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个人简介

魏自民,男,1969.11,汉族,教授,博士。 教育状况 1989.9-1993.7,东北农学院,农学系(本科) 1998.9-2000.12,东北农业大学,土壤专业(硕士) 2001.9-2004.7,东北农业大学,作物栽培与耕作专业(农业环境保护方向,博士) 2005.1-2007.6,中国环境科学研究院,环境工程博士后流动站,博士后研究 工作经历 1993.7-1998.8,东北农学院,助理实验师 1998.9-2004.8,东北农业大学农学院,实验师 2004.9-2009.8,东北农业大学生命科学学院,副教授 2009.9-现在,东北农业大学生命科学学院,教授 2012.1-2013.1,美国宾夕尼亚大学,访问学者 所获奖励 1.东北平原与山地湖泊营养物代谢驱动机制及污染源头减量技术, 黑龙江省政府科学技术奖(进步类),二等,2018年,排名第1 2.有机废弃物堆肥生物强化机制研究,黑龙江省政府科学技术奖(自然类),二等,2015年,排名第1 3.有机废弃物堆肥生物强化机制研究,黑龙江省农业科学技术奖(自然类),一等,2015年,排名第1 4.农业有机废弃物高效生物发酵资源化技术集成与装备,环境保护部科学技术一等奖,2011年,排名第6 5.垃圾生物有机肥的研制与推广,黑龙江省高校科技进步二等奖,2007年,排名第2

研究领域

环境微生物

近期论文

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1.Hong-Yang Cui, Yue Zhao, Yan-Ni Chen, Xu Zhang, Xue-Qin Wang, Qian Lu, Li-Ming Jia, Zi-Min Wei*. Assessment of phytotoxicity grade during composting based on EEM/PARAFAC combined with Projection Pursuit Regression. Journal of Hazardous Materials, 2017, 326, 10–17. IF=6.434 2.Qinghong Sun, Jian Chen, Yuquan Wei, Yue Zhao, Zimin Wei*, Haiyang Zhang, Xintong Gao, Junqiu Wu, Xinyu Xie. Effect of semi-continuous replacements of compost materials after inoculation on the performance of heat preservation of low temperature composting, Bioresource Technology, 2019, 279, 50-56. IF=5.807. 3.Chen Xiaomeng, Liu Rui, Hao Jingkun, Li Dan, Wei Zimin*. Improved lignocellulose-degrading performance during straw composting from diverse sources with actinomycetes inoculation by regulating the key enzyme activities. Bioresource Technology, 2019, 271,482-486. IF=5.807. 4.Wei Yuquan#, Wu Di#, Wei Dan, Zhao Yue, Wu Junqiu, Xie Xinyu, Zhang Ruju, Wei Zimin*. Improved lignocellulose-degrading performance during straw composting from diverse sources with actinomycetes inoculation by regulating the key enzyme activities. Bioresource Technology, 2019, 271, 66-74. IF=5.807. 5.Junqiu Wu#, Haishi Qi#, Xinning Huang, Dan Wei, Yue Zhao, Zimin Wei*, Qian Lu,. Ruju Zhang, Tianjiao Tong. How does manganese dioxide affect humus formation during biocomposting of chicken manure and corn straw? Bioresource Technology, 2018, 169–178. IF=5.807. 6.Wei Yuquan, Yue Zhao, Qian Lu, Zhenyu Cao, Zimin Wei*. Organophosphorus- degrading bacterial community during composting from different sources and their roles in phosphorus transformation different sources and their roles in phosphorus transformation. Bioresource Technology, 2018, 264, 277–284. IF=5.807. 7.Zhou Haixuan, Zhao Yue, Yang Hongyu, Zhu Longji, Cai Baiyan, Luo Sheng, Cao JinXiang, Wei Zimin*. Transformation of organic nitrogen fractions with different molecular weights during different organic wastes composting. Bioresource Technology, 2018, 262, 221-228. IF=5.807. 8.Qian Lu, Yue Zhao, Xintong Gao, Junqiu Wu, Haixuan Zhou, Pengfei Tang, Qingbin Wei, Zimin Wei*. Effect of tricarboxylic acid cycle regulator on carbon retention and organic component transformation during food waste composting. Bioresource Technology, 2018, 256, 128–136. IF=5.807. 9.Wei Yuquan#, Zhao Yue#, Shi Mingzi, Cao Zhenyu, Lu Qian, Yang Tianxue, Fan Yuying, Wei Zimin*. Organic acids production and bacterial community induced changes of the possible mechanism of phosphorus solubilization with enriched phosphate-solubilizing bacteria inoculation. Bioresource Technology, 2018, 247 190–199. IF=5.807. 10.Sun Qinghong, Wu Di, Zhang zhechao, Zhao Yue, Xie xinyu, Junqiu Wu, Qian Lu, Wei Zimin*. Effect of cold-adapted microbial agent inoculation on enzyme activities during composting start-up at low temperature. Bioresource Technology, 2017, 244 635–640. IF=5.807. 11.Junqiu Wu, Yue Zhao, Haishi Qi, Xinyu Zhao, Zhang Hui, Yingqiu Du, Zimin Wei*. Identify the controlling factors that affect the formation of humic substance during different materials composting. Bioresource Technology, Bioresource Technology. 2017,244, 1193–1196. IF=5.807. 12.Yuquan Wei, Yue Zhao, Yuying Fan, Qian Lu, Mingxiao Li, Qingbin Wei, Yi Zhao, Zhenyu Cao, Zimin Wei*. Impact of phosphate-solubilizing bacteria inoculation methods on phosphorus transformation and long-term utilization in composting. Bioresource Technology, 2017, 241, 134-141. IF=5.807. 13.Xinyu Xie, Yue Zhao , Qinghong Sun , Xueqin Wang, Hongyang Cui, Xu Zhang ,Yanjie Li, Zimin Wei*. A novel method for contributing to composting start-up at low temperature by inoculating cold-adapted microbial consortium?, Bioresource Technology, 2017, 238C, 39-47. IF=5.807. 14.Junqiu Wu, Yue Zhao, Wei Zhao, Tianxue Yang, Xu Zhang, Xinyu Xie, Huiyang Cui, Zi-min Wei*. Effect of precursors combined with bacteria communities on the on the formation of humic substances during different materials composting. Bioresource Technology, 2017, 226, 191-199. IF=5.807. 15.Yun Zhang, Yue Zhao, Yanni Chen, Qian Lu, Mingxiao Li, Xueqin Wang, Yuquan Wei, Xinyu Xie, Zimin Wei*. A regulating method for reducing nitrogen loss based on enrichedammonia-oxidizing bacteria during composting. Bioresource Technology, 2016, 221, 276–283. IF=5.651. 16.Wei Yuquan, Zhao Yue, Wang Huan, Lu Qian, Cao Zhengyu, Cui Hongyang, Zhu Longji, Wei Zimin*. An optimized regulating method for composting phosphorus fractions transformation based on biochar addition and phosphate-solubilizing bacteria inoculation. Bioresource Technology, 2016, 221, 139-146. IF=5.651. 17.Yue Zhao, Qian Lu, Yuquan Wei, Hongyang Cui, Xu Zhang, Xueqin Wang, Si Shan, Zimin Wei*. Effect of actinobacteria agent inoculation methods on cellulose degradation during composting based on redundancy analysis. Bioresource Technology. 2016, 219, 196–203. IF=5.651. 18.Wei yuquan, Wei Zimin*, Cao Zhenyu, Zhao Yue, et al., A regulating method for the distribution of phosphorus fractions based on environmental parameters related to the key phosphate-solubilizing bacteria during composting. Bioresource Technology, 2016, 211, 610-717. IF=5.651. 19.Xueqin Wang, Hongyang Cui, Jianhong Shi, Xinyu Zhao, Yue Zhao, Zimin Wei*. Relationship between bacterial diversity and environmental parameters during composting of different raw materials. Bioresource Technology 2015, 198, 395–402. IF=5.651 20.Yuquan Wei, Yue Zhao, Beidou Xi, Zimin Wei*, Xue Li, Zhenyu Cao. Changes in phosphorus fractions during organic wastes composting from different sources, Bioresource Technology, 2015, 189: 349–356. IF=5.651

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