张庆云
发布时间:2020-09-17   浏览次数:4134

 

姓名:张庆云

职称:讲师

部门:英国正版365官方网站

地址:芜湖市北京中路2号楼环境工程系2205

邮编:241000

Email: zhangqingyun@ahpu.edu.cn

学术经历:

2020.07-至今,英国beat365官方网站入口,英国beat365官方网站入口环境工程系讲师

 

开设课程:

主要开设《环境工程微生物学环境监测环境影响评价》等课程

 

研究方向:

环境应用微生物及污水生物处理

获奖情况:

1)“华骐-通源杯”安徽省老员工生态环境创新创业大赛二等奖(指导教师),2022

2英国beat365官方网站入口第十五届老员工节能减排社会实践与科技竞赛二等奖(指导教师),2022

3院级教师教学创新大赛二等奖,2022

4“华骐-中旭杯”安徽省老员工生态环境创新创业大赛二等奖(指导教师),2021

5第七届英国beat365官方网站入口“互联网+”老员工创新创业大赛(高教主赛道)本科生创意组三等奖(指导教师),2021

6“水韵杯”安徽省老员工生态环境创新创业大赛二等奖(指导教师),

2020

7第六届英国beat365官方网站入口“互联网+”老员工创新创业大赛“高教主赛道创意组”三等奖(指导教师),2020

 

主持项目:

1)安徽省教育厅高校科学研究项目:复合型激活剂强化功能菌种降解脱色蒽醌染料的增效机制研究(KJ2021A0496),6万元,2022.12023.12,主持;

2)英国beat365官方网站入口引进人才科研启动基金项目共基质强化功能菌种降解脱色偶氮染料效能及机理研究2020YQQ059),10万元,2020.102023.09,主持;

3英国beat365官方网站入口校级科研项目功能菌群共代谢降解脱色偶氮染料毒性评估及群落结构变化规律研究Xjky2020086),1万元,2021.01-2022.12,主持;4横向项目:水土重金属及有机污染处理关键技术与应用研究安徽水净环保科技有限责任公司),50万,2022.09-2025.12,主持

 

代表性论文:

1. Xie X.H., Zheng H.M., Zhang Q.Y.*, Fan J., Liu N., Song X.S. Co-metabolic biodegradation of structurally discrepant dyestuffs by Klebsiella sp. KL-1: A molecular mechanism with regards to the differential responsiveness. Chemosphere, 2022, 303: 135028.

2. Zhang Q.Y., Wang L., Xu D.Y., Tao Z.K., Li J.J., Chen Y., Cheng Z., Tang X.L., Wang S.Y. Optimization of biomass carbon sources for simultaneous Pb(II) removal and bioelectricity generation in microbial fuel cell: based on agricultural waste types and pretreatment approaches. Biomass Conversion and Biorefinery, 2022, doi: 10.1007/s13399-022-03451-8.

3. 张庆云, 宋静茹, 谢学辉, 徐大勇, 杨晓凡, 吴佳佳, 吴梦艳, 叶永康, 祝峻豪. 果糖共代谢强化功能菌群/菌株降解活性黑5效能差异及机制比较[J].微生物学通报, 2022: 1-16.

4. Zhang Q.Y., Xie X.H.*, Xu D.Y., Hong R., Wu J.J., Zeng X.C., Liu N., Liu J.S. Accelerated azo dye biodegradation and detoxification by Pseudomonas aeruginosa DDMZ1-2 via fructose co-metabolism[J]. Environmental Technology & Innovation, 2021, 24: 101878.

5. Wang L., Xu D.Y., Zhang Q.Y.*, Liu T.T., Tao Z.K. Simultaneous removal of heavy metals and bioelectricity generation in microbial fuel cell coupled with constructed wetland: An optimization study on substrate and plant types. Environmental Science and Pollution Research, 2021, 29(1): 768-778.

6. Zhang Q.Y., Xie X.H.*, Liu Y.B., Zheng X.L., Wang Y.Q, Cong J.H., Yu C.Z., Liu N., Sand W., Liu J.S. Co-metabolic degradation of refractory dye: A metagenomic and metaproteomic study. Environmental Pollution, 2020, 256: 113456.

7. Zhang Q.Y., Xie X.H.*, Liu Y.B., Zheng X.L., Wang Y.Q, Cong J.H., Yu C.Z., Liu N., Liu J.S., Sand W. Fructose as an additional co-metabolite promotes refractory dye degradation: Performance and mechanism. Bioresource Technology, 2019, 280: 430-440.

8. Zhang Q.Y., Xie X.H.*, Liu Y.B., Zheng X.L., Wang Y.Q, Cong J.H., Yu C.Z., Liu N., He Z.J., Liu J.S., Sand W. Sugar sources as co-substrates promoting the degradation of refractory dye: A comparative study. Ecotoxicology and Environmental Safety, 2019, 184: 109613.

9. 张庆云, 谢学辉*, 柳建设. 微生物共代谢处理印染废水研究进展[J]. 化工进展, 2017, 36(9): 3492-3501.

10. 张庆云, 谢学辉*, 俞承志, 陈潆, 柳建设. 不同共代谢基质对活性黑5脱色菌群脱色性能及群落结构的影响[J]. 生态学杂志, 2017, 36(9): 2572-2580.