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易群,博士,教授,博士生導師

地址:湖北省武漢市虎泉街366号,77779193永利官网(武昌校區)

郵編:430073

E-mail:yq20071001@163.com;yq20210901@wit.edu.cn

教育背景

2008.9–2013.6,太原理工大學,化學工程與技術,博士

2004.9–2008.7,77779193永利官网,化學工程與工藝,學士

工作履曆

2021.08-至今,77779193永利官网,特聘教授(77779193永利官网院長,綠色化工過程教育部重點實驗室副主任)

2015.11-2021.07,太原理工大學,教授(環境科學與工程學院副院長(挂職),太原理工大學CO2捕集封存利用研究中心主任)

2017.8-2018.8,The University of Sheffield (英國),訪問教授

2014.1-2015.1,Curtin University of Technology (澳大利亞),訪問學者

2013.7-2015.11,太原理工大學,講師

課題組網址

http://xljk.ms-cloud.cn/

學術兼職

SCI期刊《Fuel》副主編(Associate Principal Editor),客座主編(Managing Guest Editor),石油化工高等學校學報編委;湖北省化學化工學會理事,山西省青年科技工作者協會理事、能源與環境組副秘書長,山西省能源環境領域技術與戰略專家,山西省碳達峰碳中和科技專項行動-節能環保專家組成員,教育部/山東省/安徽省等科學技術獎函評專家,國家自然科學基金函評專家等。

學術成就、獎勵與榮譽

主持國家自然科學青年、面上、聯合基金項目,科技部重點研發計劃子課題,山西省重點研發計劃項目、中國工程院重大咨詢項目課題等30餘項;在能源環境化工領域Chem.Soc.Rev.,Appl.Cat.B-Environ.,等權威期刊已發表論文60餘篇,申請/授權中國發明專利40餘件,參與編寫/出版著作和教材7部,教育部自然科學一等獎,侯德榜化工科學技術青年獎。獲山西省高校青年學術帶頭人,山西省“三晉英才”,山西省自然科學優秀青年基金等人才計劃支持。作為指導教師獲山西省第十七屆“興晉挑戰杯”大學生課外學術科技作品競賽特等獎、第二屆中國可再生能源學會大學生優秀科技作品競賽一等獎、第十四屆全國大學生節能減排社會實踐與科技競賽三等獎,第十七屆挑戰杯全國三等獎等。

科研團隊

易群教授(團隊負責人)團隊共有10人,專職教師/科研人員7人,其中教授2人,副教授3人,講師2人,博士學位率100%。團隊同清華大學、東南大學、華北電力大學、英國謝菲爾德大學、加拿大阿爾伯塔大學等國内外知名院校建立了良好的合作關系和人才聯合培養模式。近五年,團隊共承擔研發課題30餘項,其中國家和省部級項目20項,累計進賬1000餘萬元,獲教育部自然科學一等獎1項,山西省科學技術一等獎1項,發表SCI學術論文80餘篇(其中SCI一區論文40餘篇),申報/授權國家發明專利30餘項。

歡迎各位有志之士加入團隊!

團隊碩/博研究生名額充足,歡迎各位同學報考與咨詢!常年有效

研究領域

團隊研究領域主要涉及大氣污染物控制與利用,環境材料與化學和能源系統工程,涵蓋CO2捕集與轉化、CO2光電催化轉化、CO2捕集/利用系統工程、CO2/NOx/SO2燃料電池、綠碳功能材料等研究方向,包括:

1)開發功能型CO2吸附分離材料簡易、綠色、可控的組裝合成方法;高性能、低成本、低能耗捕集的新型CO2/低質烴類/H2分離純化功能材料的可控構築;

2)立足于CO2捕集和資源化利用相結合的策略,開發适用于CO2低能耗捕集與轉化的新型吸附-催化劑,高效捕集并催化CO2環加成反應制備環狀碳酸酯及可降解聚碳酸酯等綠碳材料;

3)設計開發高選擇性、高催化活性的CO2光/電催化劑材料;以CO2、SO2或NO2氣體為基體,構建各類高效的金屬-氣氛電池體系;太陽能綠色驅動CO2原位轉化合成醇醚燃料、低碳烯烴、異構烴和芳烴等高附加值燃料及化學品。

4)圍繞開發的系列CO2捕集/轉化材料與催化劑,開發設計适用于煙道氣,弛放氣、富碳燃料氣等的碳富集分離/轉化工藝;CO2連續合成聚碳酸酯類産品的反應器及其工藝包;創新開發設計能源系統CO2循環轉化利用路徑與方式,優化CO2捕集/轉化利用能源系統環境效益和技術經濟效益方案,從CO2源頭-轉化路徑-減排節點-産品終端-系統優化控制的系統層面科學的、合理的實現CO2控制與轉化全過程節能、節水、經濟、環保的多元平衡和協同。

學術成果

部分代表性論文:

1.<![endif]>YiQun, Li Wenying*, Feng Jie, Xie Kechang. Carbon cycle in advanced coal chemicalengineering. Chem. Soc. Rev., 44:5409-5445, 2015.(SCI,一區/Q1,IF= 54.56)

2.<![endif]>GongMinhui, Yi Qun*, Huang Yi, Wu Guo-sheng, Hao Yanhong, Feng Jie, Li Wenying*.Coke oven gas to methanol process integrated with CO2recycle forhigh energy efficiency, economic benefits and low emissions. Energy Convers.Manage., 133:318-331, 2017.(SCI,一區/ Q1,IF= 9.71)

3.Yi Qun; Liu Tingting; Wang Xingbao; Shan Yuanyuan; Li Xiangyuan; Ding Minggong;Shi Lijuan*; Zeng Hongbo*; Wu Yucheng*; One-step multiple-site integrationstrategy for CO2capture and conversion into cyclic carbonates underatmospheric and cocatalyst/metal/solvent-free conditions, Appl. Catal., B, 283:119620. 2021. (SCI,一區/Q1, IF=19.50)

4.Yi Qun,Wu Guosheng,Gong Minhui,Huang Yi,Feng Jie,HaoYanhong,Li Wenying*. A feasibility study for CO2recycleassistance with coke oven gas to synthetic natural gas. Appl. Energy,193:149-161, 2017.(SCI,一區/ Q1,IF= 9.75)

5.Yi Qun, Zhao Yingjie, Huang Yi, Wei Guoqiang, Hao Yanhong, Feng Jie, WilliamNimmo*, Li Wenying*. Life cycle energy-economic-CO2emissionsevaluation of biomass/coal, with and without CO2capture and storage,in a pulverized fuel combustion power plant in the United Kingdom. Appl.Energy. 225:258-272, 2018.(SCI,一區/ Q1,IF= 9.75)

6.Huang Yi, Yi Qun*, Kang Jingxian, Zhang YaGang, Li Wenying*, Feng Jie, XieKechang. Investigation and optimization analysis on deployment of China coalchemical industry under carbon emission constraints. Appl. Energy, 254:113684.2019.(SCI,一區/ Q1,IF= 9.75)

7.Huang Yi, Yi Qun*, Wei Guoqiang, Kang Jingxian, Li Wenying*, Feng Jie, XieKechang. Energy use, greenhouse gases emission and cost effectiveness of anintegrated high–and low–temperatureFisher–Tropsch synthesis plant from a lifecycle viewpoint.Appl. Energy, 228:1009-1019. 2018.(SCI,一區/ Q1,IF= 9.75)

8.Yi Qun, Gong Minhui, Zhang Jilong, Huang Yi, Feng Jie, Li Wenying*. Processdevelopment of coke oven gas to methanol integrated with CO2recyclefor satisfactory techno-economic performance. Energy, 112: 618-628, 2016.(SCI,一區/Q1,IF= 7.15)

9.Yi Qun, Feng Jie*, Wu Yanli, Li Wenying*. 3E (energy, environmental, andeconomy) evaluation and assessment to an innovative dual-gas polygenerationsystem. Energy, 66: 285-294, 2014.(SCI,一區/ Q1,IF= 7.15)

10.Yi Qun, Li Wengying*, Zhang Xiaochao, Feng Jie, Zhang Jilong*, Wu Jinjing.Tech-economic evaluation of waste cooking oil to bio-flotation agent technologyin the coal flotation industry. J. Clean. Prod., 95:131-141. 2015. (SCI,一區/Q1, IF=9.30)

11.Yi Qun, Zhang Jilong, Zhang Xiaochao, Feng Jie, Li Wenying*. Synthesis of SO42/Zr-SBA-15catalyst for the transesterification of waste cooking oil as a bio-flotationagent in coal flotation. Fuel, 143:390-398, 2015. (SCI,一區/ Q1,IF=6.609)

12.Hao Yanhong,Huang Yi,Gong Minhui,Li Wenying*,Feng Jie,Yi Qun*. A polygeneration from a dual-gas partial catalyticoxidation coupling with anoxygen-permeable membrane reactor,Energy Convers. Manage.,106:466-478, 2015.(SCI,一區/ Q1,IF= 9.71)

13.Qin Zhifeng; Zhao Yingjie; Yi Qun*; Shi Lijuan*; Li Congming; Yan Xiaoliang;Ren Jun; Miao, Maoqian; Xie Kechang; Methanation of coke oven gas over Ni-Ce/γ-Al2O3catalyst using a tubular heatexchangereactor: Pilot-scale test and process optimization, Energy Convers. Manage.,204: 112302. 2019.(SCI,一區/ Q1,IF= 9.71)

14.Usama Mohamed; Zhao Yingjie; Huang Yi; Cui Yang; Shi Lijuan; Li Congming;Mohamed Pourkashanian; Wei Guoqiang; Yi Qun*; William Nimmo*; Sustainabilityevaluation of biomass direct gasification using chemical looping technology forpower generation with and w/o CO2capture, Energy. 205: 117904. 2020.(SCI,一區/Q1,IF= 7.15)

15.Shi Lijuan; QiKai; Wu Haonan; Li Jie; Qiu Mingyue; Deng Cunbao; Yi Qun*;In-situ amino-functionalization of zeolitic imidazolate frameworks forhigh-efficiency capture of low-concentration CO2from flue gas.Fuel,298: 120875, 2021. (SCI,一區/ Q1,IF= 6.609)

16.Zhao Yingjie; Zhang Yuke; Cui Yang; Duan Yuanyuan; Huang Yi; Wei Guoqiang;Usama Mohamed; Shi Lijuan; Yi Qun*; Pinch combined with exergy analysis forheat exchange network and technoeconomic evaluation of coal chemical loopingcombustion power plant with CO2capture; Energy, 238: 121720, 2022.(SCI,一區/Q1,IF= 7.15)

17.Zhou Huan; Zhang Zheming; Yi Qun*; Wei Guoqiang*; Zhao Yingjie; Zhang Yuke;Huang Zhen; Zheng Anqing; Zhao Kun; Zhao Zengli; Reactivity investigation onchemical looping gasification of coal with iron-manganese based oxygen carrier.Fuel,307: 121772, 2022.(SCI,一區/Q1,IF= 6.609)

18.Zhou Huan; Yi Qun*; Wei Guoqiang*; Zhang Yuke; Hou Yalei; Huang Zhen; ZhengAnqing; Zhao Zengli; Li Haibin; Reaction performance and lattice oxygenmigration of MnFe2O4oxygen carrier in methane-carbondioxide reaction system, Int. J. Hydrog. Energy, 45:30254-30266. 2020. (SCI,二區/ Q1,IF=4.939)

19.Usama Mohamed; Zhao Yingjie; Yi Qun*; Shi Lijuan; Wei Guoqiang; William Nimmo*;Evaluation of life cycle energy, economy and CO2emissions forbiomass chemical looping gasification to power generation. Renew.Energ., 176:366-387, 2021. (SCI,一區/Q1,IF= 8.0001)

20.Zhang Yu-ke, Zhao Ying-jie, Yi Qun*, Wei Guo-qiang*, Shi Li-juan, Zhou Huan;NiO/κ-CeZrO4functional oxygen carrierswith Niδ+and oxygenvacancy synergy for chemical looping partial oxidation reforming of methane.Fuel Process. Technol.,219: 106875, 2021. (SCI,二區/ Q1,IF=4.982)

部分專利:

ZL201811542746.X;ZL201711269070.7; ZL201410086174.4; ZL201410086181.4;ZL201410086182.9;ZL201310464470.9; ZL201310445921.4; ZL201010584428.7等。

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