adsorption Behavior of Activated Coal Char Modified with Tetraethylenepentamine." [In English]. Article. Energy & Fuels 30, no. 4 (Apr 2016): 3281-88.
[54] Wu, M., Q. J. Guo*, H. L. Xie, and L. Y. Liu. "A New Empirical Equation for Minimum Spouting/Spout-Fluidization Velocity in Draft Tube Spout-Fluid Beds at Elevated Temperature." [In English]. Article. Canadian Journal of Chemical Engineering 93, no. 10 (Oct 2015): 1819-29.
[55] Wang, X., Q. J. Guo*, J. Zhao, and L. L. Chen. "Mixed Amine-Modified Mcm-41 Sorbents for Co2 Capture." [In English]. Article. International Journal of Greenhouse Gas Control 37 (Jun 2015): 90-98.
[56] Guo, Q. J*., X. D. Hu, Y. Z. Liu, W. H. Jia, M. M. Yang, M. Wu, H. J. Tian, and H. J. Ryu. "Coal Chemical-Looping Gasification of Ca-Based Oxygen Carriers Decorated by Cao." [In English]. Article. Powder Technology 275 (May 2015): 60-68.
[57] Guo, Q. J*., M. Wu, K. Wang, L. Zhang, and X. F. Xu. "Catalytic Hydrodeoxygenation of Algae Bio-Oil over Bimetallic Ni-Cu/Zro2 Catalysts." [In English]. Article. Industrial & Engineering Chemistry Research 54, no. 3 (Jan 2015): 890-99.
[58] Guo, Q. J*., Y. Z. Liu, W. H. Jia, M. M. Yang, X. D. Hu, and H. J. Ryu. "Performance of Ca-Based Oxygen Carriers Decorated by K2co3 or Fe2o3 for Coal Chemical Looping Combustion." [In English]. Article. Energy & Fuels 28, no. 11 (Nov 2014): 7053-60.
[59] Liu, Y. Z., W. H. Jia, Q. J. Guo*, and H. J. Ryu. "Effect of Gasifying Medium on the Coal Chemical Looping Gasification with Caso4 as Oxygen Carrier." [In English]. Article. Chinese Journal of Chemical Engineering 22, no. 11-12 (Nov 2014): 1208-14.
[60] Wang, X. Y., X. H. Yue, and Q. J. Guo*. "Production of Electricity During Wastewater Treatment Using Fluidized-Bed Microbial Fuel Cells." [In English]. Article. Chemical Engineering & Technology 37, no. 4 (Apr 2014): 703-08.
[61] Tian, H. J., X. D. Hu, J. Chang, M. D. Han, G. L. Sun, and Q. J. Guo*. "Simulation of a New Chemical-Looping Combustion Process without Sulfur Evolution Based on Ca-Based Oxygen Carrier." [In English]. Article. International Journal of Chemical Reactor Engineering 12, no. 1 (Jan 2014): 12.
[62] Wu, M., Q. J. Guo*, and L. Y. Liu. "Hydrodynamic Performance of a Spout-Fluid Bed with Draft Tube at Different Temperatures." [In English]. Article. Industrial & Engineering Chemistry Research 53, no. 5 (Feb 2014): 1999-2010.
[63] Guo, Q. J*., Y. Cheng, Y. Z. Liu, W. H. Jia, and H. J. Ryu. "Coal Chemical Looping Gasification for Syngas Generation Using an Iron-Based Oxygen Carrier." [In English]. Article. Industrial & Engineering Chemistry Research 53, no. 1 (Jan 2014): 78-86.
[64] Liu, J., X. Li, and Q. J. Guo*. "Study of Catalytic Pyrolysis of Chlorella with Gamma-Al2o3 Catalyst." [In English]. Proceedings Paper. Eighth China National Conference on Functional Materials and Applications 873 (2014): 562-66.
[65] Wu, M., Q. J. Guo*, and G. J. Fu. "Preparation and Characteristics of Medicinal Activated Carbon Powders by Co2 Activation of Peanut Shells." [In English]. Article. Powder Technology 247 (Oct 2013): 188-96.
[66] Zhang, X., Z. H. Wei, Q. J. Guo*, and H. J. Tian. "Kinetics of Sodium Borohydride Hydrolysis Catalyzed Via Carbon Nanosheets Supported Zr/Co." [In English]. Article. Journal of Power Sources 231 (Jun 2013): 190-96.
[67] Liu, Y. Z., and Q. J. Guo*. "Investigation into Syngas Generation from Solid Fuel Using Caso4-Based Chemical Looping Gasification Process." [In English]. Article. Chinese Journal of Chemical Engineering 21, no. 2 (Feb 2013): 127-34.
[68] Tian, H. J., J. Chang, and Q. J. Guo*. "Investigation into the Reactivity Behavior of Caso4 with Coal Chars in the Chemical Looping Combustion System." [In English]. Proceedings Paper. Applied Energy Technology, Pts 1 and 2 724-725 (2013): 1158-+.
[69] Guo, Q. J*., Z. N. Yang, and J. S. Zhang. "Influence of a Combined External Field on the Agglomeration of Inhalable Particles from a Coal Combustion Plant." [In English]. Article. Powder Technology 227 (Sep 2012): 67-73.
[70] Guo, Q. J*., X. Zhang, C. Li, X. M. Liu, and J. H. Li. "Tg-Ms Study of the Thermo-Oxidative Behavior of Plastic Automobile Shredder Residues." [In English]. Article. Journal of Hazardous Materials 209 (Mar 2012): 443-48.
[71] Liu, Guo, Q. JY. Z., Q. J. Guo*, Y. Cheng, and H. J. Ryu. "Reaction Mechanism of Coal Chemical Looping Process for Syngas Production with Caso4 Oxygen Carrier in the Co2 Atmosphere." [In English]. Article. Industrial & Engineering Chemistry Research 51, no. 31 (Aug 2012): 10364-73.
[72] Guo, Q. J*., J. S. Zhang, and H. J. Tian. "Recent Advances in Caso4 Oxygen Carrier for Chemical-Looping Combustion (Clc) Process." [In English]. Article. Chemical Engineering Communications 199, no. 11 (2012): 1463-91.
[73] Liu, X. M., Z. Wang, D. Y. Xu, and Q. J. Guo*. "Pyrolysis of Waste Plastic Crusts of Televisions." [In English]. Article. Environmental Technology 33, no. 17 (2012): 1987-92.
[74] Si, C. D., J. Zhou, Q. J. Guo*, and G. J. Liu. "The Effect of Acoustic Field on the Particle Concentration Profiles in Fluidized Bed." [In English]. Article. International Journal of Chemical Reactor Engineering 10 (2012): 12 A85.
[75] Tian, H. J., Q. J. Guo*, and J. S. Zhang. "Investigation into Hydrolysis of Alkaline Sodium Borohydride Solution Using Attapulgite Clay-Supported Co-B-Ce Catalyst." [In English]. Proceedings Paper. Measurement and Control of Granular Materials 508 (2012): 212-15.
[76] Si, C. D., J. Zhou, and Q. J. Guo*. "Characterization of Pressure Fluctuation Signals in an Acoustic Bubbling Fluidized Bed." [In English]. Article. Journal of the Taiwan Institute of Chemical Engineers 42, no. 6 (Nov 2011): 929-36.
[77] ian, H. J., and Q. J. Guo*. "Thermodynamic Investigation into Carbon Deposition and Sulfur Evolution in a Ca-Based Chemical-Looping Combustion System." [In English]. Article. Chemical Engineering Research & Design 89, no. 9 (Sep 2011): 1524-32.
[78] Guo, Q. J*., J. Zhang, and J. Y. Hao. "Flow Characteristics in an Acoustic Bubbling Fluidized Bed at High Temperature." [In English]. Article. Chemical Engineering and Processing-Process Intensification 50, no. 3 (Mar 2011): 331-37.
[79] Cao, C. Q., K. Zhang, C. C. He, Y. A. Zhao, and Q. J. Guo*. "Investigation into a Gas-Solid-Solid Three-Phase Fluidized-Bed Carbonator to Capture Co2 from Combustion Flue Gas." [In English]. Article. Chemical Engineering Science 66, no. 3 (Feb 2011): 375-83.
[80] Wang, X. Y., X. H. Yue, X. Wang, and Q. J. Guo*. "Surface Modification of Poly(Tetrafluoroethylene) Microporous Membranes by Acrylic Acid Liquid-Phase Graft Copolymerization." [In English]. Article. Journal of Macromolecular Science Part B-Physics 50, no. 10 (2011): 1882-89.
[81] Wang, X. Y., X. H. Yue, X. Wang, and Q. J. Guo*. "Morphology, Crystallization and Formation Mechanism of Poly(Vinylidene Fluoride) Membranes Prepared with Immersion Precipitation: Effect of Maturation Time." [In English]. Article. Journal of Macromolecular Science Part B-Physics 50, no. 5 (2011): 880-89.
[82] Guo, Q. J*., Y. Z. Liu, and M. H. Wang. "Fluidization Characteristics of Printed Circuit Board Plastic Particles with Different Sizes." [In English]. Article. Canadian Journal of Chemical Engineering 88, no. 5 (Oct 2010): 710-17.
[83] Tian, H. J., Q. J. Guo*, X. H. Yue, and Y. Z. Liu. "Investigation into Sulfur Release in Reductive Decomposition of Calcium Sulfate Oxygen Carrier by Hydrogen and Carbon Monoxide." [In English]. Article. Fuel Processing Technology 91, no. 11 (Nov 2010): 1640-49.
[84] Sun, D. S. A., Q. J. Guo*, and X. Liu. "Investigation into Dyeing Acceleration Efficiency of Ultrasound Energy." [In English]. Article. Ultrasonics 50, no. 4-5 (Apr 2010): 441-46.
[85] Si, C. D., and Q. J. Guo*. "Wavelet Analysis of Particle Concentration Signals in an Acoustic Bubbling Fluidized Bed." [In English]. Article. Chemical Engineering & Technology 31, no. 11 (Nov 2008): 1597-604.
[86] Tian, H. J., Q. J. Guo*, and J. Chang. "Investigation into Decomposition Behavior of Caso4 in Chemical-Looping Combustion." [In English]. Article. Energy & Fuels 22, no. 6 (Nov-Dec 2008): 3915-21.
[87] Cao, C. Q., S. Q. Dong, Q. J. Geng, and Q. J. Guo*. "Hydrodynamics and Axial Dispersion in a Gas-Liquid-(Solid) El-Alr with Different Sparger Designs." [In English]. Article. Industrial & Engineering Chemistry Research 47, no. 11 (Jun 2008): 4008-17.
[88] Geng, Q. J., Q. J. Guo*, C. Q. Cao, and H. Q. Wang. "Investigation into Photocatalytic Degradation of Gaseous Benzene in a Circulated Photocatalytic Reactor (Cpcr)." [In English]. Article. Chemical Engineering & Technology 31, no. 7 (Jun 2008): 1023-30.
[89] Geng, Q. J., Q. J. Guo*, C. Q. Cao, and L. T. Wang. "Investigation into Nanotio(2)/Acspcr for Decomposition of Aqueous Hydroquinone." [In English]. Article. Industrial & Engineering Chemistry Research 47, no. 8 (Apr 2008): 2561-68.
[90] Q. J. Guo*., and J. Werther. "Influence of a Gas Maldistribution of Distributor Design on the Hydrodynamics of a Cfb Riser." [In English]. Article. Chemical Engineering and Processing-Process Intensification 47, no. 2 (Feb 2008): 237-44.
[91] Meng, B., W. Z. Shen, and Q. J. Guo*. "Preparation of Activated Carbons from Biomass and Their Adsorption of Benzene, Ammonia, Direct Red 23 and Iron Ions." [In English]. Article. Adsorption Science & Technology 26, no. 3 (2008): 201-08.
[92] Cao, C. Q., S. Q. Dong, and Q. J. Guo*. "Experimental and Numerical Simulation for Gas-Liquid Phases Flow Structure in an External-Loop Airlift Reactor." [In English]. Article. Industrial & Engineering Chemistry Research 46, no. 22 (Oct 2007): 7317-27.
[93] Cao, C. Q., M. Y. Liu, and Q. J. Guo*. "Experimental Investigation into the Radial Distribution of Local Phase Holdups in a Gas-Liquid-Solid Fluidized Bed." [In English]. Article. Industrial & Engineering Chemistry Research 46, no. 11 (May 2007): 3841-48.
[94] Wang, Z. Q., Q. J. Guo*, X. M. Liu, and C. Q. Cao. "Low Temperature Pyrolysis Characteristics of Oil Sludge under Various Heating Conditions." [In English]. Article. Energy & Fuels 21, no. 2 (Mar-Apr 2007): 957-62.
[95] Q. J. Guo*., X. P. Yang, W. Z. Shen, and H. Liu. "Agglomerate Size in an Acoustic Fluidized Bed with Sound Assistance." [In English]. Article. Chemical Engineering and Processing-Process Intensification 46, no. 4 (Apr 2007): 307-13.
[96] Liu, H. E., and Q. J. Guo*. "Fluidization in Combined Acoustic-Magnetic Field for Mixtures of Ultrafine Particles." [In English]. Article. China Particuology 5, no. 1-2 (Feb-Apr 2007): 111-20.
[97] Liu, H., Q. J. Guo*, and S. A. Chen. "Sound-Assisted Fluidization of Sio2 Nanoparticles with Different Surface Properties." [In English]. Article. Industrial & Engineering Chemistry Research 46, no. 4 (Feb 2007): 1345-49.
[98] Liu, H., Y. Li, and Q. J. Guo*. "Fluidization Quality Improvement for Cohesive Particles by Fine Powder Coating." [In English]. Article. Industrial & Engineering Chemistry Research 45, no. 5 (Mar 2006): 1805-10.
[99] Q. J. Guo*., Y. Li, M. H. Wang, W. Z. Shen, and C. H. Yang. "Fluidization Characteristicsof Sio2 Nanoparticles in an Acoustic Fluidized Bed." [In English]. Article. Chemical Engineering & Technology 29, no. 1 (Jan 2006): 78-86.
[100] Q. J. Guo*., M. H. Wang, Y. Li, and C. H. Yang. "Fluidization of Ultrafine Particles in a Bubbling Fluidized Bed with Sound Assistance." [In English]. Article. Chemical Engineering & Technology 28, no. 10 (Oct 2005): 1117-24.
[101] Q. J. Guo*, Y. Li, M. H. Wang, and W. Z. Shen. "Fluidization Behaviors for Coating Cohesive Particles." [In English]. Article. Chemical Engineering & Technology 28, no. 7 (Jul 2005): 752-56.
[102] Q. J. Guo*, T. Suda, J. Sato, and G. X. Yue. "Agglomeration Behavior in a Bubbling Fluidized Bed at High Temperature." [In English]. Article. Chemical Engineering Communications 191, no. 10 (Oct 2004): 1329-42.
[103] Q. J. Guo*., and J. Werther. "Flow Behaviors in a Circulating Fluidized Bed with Various Bubble Cap Distributors." [In English]. Article. Industrial & Engineering Chemistry Research 43, no. 7 (Mar 2004): 1756-64.
[104] Q. J. Guo*., G. X. Yue, and J. Werther. "Dynamics of Pressure Fluctuation in a Bubbling Fluidized Bed at High Temperature." [In English]. Article. Industrial & Engineering Chemistry Research 41, no. 14 (Jul 2002): 3482-88.
[105] Q. J. Guo*., G. X. Yue, and Z. Y. Liu. "Gas Discharge Patterns in a Large Jetting Fluidized Bed with a Vertical Nozzle." [In English]. Article. Industrial & Engineering Chemistry Research 40, no. 16 (Aug 2001): 3689-96.
[106] Q. J. Guo*, G. X. Yue, J. Y. Zhang, and Z. Y. Liu. "Hydrodynamic Characteristics of a Two-Dimensional Jetting Fluidized Bed with Binary Mixtures." [In English]. Article. Chemical Engineering Science 56, no. 15 (Aug 2001): 4685-94.
[107] Q. J. Guo*., Z. Y. Liu, and J. Y. Zhang. "Flow Characteristics in a Large Jetting Fluidized Bed with Two Nozzles." [In English]. Article. Industrial & Engineering Chemistry Research 39, no. 3 (Mar 2000): 746-51.
[108] Q. J. Guo*, Z. Tang, G. X. Yue, Z. Y. Liu, and J. Y. Zhang. "Flow Pattern Transition in a Large Jetting Fluidized Bed with Double Nozzles." [In English]. Article. Aiche Journal 47, no. 6 (Jun 2001): 1309-17.
發(fā)表中文期刊論文:
[1]王秀,郝健,郭慶杰.多孔碳結(jié)構(gòu)調(diào)控及其在二氧化碳吸附領(lǐng)域的應(yīng)用[J/OL].潔凈煤技術(shù):1-11[2021-03-24].http://kns.cnki.net/kcms/detail/11.3676.TD.20210106.1105.006.html.
[2]徐文靜,李平,王鳳,闞浩勇,閆瀚文,胡修德,郭慶杰.氣化細渣與原料煤的混合燃燒特性[J].石油學(xué)報(石油加工),2021,37(01):224-229.
[3]潘鑫,胡修德,馬晶晶,袁妮妮,郭慶杰.基于Aspen Plus的西部典型煤化學(xué)鏈氣化模擬研究[J/OL].潔凈煤技術(shù):1-10[2021-03-24].http://kns.cnki.net/kcms/detail/11.3676.TD.20201204.1035.004.html.
[4]譚曉莉,安梅,郭欣桐,郭慶杰,匡建平.煤焦加壓化學(xué)鏈氣化反應(yīng)特性和機理[J].化工進展,2021,40(01):173-182.
[5]任天,胡修德,安梅,馬晶晶,郭慶杰.1 MW_(th)煤化學(xué)鏈氣化過程模擬[J].石油學(xué)報(石油加工),2020,36(06):1253-1261.
[6]李驍,安梅,郭慶杰.銅/鐵復(fù)合載氧體對煤化學(xué)鏈轉(zhuǎn)化反應(yīng)活性和碳微晶結(jié)構(gòu)的影響[J].石油學(xué)報(石油加工),2020,36(06):1306-1311.
[7]郭欣桐,常國璋,譚曉莉,胡修德,郭慶杰.加壓流化床反應(yīng)器中煤焦化學(xué)鏈氣化實驗與數(shù)值模擬研究[J].石油學(xué)報(石油加工),2020,36(06):1294-1305.
[8]吳曼,宋愛芳,李明,郭慶杰.以典型期刊文獻計量分析國內(nèi)外化學(xué)研究熱點與現(xiàn)狀[J].化學(xué)研究,2020,31(06):549-560.
[9]安梅,潘鑫,胡修德,馬晶晶,郭慶杰.化學(xué)鏈氣化過程中CuFe2O4/SiO2載氧體的反應(yīng)性能及次煙煤的結(jié)構(gòu)演變[J].石油學(xué)報(石油加工),2020,36(04):777-783.
[10]吳玉花,丁欣,李小露,高紅鳳,馮煒,白紅存,郭慶杰.離子液體-微波輔助從黃連提取小檗堿的實驗與分子模擬[J].化工學(xué)報,2020,71(07):3123-3131.
[11]袁妮妮,白紅存,安梅,胡修德,郭慶杰.化學(xué)鏈過程中Cu低濃度摻雜改性Fe-基載氧體反應(yīng)性能:實驗與理論模擬[J].化工學(xué)報,2020,71(11):5294-5302.
[12]袁妮妮,白紅存,安梅,胡修德,郭慶杰.化學(xué)鏈燃燒過程中Cu低濃度摻雜Fe基載氧體反應(yīng)性調(diào)控和機理研究:基于實驗和DFT計算.化工學(xué)報,2020(71)11:5290-5298
[13]許榮杰,夏英,胡修德,匡建平,夏支文,李平,郭慶杰.噴嘴結(jié)構(gòu)對粉煤氣化過程影響的數(shù)值模擬[J].石油學(xué)報(石油加工),2020,36(02):367-375.
[14]王燕霞,胡修德,郝健,郭慶杰.TEPA負載復(fù)合氧化活性炭吸附煙氣中的CO2性能[J].化工學(xué)報,2020,71(05):2333-2343.
[15]袁妮妮,張金鵬,馮煒,韓梓恒,潘鑫,郭慶杰.棗泉煤與玉米秸稈共熱解特性研究.潔凈煤技術(shù),
[16]郝健,夏洪強,郭慶杰,陳君飛.碳材料在電化學(xué)催化還原CO2領(lǐng)域的應(yīng)用[J].石油學(xué)報(石油加工),2019,35(06):1239-1248.
[17]毛寧,王強,楊妍,徐敦信,馮煒,張金鵬,白紅存,郭慶杰.基于顯微組分化學(xué)鍵特征的寧夏慶華煤熱解特性及動力學(xué)分析[J].化工學(xué)報,2020,71(02):811-820+903.
[18]高明剛,劉永卓,張欣濤,宋鳴航,郭慶杰.鐵基載氧體對煤中汞釋放行為的影響[J].化工進展,2019,38(S1):240-246.
[19]楊慧芳,關(guān)海蓮,李平,夏英,王鳳,徐文靜,白紅存,郭慶杰.煤顆粒燃燒過程氧化機理及有機氮轉(zhuǎn)化的分子模擬:以寧東紅石灣煤為例[J].化工學(xué)報,2020,71(02):799-810.
[20]楊茂林,李田,黃能,趙培濤,郭慶杰.含PVC混合塑料水熱反應(yīng)中的氯遷移特性[J].過程工程學(xué)報,2020,20(04):467-475.
[21]吳唯,郭慶杰,常國璋,胡修德.基于Aspen Plus的一步法煤制天然氣工藝優(yōu)化研究[J].天然氣化工(C1化學(xué)與化工),2019,44(05):70-75.
[22]范輝,任倩,馮彩云,李平,郭慶杰,馬清祥.寧東紅石灣煤與生物質(zhì)共熱解協(xié)同機制[J].石油學(xué)報(石油加工),2019,35(05):981-987.
[23]樊建江,楊慧芳,李平,謝非,夏英,白紅存,郭慶杰,鄒軍.粉煤氣化過程中微量元素的遷移與富集特性[J].石油學(xué)報(石油加工),2019,35(05):1001-1006.
[24]李彥坤,馬晶晶,常國璋,胡修德,郭慶杰.基于鐵基載氧體的煤化學(xué)鏈氣化還原過程中氮元素遷移行為[J].化工進展,2019,38(08):3631-3639.
[25]呂天然,王凌云,周海濤,郭慶杰.酸性有機磷萃取劑對鎵的萃取研究[J].山東化工,2019,48(12):9-12.
[26]田安紅,常國璋,苗鵬,張秀麗,郭慶杰.CaO對小球藻多糖熱解產(chǎn)物分布的影響[J].太陽能學(xué)報,2019,40(05):1338-1344.
[27]安梅,馬晶晶,吳唯,任天,胡修德,郭慶杰.基于CuFe2O4載氧體的羊腸煤化學(xué)鏈氣化特性[J].石油學(xué)報(石油加工),2019,35(03):561-568.
[28]孫小青,陳朋,劉永卓,郭慶杰.煙煤化學(xué)鏈反應(yīng)特性及機理分析[J].過程工程學(xué)報,2019,19(06):1120-1128.
[29]周鈺寒,陳曉玉,左成,郭慶杰,趙軍.廢紙纖維素/SiO2復(fù)合氣凝膠的性能[J].化工學(xué)報,2019,70(03):1120-1126.
[30]馮煒,高紅鳳,王貴,吳浪浪,許靖欽,李壯楣,李平,白紅存,郭慶杰.棗泉煤分子模型構(gòu)建及熱解的分子模擬[J].化工學(xué)報,2019,70(04):1522-1531.
[31]劉濤,王洪超,常國璋,郭慶杰.低階煤羰基結(jié)構(gòu)對其低溫熱解過程的影響[J].化工進展,2018,37(11):4257-4264.
[32]左成,吳曼,郭慶杰.低碳烷烴脫氫制低碳烯烴研究進展[J].中國粉體技術(shù),2018,24(05):53-60.
[33]鞏明鑫,王翠蘋,郭慶杰,李勇鵬,鞏建.化學(xué)鏈熱解煤焦油工藝的模擬及優(yōu)化[J].石油學(xué)報(石油加工),2018,34(05):951-958.
[34]王博,郭慶杰.CuO修飾的赤泥載氧體廢棄活性炭化學(xué)鏈燃燒[J].化工進展,2018,37(07):2837-2845.
[35]程闖,趙軍,郭慶杰.胺改性微介孔分子篩的制備及其CO2吸附性能[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2018,39(03):60-67+72.
[36]趙梅杰,吳曼,劉新民,郭慶杰.WPP-MSS-POE-g-MAH復(fù)合材料的制備及表征[J].中國粉體技術(shù),2018,24(03):22-29.
[37]燕希敏,苗鵬,常國璋,郭慶杰.Fe/赤泥催化水蒸氣氣化煤焦的反應(yīng)性與微結(jié)構(gòu)特性[J].化工進展,2018,37(05):1753-1759.
[38]白柏楊,郭慶杰,胡修德,安梅,吳唯,李彥坤.冶金碎焦的催化氣化[J].中國粉體技術(shù),2018,24(01):41-45.
[39]王東營,劉永卓,王博,郭慶杰.餐廚垃圾化學(xué)鏈氣化制備合成氣[J].高校化學(xué)工程學(xué)報,2018,32(01):229-236.
[40]昌晶,胡修德,田紅景,遠富啟,許靜文,郭慶杰.鈣基脫硫劑用于冶煉煙氣脫硫的模擬與實驗[J].化工學(xué)報,2018,69(05):2233-2241.
[41]許靜文,昌晶,遠富啟,田紅景,郭慶杰,王凱.脫硫石膏改性固體胺復(fù)合材料的制備及脫碳性能[J].化工學(xué)報,2018,69(05):2100-2109.
[42]李壯楣,王艷美,李平,李和平,白紅存,郭慶杰.寧東紅石灣煤大分子模型構(gòu)建及量子化學(xué)計算[J].化工學(xué)報,2018,69(05):2208-2216.
[43]苗鵬,常國璋,燕希敏,胡修德,郭慶杰.微藻/核桃殼混合熱解需熱量及制備芳烴研究[J].化工學(xué)報,2018,69(05):2137-2148.
[44]吳曼,宋愛芳,張巖,郭慶杰.基于典型期刊文獻計量分析的國內(nèi)外化工領(lǐng)域研究特點及趨勢——對《化工學(xué)報》、AIChE Journal、Chemical Engineering Science和Industrial & Engineering Chemistry Research發(fā)文分析[J].化工學(xué)報,2018,69(02):873-884.
[45]萬奇順,劉永卓,郭慶杰,田安紅.煤焦化學(xué)鏈氣化過程中神木煤灰對鐵基載氧體反應(yīng)特性及結(jié)構(gòu)的影響[J].過程工程學(xué)報,2017,17(05):995-1001.
[46]岳永強,劉永卓,常國璋,郭慶杰.熱解氣氛與溫度對褐煤半焦“一步法”甲烷化活性的影響[J].化工進展,2017,36(10):3690-3696.
[47]程媛,吳曼,郭慶杰.微小液固流化床的流化特性[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2017,38(03):80-86.
[48]王博,劉永卓,王東營,郭慶杰.廢棄活性炭化學(xué)鏈氣化制富氫合成氣[J].化工學(xué)報,2017,68(09):3541-3550.
[49]楊勤勤,張云鵬,劉永卓,郭慶杰.CaSO4-CuO-Ben載氧體煤化學(xué)鏈燃燒反應(yīng)特性[J].中國粉體技術(shù),2017,23(01):36-41.
[50]韓敏,曲健林,吳曼,徐秀峰,郭慶杰.一步法制備生物質(zhì)活性炭Co基制氫催化劑[J].太陽能學(xué)報,2016,37(10):2668-2674.
[51]汪合龍,劉永卓,郭慶杰.褐煤煤焦“一步法”制天然氣雙功能催化劑Fe-Ni/ATP性能研究[J].燃料化學(xué)學(xué)報,2016,44(06):654-660.
[52]張云鵬,楊勤勤,劉永卓,郭慶杰.CO2氣氛下褐煤還原磷石膏的TG-FTIR研究[J].高;瘜W(xué)工程學(xué)報,2016,30(03):611-617.
[53]張云鵬,楊勤勤,劉永卓,萬奇順,郭慶杰.助劑修飾磷石膏-膨潤土載氧體煤化學(xué)鏈燃燒反應(yīng)特性[J].中國粉體技術(shù),2016,22(02):41-47.
[54]昌晶,張聰,田紅景,郭慶杰,吳衛(wèi)澤.冶煉煙氣干法脫硫過程中CaS與SO2反應(yīng)的實驗及機理研究[J].高校化學(xué)工程學(xué)報,2016,30(01):240-247.
[55]楊雅,郭慶杰,楊林,張亮,王許云,張秀麗.堿脫8硅改性的HZSM-5分子篩催化裂解小球藻的研究[J].太陽能學(xué)報,2016,37(01):171-177.
[56]吳曼,宋愛芳,張秀麗,郭慶杰.產(chǎn)學(xué)研一體化強化地方高;I(yè)工程碩士創(chuàng)新能力[J].山東化工,2016,45(02):114-116.
[57]王楷,郭慶杰,楊林.微擬球藻脂肪熱解及對全組分制備生物油的影響[J].燃料化學(xué)學(xué)報,2016,44(01):60-68.
[58]劉永卓,郭慶杰.化學(xué)鏈基礎(chǔ)理論及其在節(jié)能減排中的應(yīng)用[J].工程研究-跨學(xué)科視野中的工程,2015,7(04):404-412.
[59]孔童童,王霞,郭慶杰.新型多級微/介孔固態(tài)胺吸附劑的制備及其CO2吸附性能研究[J].燃料化學(xué)學(xué)報,2015,43(12):1489-1497.
[60]張云鵬,劉永卓,楊勤勤,郭慶杰.廢棄咖啡渣化學(xué)鏈氣化反應(yīng)特性[J].化工學(xué)報,2016,67(04):1303-1312.
[61]陳義忠,吳曼,謝恒來,劉新民,郭慶杰.WPP/NWPCB/POE復(fù)合材料的制備及其熱解特性[J].化工學(xué)報,2015,66(12):5163-5170.
[62]楊雅,郭慶杰,張秀麗,楊林,徐秀峰.HZSM-5/MCM-41對小球藻催化熱解的影響[J].高校化學(xué)工程學(xué)報,2015,29(03):585-592.
[63]鄭海東,郭慶杰.合成氣甲烷化催化劑的研究與進展[J].山東化工,2015,44(10):53-57.
[64]胡修德,賈偉華,劉永卓,楊明明,郭慶杰.K_2CO_3修飾鈣基載氧體的煤化學(xué)鏈氣化反應(yīng)特性[J].高;瘜W(xué)工程學(xué)報,2015,29(01):108-115.
[65]楊明明,劉永卓,賈偉華,胡修德,郭慶杰.Fe2O3/ATP載氧體制備及煤化學(xué)鏈燃燒性能研究[J].燃料化學(xué)學(xué)報,2015,43(02):167-176.
[66]陳琳琳,王霞,郭慶杰.四乙烯五胺修飾介孔硅膠吸附CO2性能的研究[J].燃料化學(xué)學(xué)報,2015,43(01):108-115.
[67]陳琳琳,郭慶杰.混合胺修飾的介孔硅膠吸附CO2性能研究[J].山東化工,2015,44(01):1-4+8.
[68]胡修德,賈偉華,楊明明,劉永卓,郭慶杰.鈣基復(fù)合載氧體-煤化學(xué)鏈氣化性能[J].中國粉體技術(shù),2014,20(06):9-13.
[69]白立俊,王許云,郭慶杰.微生物燃料電池La0.7Sr0.3CoO3/PANI陰極催化劑的制備及其應(yīng)用[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2014,35(06):561-566.
[70]劉永卓,賈偉華,郭慶杰,Hojung Ryu.CaSO_4載氧體-煤化學(xué)鏈氣化過程氣化劑的影響(英文)[J].Chinese Journal of Chemical Engineering,2014,22(Z1):1208-1214.
[71]謝恒來,吳曼,趙軍,陳義忠,郭慶杰.導(dǎo)向管噴動流化床中廢棄印刷線路板的非金屬顆粒包覆改性[J].化工學(xué)報,2015,66(03):1185-1193.
[72]楊明明,郭慶杰.鐵基凹凸棒載氧體制備及煤化學(xué)鏈燃燒性能研究[J].山東化工,2014,43(11):14-17+20.
[73]曲健林,韓敏,張秀麗,徐秀峰,郭慶杰.棉桿活性炭負載Co-B催化劑催化硼氫化鈉水解制氫的性能[J].化工學(xué)報,2015,66(01):105-113.
[74]宮本月,劉新民,郭慶杰.厭氧流化床微生物燃料電池堆棧產(chǎn)電性能[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2014,35(05):477-480.
[75]宮本月,劉新民,郭慶杰.厭氧流化床微生物燃料電池及其串并聯(lián)性能[J].環(huán)境工程學(xué)報,2014,8(10):4527-4532.
[76]賈偉華,胡修德,劉永卓,楊明明,郭慶杰.Ca-Fe/bentonite載氧體煤化學(xué)鏈燃燒反應(yīng)特性[J].燃料化學(xué)學(xué)報,2014,42(09):1060-1067.
[77]楊林,張秀麗,郭慶杰.水合CaO對微擬球藻催化熱解制備生物油的影響[J].化工學(xué)報,2014,65(12):4785-4792.
[78]白少峰,郭慶杰,徐秀峰.煤“一步法”制天然氣催化劑[J].化工學(xué)報,2014,65(08):2988-2996.
[79]常聰,郭慶杰,王許云,仲衛(wèi)成.MCM-41/Hβ分子篩對小球藻制備生物油的催化熱解[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2014,35(03):270-276.
[80]劉永卓,郭慶杰,田紅景.煤化學(xué)鏈轉(zhuǎn)化技術(shù)研究進展[J].化工進展,2014,33(06):1357-1364.
[81]楊林,張秀麗,楊雅,王許云,徐秀峰,郭慶杰.CaO表面更新對微擬球藻催化熱解制備生物油的影響[J].化工學(xué)報,2014,65(11):4340-4346.
[82]張亮,吳曼,楊雅,張秀麗,徐秀峰,郭慶杰.小球藻熱解油在Ni-Cu/ZrO2催化劑上的加氫脫氧[J].化工學(xué)報,2014,65(08):3004-3011.
[83]賈偉華,劉永卓,胡修德,楊明明,郭慶杰.煤化學(xué)鏈燃燒中CaSO4/膨潤土復(fù)合載氧體的反應(yīng)特性[J].化學(xué)反應(yīng)工程與工藝,2014,30(01):35-40.
[84]郗艷榮,劉永卓,田紅景,郭慶杰.規(guī);苽溻}基復(fù)合載氧體的性能研究[J].高校化學(xué)工程學(xué)報,2014,28(01):51-58.
[85]白立俊,王許云,何海波,郭慶杰.M-N-C陰極催化劑的制備及其在微生物燃料電池中的應(yīng)用[J].化工學(xué)報,2014,65(04):1267-1272.
[86]何海波,王許云,白立俊,郭慶杰.石墨烯/聚苯胺復(fù)合陽極的制備及在MFC中的應(yīng)用[J].化工學(xué)報,2014,65(06):2186-2192.
[87]張璇,付國家,田紅景,郭慶杰.污泥基載體負載Co90基催化劑催化NaBH_4水解制氫反應(yīng)性能研究[J].高;瘜W(xué)工程學(xué)報,2013,27(06):1020-1026.
[88]劉魯艷,郭慶杰,吳曼,劉新民,謝恒來,王許云.廢舊聚丙烯/廢棄印刷線路板非金屬粉復(fù)合材料的制備及性能[J].化工學(xué)報,2014,65(04):1495-1502.
[89]郗艷榮,劉永卓,郭慶杰,程煜,田紅景.鈣基復(fù)合載氧體的制備及反應(yīng)性能[J].化工進展,2013,32(10):2446-2452.
[90]時艷,王許云,李芳,仲衛(wèi)成,郭慶杰.小球藻粉熱解及其催化熱解試驗研究[J].中國粉體技術(shù),2013,19(04):32-36.
[91]仲衛(wèi)成,郭慶杰,王許云,張亮.小球藻熱裂解油催化加氫精制研究[J].燃料化學(xué)學(xué)報,2013,41(05):571-578.
[92]王許云,岳學(xué)海,郭慶杰.增強化學(xué)工程與技術(shù)學(xué)科研究生創(chuàng)新能力的策略[J].化工高等教育,2013,30(01):18-20+24.
[93]劉永卓,郭慶杰.基于硫酸鈣固體燃料化學(xué)鏈氣化過程制備合成氣的研究(英文)[J].Chinese Journal of Chemical Engineering,2013,21(02):127-134.
[94]張景峰,王許云,郭慶杰.粉煤灰基分子篩的制備及吸附和再生性能的研究[J].山東化工,2013,42(02):44-47.
[95]程煜,劉永卓,田紅景,郭慶杰.鐵基復(fù)合載氧體煤化學(xué)鏈氣化反應(yīng)特性及機理[J].化工學(xué)報,2013,64(07):2587-2595.
[96]劉興倩,王許云,郭慶杰.PEDOT/MWCNTs復(fù)合陽極的制備及在MFC中的應(yīng)用[J].化工學(xué)報,2013,64(05):1773-1779.
[97]岳學(xué)海,孔維芳,王許云,郭慶杰.厭氧流化床微生物燃料電池空氣陰極研究[J].化工學(xué)報,2013,64(01):352-356.
[98]黃云龍,郭慶杰,田紅景,侯良玉.餐廚垃圾熱解實驗研究[J].高;瘜W(xué)工程學(xué)報,2012,26(04):721-728.
[99]杜曉梅,付國家,郭慶杰,王許云.黑曲霉3.316固態(tài)發(fā)酵啤酒糟生產(chǎn)纖維素酶[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2012,33(03):263-268.
[100]王振,劉新民,郭慶杰.流化床微生物燃料電池基質(zhì)降解動力學(xué)研究[J].環(huán)境科學(xué)與技術(shù),2012,35(S1):29-32+56.
[101]劉寶勇,魏緒玲,郭慶杰,王良成,楊西.循環(huán)流化床提升管壓力瞬時波動的功率譜分析[J].應(yīng)用化工,2012,41(05):752-755+760.
[102]鄭聰聰,郭慶杰,王許云,孔維芳.MFC聚苯胺碳納米管陽極電化學(xué)法制備及其性能[J].化工學(xué)報,2012,63(05):1599-1606.
[103]付國家,張建社,郭慶杰.核桃殼化學(xué)-物理耦合活化法制備活性炭及其表征[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2012,33(02):126-130.
[104]劉新民,王振,郭慶杰.乳酸/聚乙二醇嵌段共聚物的合成與表征[J].現(xiàn)代塑料加工應(yīng)用,2012,24(01):27-30.
[105]張建社,付國家,田紅景,郭慶杰.煤/鈣基載氧體化學(xué)鏈燃燒操作參數(shù)分析[J].高校化學(xué)工程學(xué)報,2012,26(02):247-253.
[106]付國家,郭慶杰.藥用活性炭對硫酸奎寧吸附性能的研究[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2011,32(06):610-613.
[107]孔維芳,郭慶杰,王許云.不同介體厭氧流化床微生物燃料電池產(chǎn)電特性研究[J].高;瘜W(xué)工程學(xué)報,2011,25(05):858-863.
[108]張建社,郭慶杰.流化床生物質(zhì)CO2催化氣化模擬分析[J].化工進展,2011,30(S1):816-821.
[109]王許云,岳學(xué)海,郭慶杰.甘油添加劑對浸沒沉淀法制備PVDF微孔膜結(jié)構(gòu)與性能的影響[J].高分子材料科學(xué)與工程,2011,27(08):137-140.
[110]侯良玉,郭慶杰,郝俊怡.新型膜流化床內(nèi)鎳/氧化鋁催化劑顆粒流化特性的研究[J].高;瘜W(xué)工程學(xué)報,2011,25(04):622-626.
[111]李超,劉新民,耿啟金,郭慶杰,李金惠.熱重質(zhì)譜聯(lián)用研究廢舊汽車高聚物熱解特性[J].環(huán)境科學(xué)學(xué)報,2011,31(08):1724-1729.
[112]黃云龍,李超,劉新民,郭慶杰,耿啟金,王許云.廢舊汽車頂棚材料熱解特性及動力學(xué)[J].化學(xué)反應(yīng)工程與工藝,2011,27(03):235-240.
[113]楊振楠,郭慶杰,李金惠.氣氛與濕度對燃煤飛灰顆粒聲波團聚的影響[J].化工學(xué)報,2011,62(04):1055-1061.
[114]岳學(xué)海,趙書菊,王許云,郭慶杰.厭氧流化床無膜微生物燃料電池的床層膨脹高度與產(chǎn)電特性[J].過程工程學(xué)報,2011,11(02):199-203.
[115]楊振楠,郭慶杰.氣固射流作用下可吸入燃煤飛灰顆粒的團聚[J].高校化學(xué)工程學(xué)報,2011,25(02):225-230.
[116]盧啟增,徐東彥,盧鵬,郭慶杰.微波誘導(dǎo)Cu基催化劑催化H2O2氧化降解甲基橙模擬染料廢水[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2011,32(01):55-58.
[117]郝俊怡,郭慶杰.聲場強化微小流化床流動特性研究[J].高;瘜W(xué)工程學(xué)報,2010,24(06):929-935.
[118]王許云,岳學(xué)海,郭慶杰.化學(xué)工程與技術(shù)學(xué)科研究生創(chuàng)新能力培養(yǎng)的探討[J].化工高等教育,2010,27(05):8-10.
[119]郭慶杰,田紅景,劉永卓.CaSO_4的復(fù)合載氧體制備及其反應(yīng)特性[J].太原理工大學(xué)學(xué)報,2010,41(05):572-576.
[120]趙書菊,岳學(xué)海,郭慶杰,王許云,侯良玉.厭氧流化床單室無膜微生物燃料電池性能研究[J].環(huán)境化學(xué),2010,29(04):700-704.
[121]張健,李超,郭慶杰.壓力脈動法預(yù)測聲場流化床最小流化速度[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2010,31(03):279-284.
[122]徐東彥,王海振,郭慶杰.甲烷還原Ni基催化劑化學(xué)氣相沉積法制備碳納米管[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2010,31(03):228-230+237.
[123]張愷,趙亞南,何晨晨,郭慶杰,曹長青.氣固循環(huán)流化床碳化室局部CO2摩爾分數(shù)的研究[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2010,31(03):285-289.
[124]李超,郭慶杰,劉新民,黃云龍.廢棄汽車塑料保險杠材料熱解特性及動力學(xué)研究[J].塑料科技,2010,38(06):36-40.
[125]孫德帥,郭慶杰.可吸入顆粒物聲場團聚實驗研究[J].化學(xué)工程,2010,38(04):81-84.
[126]趙書菊,郭慶杰,王許云,岳學(xué)海.厭氧流化床微生物燃料電池處理廢水的產(chǎn)電特性[J].環(huán)境科學(xué)學(xué)報,2010,30(03):513-518.
[127]劉新民,郭慶杰,徐東彥.廢棄ABS電視機外殼熱解試驗研究[J].現(xiàn)代塑料加工應(yīng)用,2010,22(01):25-28.
[128]崔春霞,司崇殿,郭慶杰.麥秸活性炭的制備及脫色性能[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2010,31(01):42-46.
[129]張愷,曹長青,趙亞南,董淑芹,趙亮亮,郭慶杰.氣液固循環(huán)流化床預(yù)分布器附近流體動力學(xué)的數(shù)值研究[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2010,31(01):51-54.
[130]李俊峰,姚淑敏,李紅芳,田智剛,郭慶杰.一株海洋細菌鐵吸收調(diào)節(jié)蛋白(Fur)基因的克隆和表達[J].海洋湖沼通報,2009(04):127-133.
[131]張健,郭慶杰.聲場高溫流化床流化特性[J].過程工程學(xué)報,2009,9(06):1055-1060.
[132]侯良玉,司崇殿,郭慶杰.聲波對流化床內(nèi)水平射流的影響[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2009,30(05):418-423.
[133]司崇殿,郭慶杰,侯良玉.生物質(zhì)顆粒聲場流化特性研究[J].過程工程學(xué)報,2009,9(S2):200-204.
[134]董淑芹,趙亮亮,郭慶杰,曹長青.外加聲場對氣固流化床A類顆粒動力學(xué)影響的數(shù)值研究[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2009,30(04):328-332.
[135]劉寶勇,郭慶杰,郭貞,魏緒玲.大型循環(huán)流化床底部區(qū)域顆粒濃度分布研究[J].中國粉體技術(shù),2009,15(04):1-6.
[136]孫德帥,郭慶杰,司崇殿.氣體射流作用下燃煤可吸入顆粒的團聚[J].過程工程學(xué)報,2009,9(03):437-440.
[137]劉寶勇,魏緒玲,郭慶杰,王銘華,李剛.大型循環(huán)流化床底部區(qū)域顆粒濃度波動研究[J].蘭州交通大學(xué)學(xué)報,2009,28(03):174-179.
[138]徐以泉,郭慶杰,司崇殿,曹長青.微小流化床流化特性分析[J].過程工程學(xué)報,2009,9(02):209-215.
[139]王銘華,郭慶杰,劉寶勇,徐東彥.廢棄電路板塑料顆粒流化床熱解實驗研究[J].燃料化學(xué)學(xué)報,2009,37(02):238-243.
[140]周學(xué)林,劉新民,趙亮亮,郭慶杰,曹長青.微納米流體多尺度混合現(xiàn)象的研究與展望[J].化工進展,2009,28(04):559-565.
[141]孫德帥,楊振楠,郭慶杰.粉煤灰對染料的吸附脫色[J].非金屬礦,2009,32(02):79-81+84.
[142]田紅景,郭慶杰,昌晶.惰性氣氛下CaSO4熱分解動力學(xué)機理的研究[J].化學(xué)反應(yīng)工程與工藝,2008,24(06):529-534+555.
[143]司崇殿,郭慶杰,崔春霞.聲場流化床顆粒濃度時間序列分析[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2008,29(06):507-513.
[144]郭貞,郭慶杰,劉寶勇,劉會娥.循環(huán)流化床底部區(qū)域流動特性的數(shù)值模擬[J].中國粉體技術(shù),2008,14(06):13-17.
[145]孫德帥,郭慶杰.棉織物聲波染色工藝[J].染料與染色,2008(05):29-32.
[146]董淑芹,司崇殿,曹長青,郭慶杰.分布板開孔率對氣固流化床流動特性的影響[J].化學(xué)反應(yīng)工程與工藝,2008,24(05):433-439.
[147]司崇殿,郭慶杰.活性炭活化機理與再生研究進展[J].中國粉體技術(shù),2008(05):48-52.
[148]曹長青,董淑芹,耿啟金,郭慶杰.外環(huán)流氣提式反應(yīng)器液體局部動力學(xué)的實驗研究和數(shù)值模擬[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2008(05):422-425+431.
[149]孫德帥,郭慶杰.流化床內(nèi)靜電的產(chǎn)生與控制[J].化工進展,2008(09):1353-1356.
[150]王銘華,郭慶杰,劉寶勇.不同粒徑電路板塑料顆粒流化特性[J].過程工程學(xué)報,2008(02):224-229.
[151]司崇殿,郭慶杰,崔春霞.聲場流化床A類顆粒濃度分布研究[J].化學(xué)反應(yīng)工程與工藝,2008,24(01):12-17.
[152]王紅亮,司崇殿,郭慶杰.污泥衍生活性炭制備與性能表征[J].山東化工,2008(02):1-5.
[153]耿啟金,郭慶杰,曹長青,王林同.多相光催化反應(yīng)器的研究進展[J].化工進展,2008(01):68-73.
[154]劉會娥,郭慶杰,陳爽,張建,王銘華.粒徑及聲場對SiO2超細顆粒流化行為的影響[J].過程工程學(xué)報,2007(06):1066-1070.
[155]董淑芹,曹長青,劉明言,郭慶杰.氣-液-固三相流化床氣體分布器區(qū)局部相含率和床層膨脹比的實驗研究[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2007(06):516-520.
[156]李彥,劉會娥,郭慶杰,王銘華,陳爽,王杰武.聲場作用下納米顆粒的流化行為[J].中國石油大學(xué)學(xué)報(自然科學(xué)版),2007(05):99-103.
[157]陳爽,郭慶杰,王志奇,劉會娥.含油污泥熱解動力學(xué)研究[J].中國石油大學(xué)學(xué)報(自然科學(xué)版),2007(04):116-120.
[158]劉新民,郭慶杰.PFF與PUF熱穩(wěn)定性及燃燒性能研究[J].現(xiàn)代塑料加工應(yīng)用,2007(04):20-22.
[159]陳爽,劉會娥,郭慶杰.含油污泥熱解特性和動力學(xué)研究[J].石油煉制與化工,2007(07):50-53.
[160]劉寶勇,郭貞,郭慶杰,陳爽,劉會娥.生物質(zhì)熱解與熱解油精制[J].中國粉體技術(shù),2007(03):39-43.
[161]劉新民,郭慶杰.可發(fā)性酚醛樹脂的合成及性能研究[J].塑料工業(yè),2007(05):4-8.
[162]司崇殿,郭慶杰.不同種類顆粒射流流化床的射流深度[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2007(02):129-133.
[163]曹長青,劉明言,郭慶杰.氣液固逆流三相湍動床局部相含率的分布[J].青島科技大學(xué)學(xué)報(自然科學(xué)版),2007(02):134-137.
[164]王銘華,孟博,郭慶杰,劉會娥,陳爽.電子廢棄物資源化處理現(xiàn)狀[J].中國粉體技術(shù),2007(01):33-37.
[165]王銘華,郭慶杰,陳爽.超細顆粒聲場流態(tài)化機理研究[J].中國石油大學(xué)學(xué)報(自然科學(xué)版),2006(06):132-136.
[166]張建,郭慶杰,劉會娥,陳爽.雙組分顆粒聲場流態(tài)化的實驗研究[J].化學(xué)反應(yīng)工程與工藝,2006(05):429-433.
[167]劉新民,郭慶杰,曹長青,王志奇.建筑用酚醛泡沫塑料制備與性能研究[J].中國塑料,2006(08):47-50.
[168]李彥,王銘華,郭慶杰.超細顆粒外場流態(tài)化研究進展[J].中國粉體技術(shù),2005(05):36-40.
[169]郭慶杰,呂俊復(fù),岳光溪,劉志宏,須田俊之,佐藤順一.高溫鼓泡流化床流體動力學(xué)特性[J].化學(xué)工程,2003(03):31-36+3.
[170]王啟民,徐猛,郭慶杰,呂俊復(fù),岳光溪.壓降法測量煤灰的初始粘結(jié)溫度[J].燃料化學(xué)學(xué)報,2003(03):220-224.
[171]王昕,郭慶杰,楊海瑞,呂俊復(fù),岳光溪,劉志宏,須田俊之,左藤順一.高溫流化床中IH I灰樣的臨界流化速度研究[J].煤炭轉(zhuǎn)化,2003(01):48-52.
[172]李登新,呂俊復(fù),郭慶杰,岳光溪.循環(huán)流化床灰渣利用研究進展[J].熱能動力工程,2003(01):5-8+104.
[173]郭慶杰,王啟民,徐猛,李登新,岳光溪,劉志宏,須田俊之,佐藤順一.高溫鼓泡流化床的壓力波動[J].燃燒科學(xué)與技術(shù),2002(06):487-492.
[174]郭慶杰,呂俊復(fù),王昕,徐猛.高溫鼓泡流化床的流化行為[J].熱能動力工程,2002(05):481-484+542.
[175]郭慶杰,王昕,岳光溪,劉志宏,須田俊之,佐藤順一.高溫流化床的流化特性及結(jié)焦非流化行為[J].燃燒科學(xué)與技術(shù),2002(02):130-134.
[176]郭慶杰,張濟宇,劉振宇,岳光溪.大型雙射流流化床的流體動力學(xué)特性[J].化工學(xué)報,2001(11):974-981.
[177]郭慶杰,岳光溪,張濟宇,劉振宇.大型射流流化床的流型轉(zhuǎn)變與射流深度[J].化工學(xué)報,2001(09):803-809.
[178]呂俊復(fù),郭慶杰,岳光溪.焦油裂解過程循環(huán)灰催化活性失活及再生研究[J].煤炭轉(zhuǎn)化,2001(01):71-75.
[179]郭慶杰,岳光溪,張濟宇,劉振宇.射流流化床不同環(huán)隙氣速下射流深度的研究[J].清華大學(xué)學(xué)報(自然科學(xué)版),2000(11):39-42.
[180]呂俊復(fù),楊海瑞,郭慶杰,岳光溪,劉青.水冷方形分離循環(huán)流化床鍋爐的啟動與壓火[J].電站系統(tǒng)工程,2000(06):323-325+329.
[181]于廣輝,路霽鸰,郭慶杰,岳光溪.循環(huán)流化床鍋爐飛灰殘?zhí)忌蓹C理研究[J].煤炭轉(zhuǎn)化,2000(03):19-25.
[182]郭慶杰,張濟宇,劉振宇.大型射流床流動特性實驗研究[J].化學(xué)工程,2000(03):38-41.
[183]郭慶杰 ,張濟宇 ,劉振宇 ,岳光溪.Chaotic Study in a Large Jetting Fluidized Bed with a Vertical Nozzle[J].Chinese Journal of Chemical Engineering,2000(02):86-89.
[184]郭慶杰,王昕,呂俊復(fù),劉青,岳光溪.高溫流化床結(jié)焦特性[J].煤炭轉(zhuǎn)化,2000(01):16-21.
[185]郭慶杰,張濟宇,劉振宇.雙射流流化床流動特性的研究[J].燃料化學(xué)學(xué)報,1999(06):55-60.
[186]郭慶杰,張濟宇,劉振宇.流化床生物質(zhì)惰性顆;旌戏蛛x特性[J].煤化工,1999(03):19-21+47-1.
[187]郭慶杰,張濟宇,劉振宇.流化床射流深度的研究[J].煤炭轉(zhuǎn)化,1999(03):15-21.
[188]郭慶杰,張濟宇,劉振宇.生物質(zhì)惰性顆;旌衔锏幕旌戏蛛x特性[J].煤炭轉(zhuǎn)化,1999(03):87-91.
[189]郭慶杰,楊常玲,張鍇,張濟宇,劉振宇.大型單射流流化床的流動特性[J].化工冶金,1999(03):255-260.
[190]郭慶杰,劉振宇,張濟宇.雙射流流化床空隙率的分布[J].化工冶金,1999(02):187-192.
[191]郭慶杰,張濟宇.多組分氣固射流床流動特性 Ⅱ流型的劃分[J].燃料化學(xué)學(xué)報,1999(02):64-69.
[192]郭慶杰,張濟宇,劉振宇.雙射流流化床射流流動的混沌特性[J].化學(xué)反應(yīng)工程與工藝,1999(01):59-65.
[193]郭慶杰,張鍇,張濟宇,劉振宇.生物質(zhì)和惰性顆粒二組分混合物的最小流化速度[J].煤炭轉(zhuǎn)化,1999(01):95-99.
[194]郭慶杰,張鍇,劉振宇,張濟宇.生物質(zhì)的流化床轉(zhuǎn)化[J].煤炭轉(zhuǎn)化,1998(03):39-43.
[195]郭慶杰,張濟宇,曹雅秀,張鴻.多組分氣固射流床流動特性 Ⅰ.壓力波動的測試裝置與數(shù)據(jù)處理方法[J].燃料化學(xué)學(xué)報,1998(03):72-78.
[196]羅國華,張濟宇,金涌,郭慶杰,張碧江.半圓流化床中垂直雙射流噴射深度及氣體合并行為[J].化工冶金,1998(02):33-39.
[197]郭慶杰,高峰,張濟宇.氣固射流床射流深度的研究[J].燃料化學(xué)學(xué)報,1998(01):38-45.
[198]郭慶杰,張濟宇.灰熔聚氣化裝置冷模射流流化床的研究[J].煤化工,1997(03):46-52.
[199]郭慶杰,張濟宇,羅國華.二維射流床空隙率分布[J].化學(xué)工業(yè)與工程,1996(04):14-19.
發(fā)表會議論文:
[1]楊慧芳,樊建江,李平,謝非,夏英,郭慶杰,鄒軍,張娟梅. 粉煤氣化過程中微量元素的遷移與富集特性研究[C].第三屆能源轉(zhuǎn)化化學(xué)與技術(shù)研討會摘要集.,2018:179.
[2]郭慶杰,安梅,馬晶晶,胡修德. 化學(xué)鏈在煤炭轉(zhuǎn)化領(lǐng)域的應(yīng)用進展[C].第三屆能源轉(zhuǎn)化化學(xué)與技術(shù)研討會摘要集.2018:41.
[3]范輝,任倩,郭慶杰,李平. 寧東紅石灣煤與生物質(zhì)共熱解協(xié)同機制研究[C]. 中國科學(xué)院山西煤炭化學(xué)研究所.第三屆能源轉(zhuǎn)化化學(xué)與技術(shù)研討會摘要集.中國科學(xué)院山西煤炭化學(xué)研究所:燃料化學(xué)學(xué)報編輯部,2018:149.
[4]孔童童,王霞,郭慶杰. 氨基功能化微/介孔復(fù)合材料吸附CO2性能的研究[C].第十八屆中國科協(xié)年會——分8 煤化工精細化發(fā)展論壇論文集.2016:131-136.
[5]王霞,孔童童,郭慶杰. 四乙烯五胺改性煤直接氣化殘焦的CO2吸附行為[C]. 第十八屆中國科協(xié)年會——分8 煤化工精細化發(fā)展論壇論文集.2016:137-143.
[6]王霞,孔童童,郭慶杰. 四乙烯五胺改性煤直接氣化殘焦的CO2吸附行為[C].2015年中國化工學(xué)會年會論文集.中國化工學(xué)會:中國化工學(xué)會,2015:172-178.
[7]陳義忠,吳曼,郭慶杰. 廢棄線路板非金屬粉/聚丙烯復(fù)合材料的熱解特性研究[C]. 2015年中國化工學(xué)會年會論文集.2015:229-233.
[8]孔童童,王霞,郭慶杰. 氨基功能化微/介孔復(fù)合材料吸附CO2性能的研究[C].2015年中國化工學(xué)會年會論文集.2015:247-252.
[9]王楷,楊林,郭慶杰. CaO改性對微擬球藻催化熱解制取生物油的研究[C].2015年中國化工學(xué)會年會論文集.2015:224-228.
[10]劉魯艷,吳曼,郭慶杰,劉新民,王許云. 廢線路板非金屬粉/聚丙烯復(fù)合材料的力學(xué)性能研究[C]. 中國化工學(xué)會.2013中國化工學(xué)會年會論文集.中國化工學(xué)會:中國化工學(xué)會,2013:449-450.
[11]白少峰,劉永卓,胡修德,郭慶杰. 煤“一步法”催化制取天然氣催化劑研究[C].2013中國化工學(xué)會年會論文集.2013:249-250.
[12]張建社,郭慶杰. 流化床生物質(zhì)CO2催化氣化模擬分析[C].中國化工學(xué)會2011年年會暨第四屆全國石油和化工行業(yè)節(jié)能節(jié)水減排技術(shù)論壇論文集. 2011:443-448.
[13]郭慶杰,劉永卓,田紅景,王許云. 化學(xué)鏈過程載氧體顆粒研究進展[C].中國顆粒學(xué)會第七屆學(xué)術(shù)年會暨海峽兩岸顆粒技術(shù)研討會論文集. 2010:111.
[14]郝俊怡,郭慶杰. 基于HHT的微小流化床的壓力波動分析[C].中國顆粒學(xué)會第七屆學(xué)術(shù)年會暨海峽兩岸顆粒技術(shù)研討會論文集. 2010:73.
[15]岳學(xué)海,趙書菊,郭慶杰,王許云. 床層膨脹高度對厭氧流化床微生物燃料電池產(chǎn)電性能的影響[C].中國顆粒學(xué)會第七屆學(xué)術(shù)年會暨海峽兩岸顆粒技術(shù)研討會論文集. 2010:78.
[16]王許云,岳學(xué)海,郭慶杰. 納米結(jié)構(gòu)超支化大分子PAMAM的應(yīng)用研究進展[C].中國顆粒學(xué)會第七屆學(xué)術(shù)年會暨海峽兩岸顆粒技術(shù)研討會論文集.2010:182.
[17]楊振楠,郭慶杰. 聲波頻率對燃煤飛灰可吸入顆粒團聚的作用[C].中國顆粒學(xué)會第七屆學(xué)術(shù)年會暨海峽兩岸顆粒技術(shù)研討會論文集. 2010:86.
[18]司崇殿,郭慶杰,侯良玉. 生物質(zhì)顆粒聲場流化特性研究[C].中國顆粒學(xué)會第六屆學(xué)術(shù)年會暨海峽兩岸顆粒技術(shù)研討會論文集(下). 2008:205-208.
[19]田紅景,郭慶杰. 基于CaSO_4的復(fù)合型載氧體在化學(xué)鏈燃燒系統(tǒng)中的應(yīng)用[C].中國顆粒學(xué)會第六屆學(xué)術(shù)年會暨海峽兩岸顆粒技術(shù)研討會論文集(上). 2008:155-159.
[20]郭慶杰,曹長清,劉寶勝,楊延釗. 第十九篇 化學(xué)工程[C].2007-2008山東省學(xué)科發(fā)展報告.2008:251-258.
[21]徐東彥,戴萍,郭慶杰. Co/AC催化劑制備及其催化NaBH_4水解制氫性能[C]. 第十一屆全國青年催化學(xué)術(shù)會議論文集(下). 2007:333-334.
[22]曹長青,劉明言,郭慶杰. 氣液固逆流三相湍動床局部含率分布的研究[C]. 中國顆粒學(xué)會2006年年會暨海峽兩岸顆粒技術(shù)研討會論文集. ,2006:538-541.
[23]劉會娥,郭慶杰,陳爽,張建,王銘華. 聲場對不同粒徑SiO2超細顆粒流化行為的影響[C]. 中國顆粒學(xué)會2006年年會暨海峽兩岸顆粒技術(shù)研討會論文集. 2006:551-554.
[24]郭慶杰,Joachim Werther,Emst-Ulrich Hartge. 分布板氣量分布對CFB上升管流動行為的影響研究[C]. 中國顆粒學(xué)會2004年年會暨海峽兩岸顆粒技術(shù)研討會會議文集. 2004:588-594.