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谢冰

职称: 博士生导师

直属机构: 生态与环境科学学院

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  • 部门: 生态与环境科学学院
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  • 专业技术职务: 教授
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  • 联系电话: 54341276
  • 电子邮箱: Bxie@des.ecnu.edu.cn
  • 办公地址: 资源环境楼433房间
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教育经历

工作经历


1998年7月- 华东师范大学环境科学系


个人简介

自1990年以来从事环境工程与科学研究、教学和实践工作,主要研究有机废弃物、废水的污染控制和资源化、环境微生物及生态修复技术、以及污染控制的工程设计等。现为上海有机固废生物转化工程技术研究中心主任,兼任中国工程机械学会环卫环保分会副理事长、中国环境科学学会水处理及回用专委会、中国微生物学会环境微生物专委会委员及上海市微生物学会常务理事等十余个学会协会委员。主持国家和地方项目60余项,发表论文200篇,授权专利20项,编写专著4部,牵头获得上海市自然科学奖和科技进步奖等奖励多项。

社会兼职

中国机械学会环卫专委会副理事长(2018-)

中国工程建设协会标准化协会市容环卫标委会委员(2021-)

中国环境科学学会水处理和回用专业委员会委员 (2016-)

中国环境科学学会有机固废专业委员会委员(2019-)

中国微生物学会环境微生物专业委员会委员  (2006-2016;2021-)

中国生态学会微生物生态专业委员会委员  (2007-)

中国工程建设协会标准化协会市容环卫标委会委员(202104)

上海微生物学会常务理事‚环境微生物专业委员会主任 (2004-)

上海市容环卫标准化委员会委员(2021-2025)

巴塞尔公约亚太区域化学品和废物环境管理智库专家(2021-2026)

国家自然科学基金委、科技部、国家奖励办、教育部和上海市等部门项目评审专家

研究方向

专业:环境工程

  研究方向包括水、有机固废和土壤污染控制、环境工程微生物和生态修复等。近年来主要在如下几个兴趣方向开展研究:

  (1)城镇有机固体废弃物的资源化处理和污染控制技术;(2)水、土、气等环境介质中新兴污染物(抗性基因、微塑料和内分泌干扰物等)的环境效应及控制研究;(3)污水的新兴生物脱氮Anammox和高级氧化技术等;(4)水体和固废污染控制过程中功能微生物菌群解析及强化;(5)城市河流和水源水污染生态修复,以及污染控制的优化设计等。

招生与培养

开授课程

本科生:废水生化处理,环境工程学实验及课程设计,水处理工程设计等;

研究生:废水高级处理,环境分子生物技术,环境工程进展等


科研项目

近年主持国家科技部重点研发固废专项项目,国家自然科学基金(五项),水专项子课题及地方和企业项目等六十余项,涉及城镇有机固废资源化处理处置,污水和恶臭污染控制技术,新兴污染物的迁移转化机理,以及强化控制等。


学术成果

国家重点研发计划项目首席、主持国家自然科学基金、上海市科委项目以及技术研发工程项目60余项。围绕环境中水、固和气污染的控制和研究,共计发表国内外学术论文220篇,其中SCI论文120余篇,多篇ESI高被引。出版专著4部;获国家发明专利10余项,转让数项。获上海市科技进步和自然奖励多项。部分发表论文:

2023

1.  Zhang,Liangmao;Wang,Binghan;Su,Yinglong;Wu,Dong;Wang,Zijiang;Li,Kaiyi;Xie Bing(*). Pathogenic bacteria are the primary determinants shaping PM2.5-borne resistomes in municipal food waste treatment system Environmental Science & Technology 2023. https://doi.org/10.1021/acs.est.3c04681

2. Zhang,Yuchen, Jianping Tao, Yudan Bai, Feng Wang, Xie Bing(*) Incomplete degradation of aromatic–aliphatic copolymer leads to proliferation of microplastics and antibiotic resistance genes. Environment International , 2023, 181(10):108291

3.Han, Zhibang; Shao, Boqun; Lei, Lang; Pang, Ruirui; Wu, Dong; Tai, Jun; Xie, Bing; Su Yinglong. The role of pretreatments in handling antibiotic resistance genes in anaerobic sludge digestion - A review. The Science of the total environment, 2023, 869

4. Li Wei; Zi ZhiDa; Ma Fu; Xie Bing(*); Lv Jie(*) Genome analysis-based union of the genera Youhaiella and Paradevosia, and proposal that Methyloterrigena soli Kim et al. 2016 is a later heterotypic synonym of Paradevosia shaoguanensis Geng et al. 2015. International journal of systematic and evolutionary microbiology, 2023, 73(4).: 005657.

5. Jianhong Shi, Baoyi Lv, Binghan Wang, Bing Xie(*) Insight into the responses of antibiotic resistance genes in microplastic biofilms to zinc oxide nanoparticles and zinc ions pressures in landfill leachate. Journal of Hazardous Materials. Volume 459, 5 October 2023, 132096

6. Meilan Zhang, Kaiyi Li, Panliang Wang, Wenchao Gu,Huang Huang, Bing Xie(*) Comparative insight into the efects of diferent carbon source supplement on antibiotic resistance genes during whole‑run and short‑cut nitrifcation‑denitrifcation processes. 2023. Environmental Science and Pollution Research https://doi.org/10.1007/s11356-023-27412-4

7. Qi Nie, Jingjing Deng, Bing Xie, Tianshu Zhou(*)  Enhanced-sensitivity and rapid-response for the detection of kanamycin based on ethanol-assisted AIEE effect in silver-doped gold nanoclusters. Microchemical Journal Volume. 2023,191, August, 108831. https://doi.org/10.1016/j.microc.2023.108831.

8. Lang Lei, Ruirui Pang, Zhibang Han, Dong Wu, Bing Xie(*) & Yinglong Su(*). Current applications and future impact of machine learning in emerging contaminants: A review. Critical Reviews in Environmental Science and Technology. 2023 Mar 23. https://doi.org/10.1080/10643389.2023.2190313

9. Binghan Wang, Liangmao Zhang, Jianhong Shi, Yinglong Su, Dong Wu, Bing Xie(*). Genome-centric metagenomics revealed functional traits in high-solids anaerobic co-digestion of restaurant food waste, household food waste and rice straw. Bioresource Technology 376 (2023), 128926.

10. Liangmao Zhang, Binghan Wang, Kaiyi Li, Zijiang Wang, Dan Xu, Yinglong Su, Dong Wu, and Bing Xie(*). Non-negligible health risks caused by inhalation exposure to aldehydes and ketones during food waste treatments in megacity Shanghai. Environmental Pollution (2023): 121448.

11. Boqun Shao, Zhibang Han, Ruirui Pang, Dong Wu, Bing Xie(*), Yinglong Su(*). The crystalline structure transition and hydrogen bonds shift determining enhanced enzymatic digestibility of cellulose treated by ultrasonication. Science of The Total Environment. Available online 7 March 2023, 162631.

12. Panliang Wang, Xunan Li, Ye Li, Yinglong Su, Dong Wu, Bing Xie(*). Enhanced anaerobic digestion performance of food waste by zero-valent iron and iron oxides nanoparticles: Comparative analyses of microbial community and metabolism.  Bioresource Technology371 (2023), 128633.https://doi.org/10.1016/j.biortech.2023.128633.

13. Zhibang Han, BoqunShao, LangLei, RuiruiPang, DongWu, JunTai, BingXie, YinglongSu (*), The role of pretreatments in handling antibiotic resistance genes in anaerobic sludge digestion – A review. Science of the Total Environment Volume 869, 15 April 2023, 161799. https://doi.org/10.1016/j.scitotenv.2023.161799.

14. Yu Fu, Lingli Wang,Yunjiao Liu, Meiru Hou, Qingchao Lia, Xiaodie Li, Dagang Lin, Jialin Chen, Zhaohui Wang(*), BingXie. Rapid reduction of Cr(VI) with plant leaves: Implications for ex-situ phytoremediation of chromium-polluted waters in cold region  Journal of Cleaner Production. Volume 389, 20 February 2023, 136086.

15. Fang, R., Liu, X., Zheng, Z., Lv, B., Wang, J., Su, Y., Xie, B., Wu, D. Can Antibiotic Resistance Genes in Household Food Waste be Reduced by Earthworm Vermicomposting? Underpinning Mechanisms and Strategies (2023) Reviews of Environmental Contamination and Toxicology, 261 (1), art. no. 1

2022

1. DongWu, JueZhao, YinglongSu, MengjieYang, JanDolfing, David .Graham, KaiYang, Bing Xie(*). Explaining the resistomes in a megacity's water supply catchment: Roles of microbial assembly-dominant taxa, niched environments and pathogenic bacteria. Water Research. 2022, 119359.https://doi.org/10.1016/j.watres.2022.119359

2. Zhufang Wang, Yinglong Su, Jundong Zhu. Dong Wu , Bing Xie(*). Size-dependent effects of polystyrene microplastics on anaerobic digestion performance of food waste: Focusing on oxidative stress, microbial community, key metabolic functions Science of the Total Environment  851 (2022) 158264

3.Dong Wu, Yinglong Su, Panliang Wang, Jue Zhao, Jiawen Xie , Bing Xie(*). Uncover landfilled antimicrobial resistance: a critical review of antibiotics flux, resistome dynamics and risk assessment. National Science Open, Volume 1, Issue 2: 20220012 (2022)

4. Ye Li, Xunan Li, Panliang Wang, Yinglong Su, Bing Xie(*). Size-dependent effects of polystyrene microplastics on anaerobic digestion performance of food waste: Focusing on oxidative stress, microbial community, key metabolic functions. Journal of Hazardous Materials. Available online 30 June 2022, 129493

5. Xunan Li, Siqin Chu, Panliang Wang, Kaiyi Li, Yinglong Su, Dong Wu, Bing Xie(*). Potential of biogas residue biochar modified by ferric chloride for the enhancement of anaerobic digestion of food waste. Bioresource Technology 360 (2022) 127530.

6. Liangmao ZhangBinghan WangZijiangWang, KaiyiLiRuFangYinglongSuDongWuBing Xie(*).  Spatiotemporal footprints of odor compounds in megacity’s food waste streams and policy implication. Journal of Hazardous Materials. Volume 437, 5 September 2022, 129423.

7. Yuxue Cui, Haijing Zhang, Jingwen Zhang, Baoyi Lv, Bing Xie(*).The emission of volatile organic compounds during the initial decomposition stage of food waste and its relationship with the bacterial community. Environmental Technology & Innovation2022,27 (2022) 102443.DOI: https://doi.org/10.1016/j.eti.2022.102443

8. JianhongShi, BinghanWang, XunanLi, YinglongSu*, DongWu, Bing Xie(*). Distinguishing removal and regrowth potential of antibiotic resistance genes and antibiotic resistant bacteria on microplastics and in leachate after chlorination or Fenton oxidation. Journal of Hazardous Materials. 430, (2022), 128432.

9. XunanLi, PanliangWang, SiqinChu, YuluXu,YinglongSu, DongWu, Bing Xie(*). Short-term biodrying achieves compost maturity and significantly reduces antibiotic resistance genes during semi-continuous food waste composting inoculated with mature compost. Journal of Hazardous Materials .427, (2022) 127915.

10. Xunan Li,Changbin Chu,Sheng Ding,Huawei Wei,Shuhang Wu, Bing Xie(*) Insight into how fertilization strategies increase quality of grape (Kyoho) and shift microbial community. Environmental Science and Pollution Research 2022. https://doi.org/10.1007/s11356-021-17759-x

11. Panliang Wang, Dong Wu, Yinglong Su, Xunan Li, Bing Xie(*) Dissemination of antibiotic resistance under antibiotics pressure during anaerobic co-digestion of food waste and sludge: Insights of driving factors, genetic expression, and regulation mechanism. Bioresource Technology, Volume 344, Part B, January 2022, 126257.

12. Ye Tang, Ye Li, Lu Zhan, Dong Wu, Suhua Zhang, Ruirui Pang, Bing Xie(*). Removal of emerging contaminants (bisphenol A and antibiotics) from kitchen wastewater by alkali-modified biochar. Science of the Total Environment 805 (2022) 150158.

13. Panliang Wang, Xunan Li, Siqin Chu, Yinglong Su, Dong Wu, Bing Xie(*) Metatranscriptomic insight into the effects of antibiotic exposure on performance during anaerobic co-digestion of food waste and sludge. Journal of Hazardous Materials Volume 423, 5 February 2022, 127163.

14. 张雨辰,武冬,苏应龙,谢冰(*).综述:真菌毒素、抗生素和微塑料在餐厨垃圾厌氧共消化中的赋存、影响及去除策略[J].环境卫生工程,2022,30(04):111.

2021

1. Xunan Li, Panliang Wang, Siqin Chu, Yinglong Su, Dong Wu, Bing Xie(*). The variation of antibiotic resistance     genes and their links with microbial communities during full-scale food waste leachate biotreatment processes. Journal of Hazardous Materials. April 2021, 125744 https://doi.org/10.1016/j.jhazmat.2021.125744

2. Ye Li , Fan Tang, Dan XuBing Xie(*).Advances in Biological Nitrogen Removal of Landfill Leachate. Sustainability 2021, 13, 6236. https://doi.org/10.3390/su13116236

3. Yuchen Zhang, Dong Wu, Yinglong Su, Bing Xie(*), Occurrence, influence and removal strategies of mycotoxins, antibiotics and microplastics in anaerobic digestion treating food waste and co-digestive biosolids: A critical review. Bioresource Technology, 330(2021), 124987

4.Yinglong Su, Zhongjian Zhang, Jundong Zhu , Jianhong Shi, Huawei Wei, Bing Xie(*), Huahong Shi. Microplastics  act as vectors for antibiotic resistance genes in landfill leachate: The enhanced roles of the long-term aging process. Environmental Pollution 270 (2021) 116278.   ESI高被引

5. Binhan Wang, Jiaying Ma, Liangmao Zhang, Yinglong Su, Yiqi Xie, Zahoor Ahmad, Bing Xie(*). The synergistic strategy and microbial ecology of the anaerobic co-digestion of food waste under the regulation of domestic garbage classification in China. Science of the Total Environment  765 (2021),  144632.  https://doi.org/10.1016/j.scitotenv.2020.144632

6.  Zhongjian Zhang, Yinglong Su, Jundong Zhu, Jianhong Shi, Huang Huang, Bing Xie(*) Distribution and removal characteristics of microplastics in different processes of the leachate treatment system.  Waste Management 120 (2021) 240–247 https://doi.org/10.1016/j.wasman.2020.11.025

7.Jiaying Ma, PanliangWang, Wenchao Gu, Yinglong Su, Huawei Wei, Bing Xie(*) Does lipid stress affect performance, fate of antibiotic resistance genes and microbial dynamics during anaerobic digestion of food waste? Science of the Total Environment 756 (2021) 143846 https://doi.org/10.1016/j.scitotenv.2020.143846

8. Sheng Ding, Deping Zhou, HuaweiWei, ShuhangWu, Bing Xie(*) Alleviating soil degradation caused by watermelon continuous cropping obstacle: Application of urban waste compost. Chemosphere 262(2021) 128387.https://doi.org/10.1016/j.chemosphere.2020.128387

9. Panliang Wang, Dong Wu, Xinxin You, Yinglong Su, Bing Xie(*). Antibiotic and metal resistance genes are closely linked with nitrogen-processing functions in municipal solid waste landfills. Journal of Hazardous Materials 403 (2021) 123689.

10.  张良茂 周童,聂剑文,李靖,谢冰(*). 渗滤液短程消化-厌氧氨氧化深度脱氮及机理研究,环境卫生工程2021,29(1):77-82.

11.马佳莹,王盼亮,汪冰寒,苏应龙,谢冰(*).活性炭对城市有机固废厌氧消化过程抗生素抗性基因行为特征的影响. 环境科学. 2021.V42(5):2413-2421.

2020年  

1. Jianhong Shi, Dong Wu, Yinglong Su, Bing Xie(*(Nano)microplastics promote the propagation of antibiotic resistance genes in landfill leachate. Environmental Science: Nano, 2020, DOI: 10.1039/D0EN00511H

2. Panliang Wang, Ziru Qiao, Xunan Li, Bing Xie(*) Fate of integrons, antibiotic resistance genes and associated microbial community in food waste and its large-scale biotreatment systems.  (2020) Environment International 144:106013. DOI: 10.1016/j.envint.2020.106013

3. Jianhong Shi, Dong Wu, Yinglong Su, Bing Xie(*). Selective enrichment of antibiotic resistance genes and pathogens on polystyrene microplastics in landfill leachate. Science of The Total Environment, 2020, 142775 https://doi.org/10.1016/j.scitotenv.2020.142775

4.  Binghan Wang, Changbin Chu, Huawei Wei, Liangmao Zhang, Zahoor Ahmad, Shuhang Wu*, Bing Xie(*) . Ameliorative effects of silicon fertilizer on soil bacterial community and pakchoi (Brassica chinensis L.) grown on soil contaminated with multiple heavy metals. Environmental Pollution 267 (2020) 115411

5. Panliang Wang, Ziru Qiao, Xunan Li, Yinglong Su, Bing Xie(*). Functional characteristic of microbial communities in large-scale biotreatment systems of food waste. Science of the Total Environment746 (2020) 141086

6. Jiaying Ma, Huawei Wei, Yinglong Su, Wenchao Gu, Binghan Wang, Bing Xie(*). Powdered activated carbon facilitates methane productivity of anaerobic codigestion via acidification alleviating: Microbial and metabolic insights. Bioresource Technology V313, 2020, 123706.

7. Haijing Zhang, Jianhong Shi, Yinglong Su ,Weiying Li ,Kevin J. Wilkinson, Bing Xie(*). Acute toxicity evaluation of nanoparticles mixtures using luminescent bacteria. Environ Monit Assess (2020) 192:484 https://doi.org/10.1007/s10661-020-08444-6

8. Huawei Wei, ShengDing, Ziru Qiao,Yinglong Su, Bing Xie(*). Insights into factors driving the transmission of antibiotic resistance from sludge compost-amended soil to vegetables under cadmium stress. Science of The Total Environment 26 (2020) 138990. https://doi.org/10.1016/j.scitotenv.2020.138990

9. Baoyi Lv*, Yuxue Cui, Wen Tian, Huawei Wei, Qihao Chen, Bingli Liu, Di Zhang, Bing Xie. Vessel transport of antibiotic resistance genes across oceans and its implications for ballast water management. Chemosphere 253 (2020) 126697.

10. Huawei Wei, Jiaying Ma, Yinglong Su, Bing Xie(*). Effect of nutritional energy regulation on the fate of antibiotic resistance genes during composting of sewage sludge. Bioresource Technology 297 (2020) 122513

11. Siqi Huang, Qun Zhang, Pengyu Liu, Shengjia Ma, Bing Xie, Kai Yang, Yaping Zhao(*). Novel up-conversion carbon quantum dots/α-FeOOH nanohybrids eliminate tetracycline and its related drug resistance in visible-light responsive Fenton system. Applied Catalysis B: Environmental 263 (2020) 118336

12. Dong Wu, Liu Hong Wang, Yinglong Su, Dolfing, J.; Bing Xie(*), Associations between human bacterial pathogens and ARGs are magnified in leachates as landfill ages. Chemosphere 2020, 264, 128446.

13. 马佳莹, 汪冰寒, 乔子茹,谢冰. 碳基材料对餐厨垃圾厌氧消化效率和微生物群落的影响研究进展. 应用与环境生物学报, 2020,26(03):730-738.

14. 乔子茹,谢冰 餐厨垃圾生物处理过程中VOCs的产生与控制研究进展.应用与环境生物学报, 2020,26(01).  

15. 马佳莹,魏华炜,苏应龙,顾闻超,汪冰寒谢冰(*)微生物代谢视角下粉末活性炭通过缓解酸化提高城市有机固废厌氧共消化甲烷生产力环境卫生工程2020,28(6).

2019年

1. Yinglong Su, Zhongjian Zhang, Dong Wu, Lu Zhan, Huahong Shi, Bing Xie(*). Occurrence of microplastics in landfillsystems and their fate with landfill age. Water Research. V164(2019)114968.(IF 7.913)

2. Jianhong Shi, Zhongjian Zhang, Yinglong Su, Huawei Wei, Liuhong Wang, Bing Xie(*). How does zinc oxide and zero valent iron nanoparticles impact the occurrence of antibiotic resistance genes in landfill leachate? Environment Science: Nano,2019, 6, 2141-2151.  DOI: 10.1039/c9en00068b  (IF 7.704)

3. Dong Wu, Yinglong Su, Hui Xi, Xinyuan Chen, Bing Xie(*) Urban and agriculturally influenced water contribute differently to the spread of antibiotic resistance genes in a mega-city river network. Water ResearchV158201911-21. https://doi.org/10.1016/j.watres.2019.03.010(IF 7.913)

4. Yinglong Su, Dong Wu, Huipeng Xia, Congyan Zhang, Jianhong Shi, Kevin J. Wilkinson, Bing Xie(*).Metallic nanoparticles induced antibiotic resistance genes attenuation of leachate culturable microbiota: The combined roles of growth inhibition, ion dissolution and oxidative stress. Environment International, 2019, 128: 407-416. (IF 7.943)

5. Panliang Wang, Dong Wu, Xinxin You, Weiying Li, Bing Xie(*). Distribution of antibiotics, metals andantibiotic resistance genes during landfilling process in major municipal solidwaste landfills. Environmental Pollution. V255 (2019) 113222. https://doi.org/10.1016/j.envpol.2019.113222.

6. Xuemin Liu, Huahong Shi, Bing Xie, Dionysios D, Yaping Zhao*. Microplasticsas Both a Sink and a Source of Bisphenol A in the Marine Environment.  Environ. Sci. Technol. 2019, 52(19).10188-10196.  https://doi.org/10.1021/acs.est.  9b02834

7. Yinglong Su, Jiaxin Wang, Huipeng Xia, Bing Xie(*)Comparative network analysis revealing the mechanisms of antibioticresistance genes removal by leachate recirculation under different hydraulicloadings. Science of the Total Environment 649 (2019) 318–326. (IF 5.589)

8. Yinglong Su,Jiaxin Wang,Huipeng Xia,Bing Xie(*),Xiang Li. Anaerobic/aerobic conditions determine antibiotic resistance genes removal patterns from leachate by affecting bacteria taxa-genes cooccurrence modules. Chemosphere 223 (2019) 28-38. (IF 5.108)

9. DongWu, Bing-Han Wang, Bing Xie(*). Validated predictive modelling of sulfonamide and beta-lactam resistance genes in landfill leachatesJournal of Environmental Management 241 (2019) 123–130.   https://doi.org/10.1016/j.jenvman.2019.04.026. (IF 4.865)

10. Huawei Wei, Xiaoyuan Wang, Muhammad Hassan, Huang Huang, Bing Xie(*). Strategy of rapid start-up and the mechanism of de-nitrogen in landfill Bioreactor. Journal of Environmental Management 240 (2019) 126–135.  https://doi.org/10.1016/j.jenvman.2019.03.111.  (IF 4.865

11. Jianhong Shi, Yinglong Su, Chongxin Du, Bing Xie(*) Biofouling characteristics of reverse osmosis membranes during dyeing wastewater desalination. Desalination and Water Treatment 147(2019)31-37.  https://doi.org/10.5004/dwt.2019.23692.  (IF 1.36)

12. Lu Zhan*, Shihao Shen, Bing Xie, Kai Yang. A novel method ofpreparing PbS from waste lead paste through in-situ vulcanization andreduction. Journal of Cleaner Production 208 (2019) 778-784.

13. Junpeng Zhang, Weiying Li*, Jiping Chen, Feng Wang, Wanqi Qi, Yue Li, Bing Xie. Effect of hydraulic conditions  on the prevalence of antibiotic resistance in water supply systems. Chemosphere 235 (2019) 354-364.

14. 王柳红, 奚 慧, 黄兴华, 孙金昭, 谢冰(*). 城市垃圾填埋场抗生素抗性基因的污染特征.应用与环境生物学报, 2019, 25(02)1-11.

15.夏治文,赵旭远,顾建忠,詹路,谢冰(*固相环境基质中典型残留抗生素的分析方法综述 环境卫生工程,2019,2745-12.

16.张海静; 陈浩泉; 恽晓雪; 谢冰(*) 上海某垃圾填埋场作业区挥发性有机物变化特征及除臭影响. 环境工程技术学报, 2019, 9(06): 623-630

2018年

1. DongWu, Ruoqi Ma, Kai Yang, Bing Xie(*). Simulated discharge of treatedlandfill leachates reveals a fueled development of antibiotic resistance inreceiving tidal river. Environment International. 2018. 114: 143–151

2. Xinxin You, Dong Wu, Huawei Wei, Bing Xie(*), Jun Lu. Fluoroquinolones and β-lactam antibiotics and antibiotic resistance genes in autumn leachates of seven major municipal solid waste landfills in China. Environment International.  2018.V113:162-169. https://doi.org/10.1016/j.envint.2018.02.002

3. Huawei Wei, Liuhong Wang, Muhammad Hassan, Bing Xie(*). Succession of the functional microbial communities and the metabolic functions in maize straw composting process. Bioresource Technology. 2018. 256:333-341. https://doi.org/10.1016/j.biortech.2018.02.050  (ESI 高被引1%)

4. Dong Wu, Jan Dolfing, Bing Xie(*). Bacterial perspectives on the dissemination of antibiotic resistance genes in domestic wastewater bio-treatment systems: beneficiary to victim. Applied Microbiology and Biotechnology. 2018, 102:597–604. https://doi.org/10.1007/s00253-017-8665-y.

5. Muhammad Hassan, Huawei Wei;Huijing Qiu, Syed Wajahat H. Jaafry Yinglong Su, Lu zhan, Bing Xie(*). power generation and pollutants removal from landfill leachate in microbial fuel cell: Variation and influence of anodic microbiomes.Bioresource Technology. 2018.V244. 437-442.10.1016/j.biortech.2017.09.124

6. Lu Zhan*, Fafa Xia, YuHan Xia, Bing Xie. Recycle Gallium and Arsenic from GaAs-Based EWastes via Pyrolysis−Vacuum Metallurgy Separation: Theory and FeasibilityACS Sustainable Chem. Eng. 2018, 6, 1336-1342. DOI: 10.1021/acssuschemeng.7b03689.

7. MuhammadHassan, Ana Sotres, maria isabel san-martinmaria Isabel, Bing Xie, Antonio Moran. Hydrogen evolution in microbialelectrolysis cells treating landfill leachate: Dynamics of anodic biofilm. International Journal of Hydrogen Energy. 2018. 43(29):13051-13063. DOI: 10.1016/j.ijhydene.2018.05.055

8. XuyuanZhao, Lu Zhan*, Bing Xie, Bin Gao. Productsderived from waste plastics (PC, HIPS, ABS, PP and PA6) via hydrothermaltreatment: Characterization and potential applications. 2018. Chemosphere. 207: 742-752.

9.Lu Zhan*, Ouyang Li, Zhengyu Wang, Bing Xie.Recycling Zinc and Preparing High-Value-Added Nanozinc Oxide from WasteZinc–Manganese Batteries by High-Temperature Evaporation-Separation and OxygenControl Oxidation. ACS Sustainable Chem. Eng., 2018, 6 (9), pp12104–12109

10. Lili Lei,Mengting Liu,Yang Song,Shibo Lu,Jiani Hu,ChengjinCao,Bing Xie,Huahong Shi,Defu He*. Polystyrene(nano)microplastics cause size-dependent neurotoxicity, oxidative damages andother adverse effects in Caenorhabditis elegans. EnvironmentScience: Nano,2018. 5:2009-2020.

11. BaoyiLv*,Yuxue Cui, Wen Tian, Jing Li, Bing Xie,Fang Yin. Abundances and profiles of antibiotic resistance genes as well ascooccurrences with human bacterial pathogens in ship ballast tank sedimentsfrom a shipyard in Jiangsu Province, China. Ecotoxicology and Environmental Safety. 2018.157 :169–175.

12. 奚慧,孙金昭,谢冰(*). 城市生活垃圾填埋场中抗生素残留特征研究. 环境科学学报 2018,V38(1):1-10.

2017年

1. Dong Wu, Xing-hua Wang, Jin-zhao Sun, David W Graham, Bing Xie(*). Antibiotic Resistance Genes and  Associated Microbial Community Conditions in Aging Landfill Systems. Environmental Science & Technology2017, 51 (21) 12859–12867.

2. Huawei Wei; Jie Wang; Muhammad Hassan; Lu Han; Bing Xie(*), Anaerobic Ammonium Oxidation-Denitrification Synergistic Interaction of Mature Landfill Leachate in Aged Refuse BioreactorVariations and Effects of Microbial Community Structures. Bioresource Technology. 2017. 243. 1149 -1158. 10.1016/j.biortech.2017.07.077.

3. Muhammad Hassan, Narcis Pous, Bing Xie, Jesús Colprim; Dolors M Balaguer, Sebastia Puig, Employing Microbial Eelectrochemical Technology-driven electro-Fenton oxidation for the removal of recalcitrant organics from sanitary landfill leachate. Bioresource Technology. 2017. 243 . 949–956. 10.1016/j.biortech.2017.07.042.

4. Muhammad Hassan, Narcis Pous, Bing Xie(*), Jesús Colprim, Maria Dolors. Balaguer, Sebastia Puig, Influence of iron species on integrated microbial fuel cell and electro-Fenton process treating landfill leachate, Chemical Engineering Journal 2017. 328(15):57-65. doi: http://dx.doi.org/10.1016/  j.cej.2017.07.025

5. Huipeng Xia, Lu Zhan(*), Bing Xie. Preparing ultrafine PbS powders from the scrap lead-acid battery by sulfurization and inert gas condensation. Journal of Power Sources2017, 341. 435-442. http://dx.doi.org/10.1016/j.jpowsour.2016.12.035.

6. Yinglong Su, Jiaxing Wang, Zhiting Huang, Bing Xie(*). On-site removal of antibiotics and antibiotic resistance genes from leachate by aged refuse bioreactor: Effects of microbial community and operational parameters. Chemosphere 2017,178 .pp486-495. DOI: 10.1016/j.chemosphere.2017.03.063.

7. Dong Wu, Guangzhou Chen, Xiaojun Zhang, Kang Yang, Bing Xie(*). Change in microbial community in landfill refuse contaminated with antibiotics facilitates denitrification more than the increase in ARG over long-term. Scientific Reports. 7, 41230; doi: 10.1038/srep41230 (2017).

8. Lu Zhan, Xishu Xiang, Bing Xie(*), Bin Gao. Preparing lead oxide nanoparticles from waste electric and electronic equipment by high temperature oxidation-evaporation and condensation. Powder Technology. 2017. 308. Pp 30-36.

9. Lu Zhan*, Jianguo Li, Bing Xie, Zhenming Xu. Recycling Arsenic from Gallium Arsenide Scraps through Sulfurizing Thermal Treatment, ACS Sustainable Chem. Eng.2017, 5, 3179–3185.

10. Xiaoyuan Wang, Bing Xie(*), Chaoqun Zhang, Yiwen Shen, Jun Lu. Quantitative Impact of Influent Characteristics on Nitrogen Removal via Anammox and Denitrification in a Landfill Bioreactor Case. Bioresource Technology. 2017. 224.pp 130-139. 10.1016/j.biortech.2016.11.078

11. Muhammad Hassan, Xiaoyuan Wang, Fei Wang, Dong Wu, Asif Hussain, Bing Xie(*).Coupling ARB-based biological and photochemical (UV/TiO2 and UV/S2O82−) techniques to deal with sanitary landfill leachate. Waste Management. 2017. 63, 292–298.http://dx.doi.org/10.1016/j.wasman.2016.09.003

 2016年

1. Hassan Muhammad, Yaping Zhao, Bing Xie(*),Employing TiO2 photocatalysis to deal with landfill leachate: Current status and development. Chemical Engineering Journal. 2016. 285,264–275. 10.1016/j.cej.2015.09. 093.  (高被引 ESI 1%)

2. Lu Zhan Xishu Xiang, Bing Xie(*). A novel method of preparing highly dispersed spherical lead nanoparticles from solders of waste printed circuit boards. Chemical Engineering Journal.2016. 303.pp 261–267. Doi10.1016/j.cej.2016.06.002.

3. Lu Han, Yue-Wen Teng, Qing-Qing Feng, Ren-Gang Zhang, Xing-Min Zhao, Jie Lv, Bing Xie(*). Description of Sphingomonas mohensis sp. nov., Isolated from Sediment. Current Microbiology. 2016.303: 261-267. Doi10.1007/s00284-016-1074-0.

4. Weqing Xu, Dong Wu, Jie Wang, Xinghua Wang, Bing Xie(*). Effects of oxygen and carbon content on nitrogen removal capacities in landfill bioreactors and response of microbial dynamics. Applied Microbiology Biotechnology. 2016. 100:6427–6434. Doi: 10.1007/s00253-016-7460-5.

5. Han, Lu; Mo, Yongxin; Feng, Qingqing; Zhang, Rengang; Zhao, Xingmin; Lv, Jie; Xie, Bing (*). Tianweitania sediminis gen. nov., sp nov., a member of the family Phyllobacteriaceae, isolated from subsurface sediment core. International Journal of Systematic and Evolutionary Microbiology. 2016.66, 719-724.

6.  孙金昭,李明杰,谢冰(*)等,湿地植物作为低C/N比生活污水反硝化碳源的研究. 环境污染与防治,2016,38(10): 28-32.

 2015年

1Wu, Dong, Huang, Zhiting, Yang Kai, Graham, David, Xie, Bing(*), Relationships between antibiotics and antibiotic resistance gene levels in municipal solid waste leachates in Shanghai, China.  Environmental Science & Technology. 2015, 49 (7), pp 4122–4128. Doi: 10.1021/es506081z. (ESI 高被引1%

2.Dong Wu, Chao Wang, Jan Dolfing, Bing Xie(*). Short tests to couple N2O emission mitigation and nitrogen removal strategies for landfill leachate recirculation. Science of the Total Environment. 2015. 512–513 pp 19–25. http://dx.doi.org/10.1016/j.scitotenv.2015.01.021.

3.Dong Wu, Ting Wang, Xinghua Huang, Jan Dolfing, Bing Xie(*). Perspective of harnessing energy from landfill leachate via microbial fuel cells: novel bio-fuels and electrogenic physiologies. Applied Microbiology Biotechnology. 2015. 99(16). Doi: 10.1007/s00253-015-6857-x.

4.Xiaoyuan Wang, Bing Xie(*), Dong Wu, Hassan, Changyin Huang. Characteristics and risks of secondary pollutants generation during compression and transfer of municipal solid waste in Shanghai. Waste Management. 2015, 43, pp1-8. Doi: 10.1016/j.wasman. 07.005.

5.Lu Zhan, Fafa Xia, Xishu Xiang, Bing Xie(*). Novel Recycle Technology for Recovering Rare Metals (Ga, In) from Waste Light-emitting Diodes. Journal of Hazardous Materials. 2015.29, pp 388–394. Doi:10.1016/j.jhazmat.2015.06.029.

6.Wangjie, Yuanqi, XieBing(*). Temporal dynamics of cyanobacterial community structure in Dianshan Lake of Shanghai, China. Annals of Microbiology. 2015. 65(1), 105-113. Doi: 10.1007/s13213-014-0841-z.

7.    Xishu Xiang, Fafa Xia, Lu Zhan(*), Bing Xie. Preparation of zinc nano structured particles from spent zinc manganese batteries by vacuum separation and inert gas condensation. Separation and Purification Technology. 2015. 142, pp 227–233.http://dx.doi.org/10.1016/j.seppur.2015.01.014.

8.   杨盈盈,陈奕,李明杰,谢冰(*). 进水渗滤液总氮和BOD/TN 对填埋场反应器反硝化和厌氧氨氧化协同脱氮的影响.环境科学. 2015.V36(4):1412-1416.

9.    沈怡雯,黄智婷,谢冰(*). 抗生素及其抗性基因在环境中的污染、降解和去除研究进展. 应用与环境生物学报. 2015,V21(2),181-187. (被评为2016年度该期刊优秀论文)

10. 张琪,戴淑萍,谢冰(*). 运行条件及温度对陈垃圾反应器效能的影响及菌群结构分析.环境工程学报.2015,9(4):1742-1746.

11.黄兴华,杜崇鑫,夏志先,谢冰(*). 印染废水的中水回用技术研究进展. 净水技术. 2015.34(5):16-20.

2014年

1.Huang Zhiting, Bing Xie(*). Qi Yuan, Weiqing Xu Jun Lu. Microbial community study in newly established Qingcaosha Reservoir of Shanghai, China. Applied Microbiology Biotechnology. 2014. V98(23) 98: 9849-9858.DOI: 10.1007/s00253-014-5928-8.

2.  Hassan Muhammad,Bing Xie(*). Use of aged refuse-based bioreactor/biofilter for landfill leachate treatment. Applied Microbiology Biotechnology. 2014.V98(15): 6543-6553.DOI: 10.1007/s00253-014-5813-5.

3. Chao Wang, Youcai Zhao, Bing Xie(*), Qing Peng, Hassan Muhammad, Xiaoyuan Wang. Nitrogen Removal Pathway of Anaerobic Ammonium Oxidation in On-site Aged Refuse Bioreactor. Bioresource Technology. 2014.V159(5): 266–271.

4.  王佳欣, 崔璐璐, 谢冰(*). 生物发光法测定天然水体细菌数量中游离ATP的去除. 应用与环境生物学报.2014,V20(6),1091-1095.

5. 王晓媛,刘殷华,汪飞,黄长缨,陆峰,谢冰(*). 城市生活垃圾集装箱转运过程中污染物产生状况研究. 环境科学. 2014.V35(5):364-371.

6. 崔玉雪, 谢冰(*). 用于填埋场恶臭气体控制的微生物除臭剂筛选及其除臭机理研究. 环境污染与防治. 2014,36(1):60-64.5.  

 2013年

1. Wangchao, XieBing(*), Hanlu, Xuxiaofan. Study of Anaerobic Ammonium Oxidation Bacterial Community in the Aged Refuse Bioreactor with 16S rRNA Gene Library Technique. Bioresource Technology. 2013. V145:65-70.

2. XieBing(*), Lv Zhuo,Hu Chong, Yangxuezhi, Li Xiangzhen. Nitrogen removal through different pathways in aged refuse bioreactor treating mature landfill leachate. Applied Microbiology Biotechnology. 2013.V97: 9225-9234.  

  2012年

1. XieBing(*),Xiongshunzhi,HuChong, Zhang xiaojun. Performance and bacterial compositions of aged refuse reactors treating mature landfill leachate. Bioresource Technology. 2012.V103: 71-77. 

2. 彭清, 谢冰(*) ,袁琦,黄智婷. 青草沙水库蓄水期间细菌群落结构变化的初步研究. 环境科学.2012,33(10):3634-3640.

3.崔璐璐,谢冰(*),彭青,王文婷. 青草沙水库中一株铜绿微囊藻抑藻细菌的作用研究. 微生物学通报. 2012,39(5):0677-0682.

4.胡冲,谢冰(*),黄皇,李晶晶. 回流对陈垃圾生物反应器处理老年渗滤液污染物影响. 环境科学与技术. 2012.35(12):203-207. doi:10.3969/j.issn.1003-6504.2012.12.042.

5.杨学志,王一了,夏晓虹,谢冰(*). 溶解氧对晚期垃圾渗滤液短程硝化反硝化及微生物群落结构变化的影响. 环境污染与防治. 2012.34(11):14-19.

6.刘倩,谢冰(*),胡冲等. 陈垃圾反应床+芦苇人工湿地处理垃圾渗滤液. 环境工程学报.2012,(4):1108-1112.

7. 刘殷华, 王文婷, 谢冰(*).. 上海市区生活垃圾中转站臭气污染状况. 城市环境城市生态.2012,25(4):1-4.

8.王文婷, 黄皇,谢冰(*). 上海市某生活垃圾中转站污染特征. 城市环境与城市生态. 2012. 25(3):31-35.

 2011-2010年

1. XieBing (*), LvBaoyi‚Hu Chong. Landfill leachate pollutant removal performance of a novel biofilter packed with mixture medium. Bioresource Technology. 2010. V101:7754-7760.

2.  XieBing(*)‚Liu Qian‚ Hu Chong. The nitrogen removal on landfill leachate treatment in reeds wetland. J. of Biotechnology. 2010.V150(S1).39.doi:10.1016/j.jbiotec.2010.08.110.

3. Xie Bing(*)‚ Gu Jidong‚ Lu Jun. surface properties of bacteria from activated sludge in relation to bioflocculation. J. of Environment Science. 2010. V22(12):1840-1845.doi: 10.1016/S1001-0742(09)60329-6.

4. XieBing(*)‚LvBaoyi‚Lvzhuo‚Treatment of mature landfill leachate by biofilters  and Fenton oxidation. Waste Management. 2010.V30:2108-2112.10.1016/j.wasman.2010.06.018 .1.  

5. 戴淑萍,谢冰(*), 李斐斐,吕宝一,唐媛. 通气对复合生物滤池处理晚年期渗滤液污染物效果影响及微生物群落结构分析. 环境科学学报, 2011,31(7):1479-1485.

6. 吕卓,谢冰(*), 徐亚同. 青草沙水源地水库藻类监测预警指标体系研究. 环境科学与技术. 2011,V34(10):118-122.

7.吕宝一,唐媛,谢冰(*). 二段A/O接触氧化处理高盐有机废水研究.中国给水排水.2011,V27(1):102-105.

8.吕宝一‚谢冰(*)戴淑萍. 不同载体生物滤池对渗滤液污染物处理效果. 中国环境科学. 2010‚30(6): 328-332. 

9. 袁琦,崔玉雪,陈庆强,吕宝一,谢冰(*). 崇明东滩潮间带硫酸盐还原菌及有机质含量的初步研究. 环境科学, 2010, 31(9): 170-175.

10. 刘倩胡冲谢冰(*). 芦苇人工湿地对垃圾渗滤液TN去除能力的研究. 水处理技术‚2010‚ V36(12) :39-42.

 部分 2009年及以前

1.Xie Bing(*), Liang S.B., Tang Y., Petrochemical wastewater odor treatment by biofiltration. Bioresource Technology. 2009,V100:2204-2209.10.1016/j.biortech.2008.10.035.  

2.Xie B (*), Cui,Y.X., Yuan, Q., Pollutants removal and distribution of microorganisms in a reed wetland of ShanghaiMengqingPark. Environmental Progress. 2009, V28(2):240-248. doi:10.1002/ep.10333.

3.Xie Bing(*) and Wang Aijie. Pollutant control by microbial technology. Int. J. Environment and pollution. 2008, V32(1):1-2.

4.Xie B(*), Yang S.F. Analyses of bioflocculation and bacterial communities in SBR reactor. Environmental Engineering Science. 2009,V26(3):481-488. doi: 10.1089/ees.2007.0291.

5.  崔玉雪谢冰(*). 水源水生物预处理中填料生物量的测定方法探讨. 给水排水‚2009‚ V35(11):34-37.

6. Xie B(*), et al., Cause and pro-alarm control of bulking and foaming by Microthrix parvicella- A case study in triple oxidation ditch at a wastewater treatment plant. Journal of Hazardous materials. 2007, V143(1):184-191.

7. Xie B(*)‚JD.Gu‚ XY Li.‚ Protein profiles of extracellular polymeric substances and activated sludge in a membrane biological reactor by 2-dimensional gel-electrophoresis. Water Science and Technology: Water Supply‚ 2006‚ V6(6).27-33.

研究生二十余人次获国家奖学金、上海市或校级优秀毕业生称号;欢迎勇于挑战自我的研究生、博士后和青年研究员加入!

荣誉及奖励

获得上海市科技进步一(2008)、三等奖(排名第一,2017)、上海市自然科学二等奖(第一,2020)、上海闵行领军人才(2019),中国产学研促进会优秀成果奖(2021),简浩然环境微生物优秀工程奖(第一,2018),中国膜工业协会科学技术二等奖(2016,2017)和上海市教学成果二等奖(2017)等奖励