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  • 姓名:陈辉伦
    环境科学与工程系
    教授
  • 办公地点:
    土木楼824
  • Email:
    chenhuilun@ustb.edu.cn

陈辉伦环境科学与工程系



教育及工作经历:

2001.09-2005.07,中国地质大学(武汉)环境学院环境工程专业,获学士学位

2005.09-2010.12,中国地质大学(武汉)环境学院环境工程专业,获博士学位

2010.06-2010.09,德国亥姆霍兹国家研究中心联合会莱比锡环境研究中心(UFZ),合作研究

2009.09-2010.05,意大利国家研究委员会比萨研究中心,联合培养博士

2008.04-2008.05,意大利国家研究委员会比萨研究中心,合作研究

2007.10-2007.12,匈牙利罗兰大学,合作研究

2006.06-2006.07,匈牙利罗兰大学,合作研究

 

工作至今的经历:

2011.03-2016.06,北京科技大学土木与环境工程学院,讲师

2016.06-2021.07,365官网网址,副教授

2021.07-至今,365官网网址,教授


开设课程:

本科生课程:环境学导论、环境土壤学、环境工程施工技术与技术经济分析、环境经济学

研究生课程:环境生物地球化学、环境工程实用技术


研究领域:

新型有机污染物的环境行为;农村生活污水处理;工业废水深度处理


科研项目:

(1)北京市自然科学基金面上项目,20H20104,全氟羧酸类化合物光催化降解过程的单体稳定碳同位素分馏效应研究,2020/01-2022/12,主持

(2)国家重点研发计划项目子课题,2019YFD1100202-05,基于资源利用的乡村污水处理与回用工程示范研究,2019/11-2022/12,主持

(3)水体污染控制与治理科技重大专项子课题任务,2017ZX070206-002-03,造纸废水深度处理技术研究,2017/01-2021/06,主持

(4)国家自然科学基金面上项目,41473074,典型全氟化合物在土水界面的环境行为及微生物响应,2015/01-2018/12,主持

(5)国家自然科学基金青年项目,41103058,浅层孔隙地下水中石油类污染物的分布特征及环境行为研究,2012/01-2014/12,主持

(6)国家自然科学基金重点项目,41430106,典型有色金属采选冶集中区重金属污染过程的环境生物地球化学行为及其地球微生物学响应研究,2015/01-2019/12,参加

(7)环保部公益项目,201509049,高风险稀散多金属采选冶废物减量化、资源化与污染控制及环境管理研究,2015/01-2017/12,参加

(8)国家自然科学基金面上项目,41273092,纳米农用药物的环境生物地球化学行为机制研究,2013/01-2016/12,参加

(9)国家自然科学基金面上项目,41173113,北京水源地环境固体中腐殖质与重金属相互作用机理及影响研究,2012/01-2015/12,参加

(10)国家杰出青年科学基金,40925010,污染物环境生物地球化学行为及地微生物响应,2010/01-2013/12,参加


学术/社会兼职:

中国环境科学学会高级会员


奖励荣誉:

2020年,北京科技大学教育教学成果奖一等奖

2018年,北京市高等教育教学成果奖二等奖

2012年,中国环境科学学会 青年科技奖


学术成果:

(1)Hu, S., Chen, H.*, Chen, Z.*, Performance of sludge drying reed beds for the leachate purification: effects of sludge loading frequencies and plant species, Environmental Research, 2021, 194: 110452.

(2)Feng, Z., Yuan, R., Wang, F., Chen, Z., Zhou, B., Chen, H.*, Preparation of magnetic biochar and its application in catalytic degradation of organic pollutants: A review, Science of The Total Environment, 2021, 765: 142673.

(3)Yang, Z., Chen, H.*, Wang, J., Yuan, R., Wang, F., Zhou, B.*, Efficient degradation of diisobutyl phthalate in aqueous solution through electro-Fenton process with sacrificial anode, Journal of Environmental Chemical Engineering, 2020, 8: 104057.

(4)Yan, C., Wang, F.*, Liu, H., Liu, H., Pu, S., Lin, F., Geng, H., Ma, S., Zhang, Y., Tian, Z., Chen, H.*, Zhou, B., Yuan, R., Deciphering the toxic effects of metals in gold mining area: microbial community tolerance mechanism and change of antibiotic resistance genes, Environmental Research, 2020, 189: 109869.

(5)Wang, S., Yuan, R.*, Chen, H.*, Wang, F., Zhou, B., Effect of sulfonamides on the dissolved organic matter fluorescence in biogas slurry during anaerobic fermentation according to the PARAFAC analysis, Process Safety and Environmental Protection, 2020, 144: 253-262.

(6)Wang, J., Chen, H.*, Yuan, R., Wang, F., Ma, F., Zhou, B.*, Intensified degradation of textile wastewater using a novel treatment of hydrodynamic cavitation with the combination of ozone, Journal of Environmental Chemical Engineering, 2020, 8: 103959.

(7)Feng, Z., Chen, H.*, Li, H., Yuan, R., Wang, F., Chen, Z., Zhou, B.*, Microwave-assisted KOH activated lignite semi-coke for treatment of biologically treated wastewater from pulp and paper mill, Journal of Environmental Chemical Engineering, 2020, 8: 103924.

(8)Feng, Z., Chen, H.*, Li, H., Yuan, R., Wang, F., Chen, Z., Zhou, B.*, Preparation, characterization, and application of magnetic activated carbon for treatment of biologically treated papermaking wastewater, Science of The Total Environment, 2020, 713: 136423.

(9)Chen, H.*, Wang, Q., Cai, Y., Yuan, R., Wang, F., Zhou, B., Chen, Z., Effect of perfluorooctanoic acid on microbial activity in wheat soil under different fertilization conditions, Environmental Pollution, 2020, 264C: 114784.

(10)Chen, H.*, Wang, Q., Cai, Y., Yuan, R., Wang, F., Zhou, B., Investigation of the interaction mechanism of perfluoroalkyl carboxylic acids with human serum albumin by spectroscopic methods, International Journal of Environmental Research and Public Health, 2020, 17: 1319.

(11)Cai, Y., Chen, H.*, Yuan, R., Wang, F., Chen, Z., Zhou, B.*, Metagenomic analysis of soil microbial community under PFOA and PFOS stress, Environmental Research, 2020, 188: 109838.

(12)Cai, Y., Chen, H.*, Yuan, R., Wang, F., Chen, Z., Zhou, B.*, Toxicity of perfluorinated compounds to soil microbial activity: Effect of carbon chain length, functional group and soil properties, Science of the Total Environment, 2019, 690: 1162-1169.

(13)Cai, Y., Chen, H., Chen, H.*, Li, H., Yang, S., Wang, F., Evaluation of single and joint toxicity of perfluorinated carboxylic acids and copper to metal-resistant Arthrobacter strains, International Journal of Environmental Research and Public Health, 2019, 16: 135.

(14)Wang, T., Yao, J.*, Yuan, Z., Zhao, Y., Wang, F., Chen, H.*, Isolation of lead-resistant Arthrobactor strain GQ-9 and its biosorption mechanism, Environmental Science and Pollution Research, 2018, 25: 3527-3538.

(15)Chen, H.*, He, P., Rao, H., Wang, F., Liu, H., Yao, J.*, Systematic investigation of the toxic mechanism of PFOA and PFOS on bovine serum albumin by spectroscopic and molecular modeling, Chemosphere, 2015, 129: 217-224.

(16)Chen, H., Yao, J.*, Wang, F., Cai, M., Liu, H., Toxicity of perfluorooctanoic acid to Pseudomonas putida in the aquatic environment, Journal of Hazardous Materials, 2013, 262: 726-731.

(17)Chen, H, Bramanti, E.*, Longo, I., Onor, M., Ferrari, C., Oxidative decomposition of atrazine in water in the presence of hydrogen peroxide using an innovative microwave photochemical reactor. Journal of Hazardous Materials 2011, 186: 1808-1815.

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