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面向有机污染物消除的“微生物、植物、电”多效耦合作用机制及低能耗型修复技术 被引量:2

ELECTRA:electricity-driven low energy and chemical input technology for accelerated bioremediation
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摘要 中欧合作项目“面向有机污染物消除的‘微生物、植物、电’多效耦合作用机制及低能耗型修复技术”是由中国国家自然科学基金委和欧盟共同资助的重大国际合作项目。该项目研究领域属于环境生物技术,研究团队包括5个中方单位和17个欧方单位,项目主要围绕新有机污染物的生物降解过程和机制、低能耗生物修复技术开展研究工作。项目执行2年来,在降解污染物的微生物资源、弱电介入增效生物降解和强化电子传递、微生物3D打印等方面取得了阶段性成果的同时,项目团队还开展了有效的交流和实质性合作。未来,项目团队将克服新冠疫情影响,强化中欧双方团队内部和团队之间的合作交流,全面实现项目科学目标,圆满完成国际合作任务。 The international cooperation project“electricity-driven low energy and chemical input technology for accelerated bioremediation”(abridged as“ELECTRA”)is jointly supported by National Nature Science Foundation of China(NSFC)and European Commission(EC).The ELECTRA consortium consists of 5 research institutions and universities from China and 17 European research institutions and universities,as well as high-tech companies of EC countries.ELECTRA focuses on researches of biodegradation of emerging organic compounds(EOCs)and novel environmental biotechnologies of low-energy and low-chemical inputs.The project has been successfully operated for 2 years,and has made important progresses in obtaining EOCs-degrading microbes,developing weak-electricity-accelerated bioremediation,and 3D-printing techniques for microbial consortium.The ELECTRA has promoted collaborations among the Chinese and European scientists.In the future,ELECTRA will overcome the negative impact of the COVID-19 pandemic and fulfill the scientific objectives through strengthening the international collaboration.
作者 刘双江 Philippe F.-X.Corvini Korneel Rabaey Shuang-Jiang Liu;Philippe F.-X.Corvini;Korneel Rabaey(Institute of Microbiology,Chinese Academy of Sciences,Beijing 100101,China;State Key Laboratory of Microbial Technology,Shandong University,Qingdao 266237,Shandong,China;School of Life Sciences,University of Applied Sciences and Arts Northwestern Switzerland,Muttenz 4132,Switzerland;School of Environmental Science,Nanjing University,Nanjing 210023,Jiangsu,China;Center for Microbial Ecology and Technology(CMET),Ghent University,Ghent,Belgium)
出处 《生物工程学报》 CAS CSCD 北大核心 2021年第10期3405-3410,共6页 Chinese Journal of Biotechnology
基金 国家自然科学基金(No.31861133002) 欧盟H2020(No.826244)资助。
关键词 中国-欧盟合作 环境生物技术 新有机污染物 生物降解 弱电 低能耗生物修复技术 ELECTRA environmental biotechnology emerging organic compounds(EOCs) biodegradation biotechnology of low-energy and low-chemical inputs
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