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广西大学化学化工学院导师教师师资介绍简介-李群良

本站小编 Free考研考试/2021-06-12

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李群良
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广西南宁市大学东路100号
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博士研究生导师, 硕士研究生导师
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李群良
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化学化工学院
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学习经历:1993.9-1996.7 广西大学化学系,应用化学专业;1999.9-2002.7 广西大学生物技术实验中心,微生物学专业,获理学硕士学位;2002.9-2006.3 华东理工大学生物反应器工程国家重点实验室,生物化工专业,获工学博士学位。工作经历:1996-1999,实验员,广西大学化学化工学院;2006-2008,教师,期间,2007年12月被评为副教授,广西大学化学化工学院;2008-2009,博士后,美国康涅狄格大学;2009- 副教授,广西大学化学化工学院。
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Waste Management、Science of the Total Environment、Process Safety and Environmental Protection、Environmental Science and Pollution Research、Waste and Biomass Valorization以及Biomass Conversion and Biorefinery等国际期刊审稿人;国家自然科学基金通讯评审专家。
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研究生课程:《现代化工技术进展》本科生课程:《化工安全与环保》、《生物化工基础》
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1.生物转化与生物炼制;2.生物质废弃物处理及资源化利用;3.基于LPMOs-UPOs的酶分子设计与改造。
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1.堆肥生境中裂解多糖单加氧酶功能表达及其协同降解木质纤维素作用机理研究(主持,国家自然科学基金-面上项目,项目编号:**, 2019.01-2022.12)2.INFEWS:U.S.-China:乙醇厂生产动物饲料--完全转化玉米和农业副产物支持生物燃料和饲料生产(子项目主持,国家自然科学基金-中美合作项目,项目编号:,2018.08-2022.07)3.有机固体废弃物发酵过程中水溶有机质演替规律及碳素减排机制研究(主持,广西自然科学基金,2017.9-2020.9)4.制糖业有机废弃物生化技术处理制备水产养殖调理剂 (广西防城港市科技局项目,2017.3-2019.3)5.小分子有机碳深度活化技术(企业横向项目,2016.3-2018.3)6.禽畜粪便堆肥化过程中氮素损失污染及其控制 (广西工信委项目,2016.1-2018.12)7.巨大芽孢杆菌合成三氯蔗糖关键中间体蔗糖-6-乙酯的机理研究 (广西自然科学基金,2011.3-2014.3)8.甘蔗叶开发生物有机肥料关键技术研究 (广西科技攻关项目,2011.3-2013.3)9.工业废水中污泥资源化利用技术研究及应用 (桂林市科技局项目,2014.1-2015.12)10.东兴市城东污水处理厂污泥资源化利用生产生态有机肥 (防城港市科技局项目,2014.3-2016.3)11.污泥制备生态有机肥料(企业横向项目,2013.3-2016.12)
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主要发表论文:(*代表通讯作者)[1]Xu J, Jiang Z, Li M, Li Q*.A compost-derived thermophilic microbial consortium enhances the humification process and alters the microbial diversity during composting.J Environ Manage. 2019 Aug 1;243:240-249.[2]Shan G, Xu J, Jiang Z, Li M, Li Q*.The transformation of different dissolved organic matter subfractions and distribution of heavy metals during food waste and sugarcane leaves co-composting.Waste Manag. 2019 Mar 15;87:636-644.[3] Huang J, Guo X, Zeng Y, Lu Y, Shan G, Xu J, Li Q*. The Effects of Flue Gas Desulphurization Gypsum on the Properties of Dissolved Organic Matter and Bacterial Community During Composting. Waste and Biomass Valorization. 2018, PP:1-8.(https://doi.org/10.1007/s12649-018-0419-2).[4] Zhang X, Guo X, Yao P, Wei Y, Li Q*. Enzymatic Synthesis of Sucrose-6-acetate by a Novel Immobilized Fructosyltransferase From Aspergillus sp. GX-0010. Iranian J Biotech. 2018, 16(2):e.1380.[5] Xu J, Lu Y, Shan G, He X, Huang J, Li Q*. Inoculation with Compost-Born Thermophilic Complex Microbial Consortium Induced Organic Matters Degradation While Reduced Nitrogen Loss During Co-Composting of Dairy Manure and Sugarcane Leaves. Waste and Biomass Valorization. 2018, PP:1-11.(https://doi.org/10.1007/s12649-018-0293-y).[6] Shan G, Lu H, Li Q*. The properties and dynamic changes of DOM subfractions during food waste and sugarcane leaves co-composting. Environmental Science and Pollution Research. 2018, 25(8):7433-7442.[7] Lu Y, Shan G, Huang J, Li Q*. Insights into Characteristics of Dissolved Organic Matter Fractions in Co-composted Dairy Manure and Chinese Herbal Residues. Waste and Biomass Valorization. 2018, 9(5):777-782.[8] Li Q*, Lu Y, Guo X, Shan G, Huang J. Properties and evolution of dissolved organic matter during co-composting of dairy manure and Chinese herbal residues. Environmental Science and Pollution Research. 2017, 24(9):8629-8636.[9] Liang Y, Lu Y, Li Q*. Comparative Study on the Performances and Bacterial Diversity from Anaerobic Digestion and Aerobic Composting in Treating Solid Organic Wastes. Waste and Biomass Valorization. 2017, 8(2):425-432.[10] Guo X, Lu Y, Li Q*. Effect of Adding Flue Gas Desulphurization Gypsum on the Transformation and Fate of Nitrogen during Composting. Compost Science and Utilization. 2016, 24(4):230-237.[11] Li Q*, Guo X, Lu Y, Shan G, Huang J. Impacts of adding FGDG on the abundance of nitrification and denitrification functional genes during dairy manure and sugarcane pressmud co-composting. Waste Management. 2016, 56: 63-70.[12] Guo X, Huang J, Lu Y, Shan G, Li Q*. The influence of flue gas desulphurization gypsum additive on characteristics and evolution of humic substance during co-composting of dairy manure and sugarcane pressmud. Bioresource Technology. 2016, 219: 169-174.[13] 黄逸鑫,梁银春,李群良*,何查霖,何曙光.堆肥过程中通气方式对碳氮代谢相关基因表达影响研究. 环境科学学报. 2015, 35(9): 2924-2929.[14] 马溪曼,陆彦宇,谢志全,李群良*,何查霖,何曙光. 添加碳氮代谢相关微生物对堆肥过程中菌群结构的影响. 环境工程,2015, 33(210): 95-99, 104.[15] 李群良*, 王星, 黄逸鑫, 张艳玉, 何查霖,何曙光. 不同堆肥方式对氮素转化规律的影响. 化学与生物工程. 2014, 31(9): 25-28, 48.[16] 马溪曼,郭晓博,李群良*. 添加纤维素降解菌对牛粪堆肥特性的影响. 环境工程. 2014, 32(196): 98-103.[17] 宋韶华,张艳玉,杨雄,李群良*. 有机固体废弃物堆肥过程中PAO及PNO的研究. 可再生能源. 2014, 32(11): 1766-1770.[18] Qunliang Li *,Wei Yan ,Kedi Yang, Yanxuan Wen, Ji-liang Tang. Xanthan gum production by Xanthomonas campestris pv. campestris 8004 using cassava starch as carbon source. African Journal of Biotechnology. 2012, 11(73): 13809-13813.[19] 曾露,李群良*,严伟,何查霖,何曙光. 纤维素酶产生菌的筛选及产酶条件优化. 化学与生物工程. 2012, 29(5): 46-48.[20] 李群良*, 严伟,何查霖,何曙光. 甘蔗叶固态发酵制备生物有机肥试验研究. 可再生能源. 2011, 29(S0): 50-53. [21] 李群良*, 韩玉璐,张欣英. 产木聚糖酶菌株的筛选及产酶条件优化. 可再生能源. 2011, 29(2): 89-91, 95. [22]Jiang Z, Lu Y, Xu J, Li M, Shan G, Li Q*.Exploring the characteristics of dissolved organic matter and succession of bacterial community during composting.Bioresour Technol. 2019 Nov;292:121942. doi: 10.1016/j.biortech.2019.121942. Epub 2019 Aug 5.[23] Zhu Q, Li G, Jiang Z, Li M, Ma C, Li X, Li Q*.Investigating the variation of dissolved organic matters and the evolution of autotrophic microbial community in composting with organic and inorganic carbon sources.Bioresour Technol. 2020 Feb 13;304:123013. doi: 10.1016/j.biortech.2020.123013. [Epub ahead of print]24.Li G, Zhu Q, Jiang Z, Li M, Ma C, Li X, Liu H, Liu Y, Li Q*.Roles of non-ionic surfactant sucrose ester on the conversion of organic matters and bacterial community structure during composting.Bioresour Technol. 2020 Jul;308:123279. doi: 10.1016/j.biortech.2020.123279. Epub 2020 Mar 31.25.Ma C, Lo PK, Xu J, Li M, Jiang Z, Li G, Zhu Q, Li X, Leong SY*, Li Q*.Molecular mechanisms underlying lignocellulose degradation and antibiotic resistance genes removal revealed via metagenomics analysis during different agricultural wastes composting. Bioresour Technol. 2020 Oct;314:123731. doi:10.1016/j.biortech.2020.123731. Epub 2020 Jun 25.PMID: **26.Li M, Xu J, Jiang Z, Li Q*.Molecular understanding of autotrophic CO2-fixing bacterial communities in composting based on RuBisCO genes analysis.J Biotechnol. 2020 Aug 20;320:36-43. doi: 10.1016/j.jbiotec.2020.06.010. Epub 2020 Jun 15.PMID: **专利:(1)李群良,张欣,邓子明. 一株高产葡萄糖-6-乙酸酯的菌株及合成葡萄糖-6-乙酸酯的方法,2013,中国,ZL9.5(2)李群良,陈静丽. 一种多段式发酵系统及其在有机固体废弃物处理中的应用,2014,中国,ZL9.0(3)李群良,陆彦宇,徐佳琦. 一种混合菌剂及其在促进堆肥腐熟中的应用。2017,申请号:8.2(4)李群良,陆彦宇,徐佳琦. 一种地衣芽孢杆菌菌株TA65及其在促进堆肥腐熟中的应用,2017,申请号:7.5(5)李群良,徐佳琦,陆彦宇. 一种热反硝化地芽孢杆菌菌株TB62及其在促进堆肥腐熟中的应用,2017,申请号:4.6(6)李群良,徐佳琦,陆彦宇. 一种脲芽孢杆菌菌株TB42及其在促进堆肥腐熟中的应用,2017,申请号:8.X(7)李群良,牛秋奇. 一种加速木质纤维素降解的堆肥腐熟方法,2020,申请号:31
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