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浙江工业大学环境学院导师教师师资介绍简介-何崭飞

本站小编 Free考研考试/2021-04-10

姓名:何崭飞
工作部门:环境学院
性别:男
技术职称:副教授
最高学位:博士
民族:汉
籍贯:浙江余姚
联系方式:**
Email: zhanfeihe@zjut.edu.cn
主要研究方向:
土壤生物修复、废水生物处理、微生物矿化技术和温室气体生物控制技术。
简历
2019.12-至今 浙江工大大学 副教授
2016.12-2019.12 浙江工大大学 讲师
2011.09-2016.12 浙江大学 博士
2007.09-2011.07 浙江大学 学士
研究(情况)项目:
1、国家重点研发计划子课题,新疆阿勒泰喀拉通克铜镍矿尾矿区与周边重污染土壤修复效果监测、模拟与评估研究,2018YFC**,2018.12-2022.12,50.4万元,在研,主持
2、国家基金青年项目,水稻田微生物催化的铁还原型甲烷厌氧氧化过程及其机理研究,**,2018.01-2020.12,26万元,在研,主持
3、国家基金重点项目,伊犁地区富铀煤炭固体废弃物铀污染的环境效应,U**,2018.01-2021.12,279万元,在研,参与
4、国家基金面上项目,手性除草剂干扰土壤根系微生物群落结构及多样性的对映体选择性,**,64万元,在研,参与
5、国家基金面上项目,FeEDTA强化传质效应下BioDeNOx体系的微生物及还原酶作用机制,**,2018.01-2021.12,64万元,在研,参与
发表的代表性论文:
1.He Z., et al. Multiple-pathway arsenic oxidation and removal from wastewater by a novel manganese-oxidizing aerobic granular sludge. Water Research. 2019. 157, 83-93.
2.He Z., et al.Methane emissions from aqueous sediments are influenced by complex interactions among microbes and environmental factors: A modeling study. Water research, 2019. 166, 115086.
3.He Z., et al.Simultaneous removal of As (III) and Cu (II) from real bottom ash leachates by manganese-oxidizing aerobic granular sludge: Performance and mechanisms. Science of The Total Environment, 2020.700, 134510.
4.He Z., et al.Cultivation of a versatile manganese-oxidizing aerobic granular sludge for removal of organic micropollutants from wastewater. Science of The Total Environment, 2019. 690, 417-425.
5.He Z., et al. Regulation of coastal methane sinks by a structured gradient of microbial methane oxidizers. Environmental Pollution. 2019, 244, 228-237.
6.He Z., et al.Metal oxyanion removal from wastewater using manganese-oxidizing aerobic granular sludge. Chemosphere, 2019. 236, 124353.
7.He Z., et al. Simultaneous remediation of As (III) and dibutyl phthalate (DBP) in soil by a manganese-oxidizing bacterium and its mechanisms. Chemosphere,2019, 220, 837-844.
8.He Z., et al. Microbiological and environmental significance of metal-dependent anaerobic oxidation of methane. Science of the Total Environment,2018,610, 759-768.
9.He Z., et al. Oxygenic denitrification for nitrogen removal with less greenhouse gas emissions: Microbiology and potential applications. Science of the Total Environment, 2018, 621, 453-464.
10.He Z., et al. Optimization of methane-dependent oxygenic denitrification in sequencing batch reactors by insights into the microbial interactions. Science of The Total Environment, 2018, 643, 623-631.
11.He Z., et al. A novel denitrifying methanotroph of the NC10 phylum and its microcolony. Scientific reports, 2016,6, 32241.
12.He Z., et al. Improved PCR primers to amplify 16S rRNA genes from NC10 bacteria. Applied microbiology and biotechnology, 2016,100(11), 5099-5108.
13.He Z., et al. Improvement of mineral nutrient concentrations and pH control for the nitrite-dependent anaerobic methane oxidation process. Separation and Purification Technology, 2016, 162, 148-153.
14.He Z., et al. The short- and long-term effects of environmental conditions on anaerobic methane oxidation coupled to nitrite reduction. Water research, 2015, 68, 554-562.
15.He Z., et al. Improvement of the trace metal composition of medium for nitrite-dependent anaerobic methane oxidation bacteria: Iron (II) and copper (II) make a difference. Water research, 2015, 85, 235-243.
16.He Z., et al. Anaerobic Oxidation of Methane Coupled to Nitrite Reduction by Halophilic Marine NC10 Bacteria. Appl. Environ. Microbiol.,2015,81(16), 5538-5545.
17.He Z., et al. Nitrogen removal from wastewater by anaerobic methane-driven denitrification in a lab-scale reactor: heterotrophic denitrifiers associated with denitrifying methanotrophs. Applied microbiology and biotechnology,2015,99(24), 10853-10860.
18.He Z., et al. Effect of inoculum sources on the enrichment of nitrite-dependent anaerobic methane-oxidizing bacteria. Applied microbiology and biotechnology,2015,99(2), 939-946.
19.He Z., et al. Modeling a nitrite-dependent anaerobic methane oxidation process: Parameters identification and model evaluation. Bioresource technology,2013,147, 315-320.
科研成果及专利:
1.何崭飞,赵缘海,徐书瑜,张庆莹,潘响亮. 利用好氧颗粒污泥去除和回收有机酸废水中阳离子重金属的装置和方法. 6.6发明专利已受理
2.何崭飞,张庆莹,薛娜娜,韦震,冯婕妮,潘响亮. 一种岸基远程水下沉积物采样装置及其采样方法. 1.8发明专利已受理
3.何崭飞,冯婕妮,韦震,张庆莹,李泽雅,潘响亮.一种完整土壤柱样采集器及其采样方法7.0发明专利已受理
4.何崭飞,冯婕妮,韦震,张庆莹,潘响亮. 一种螺旋式水田深层土壤采集器及其使用方法. 8.0发明专利已受理
5.何崭飞,赵缘海,徐书瑜,张庆莹,潘响亮. 一种利用好氧颗粒污泥去除和回收有机酸废水中阳离子重金属的装置. 20**实用新型专利已受理
6.何崭飞,张庆莹,薛娜娜,韦震,冯婕妮,潘响亮一种岸基远程水下沉积物采样装置ZL9.1实用新型专利已授权
7.何崭飞,冯婕妮,韦震,张庆莹,李泽雅,潘响亮一种完整土壤柱样采集器3.2实用新型专利已受理
8.何崭飞,冯婕妮,韦震,张庆莹,潘响亮一种螺旋式水田深层土壤采集器2.2实用新型专利已受理
9.胡宝兰,何崭飞,蔡琛,沈李东,楼莉萍,郑平,刘帅. 基于自动化控制的桨降式持气内循环反硝化型甲烷厌氧氧化反应器. ZL8.2中国发明专利
10.胡宝兰,何崭飞,蔡琛,沈李东,楼莉萍,郑平,刘帅. 外置式甲烷无泡曝气生物膜反硝化型甲烷厌氧氧化菌富集装置及方法. ZL8.8中国发明专利
11.胡宝兰,何崭飞,蔡琛,沈李东,楼莉萍,郑平. 磁搅气升式内循环反硝化型甲烷厌氧氧化菌富集装置与方法. ZL1.9中国发明专利
12.胡宝兰,何崭飞,叶天强,郑平. 分层式生物-化学联合沼气脱硫装置. ZL3.6 中国发明专利
13.胡宝兰,何崭飞,刘帅,叶天强,徐新华,田光明,郑平. 溶解氧自动化控制的海洋氨氧化古菌富集装置. ZL9.9 中国发明专利
14.胡宝兰,何崭飞,刘帅,叶天强,徐新华,田光明,郑平. 一种滩涂沉积物采集、原位生态模拟装置及其方法. 3.4 中国发明专利
15.胡宝兰,何崭飞,蔡琛,沈李东,楼莉萍,郑平,刘帅. 一种基于自动化控制的桨降式持气内循环反硝化型甲烷厌氧氧化反应器. 实用新型专利ZL1.7.
16.胡宝兰,何崭飞,蔡琛,沈李东,楼莉萍,郑平,刘帅. 外置式甲烷无泡曝气生物膜反硝化型甲烷厌氧氧化菌富集装置. ZL4.8实用新型专利
17.胡宝兰,何崭飞,蔡琛,沈李东,楼莉萍,郑平.磁搅气升式内循环反硝化型甲烷厌氧氧化菌富集装置. ZL5.7 实用新型专利
18.胡宝兰,何崭飞,叶天强,郑平. 一种分层式生物-化学联合沼气脱硫装置. ZL3.5 实用新型专利.
19.胡宝兰,何崭飞,叶天强,楼莉萍,徐新华,郑平. 一种海洋亚硝酸盐型甲烷厌氧氧化微生物培养装置. ZL4.1 实用新型专利
20.胡宝兰,何崭飞,刘帅,叶天强,徐新华,田光明,郑平. 一种溶解氧自动化控制的海洋氨氧化古菌富集装置. ZL0.4实用新型专利
21.胡宝兰,何崭飞,刘帅,叶天强,徐新华,田光明,郑平. 一种滩涂沉积物采集、原位生态模拟装置. ZL1.9 实用新型专利
研究生培养等教学情况:
2018年,培养1名硕士生获得国家奖学金。

奖励和荣誉:
2015 年,第十二届上海同济高廷耀环保科技发展基金“青年博士生杰出人才奖学金”;
2015 年,简浩然环境微生物学优秀论文奖;
2015 年,博士研究生国家奖学金。





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