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姓名:
张宇
性别:
男
电子邮件:
645700448@qq.com
入职时间:
2016-07-11
在职信息:
在岗
职称:
讲师
单位:
安全保卫部
职务:
保卫处政治保卫科科长
学历:
硕士研究生毕业
学位:
硕士学位
毕业院校:
浙江师范大学
联系方式:
0579-82298887
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[16] Impact on growth, oxidative stress, and apoptosis-related gene transcription of zebrafish after exposure to low concentration of arsenite [期刊]. Chemosphere, 2018, Vol.211: 648-652
[17] Resuscitation of functional bacterial community for enhancing biodegradation of phenol under high salinity conditions based on Rpf. [期刊]. Bioresource Technology, 2018, Vol.261: 394-402
[18] Impact on growth, oxidative stress, and apoptosis-related gene transcription of zebrafish after exposure to low concentration of arsenite. [期刊]. Chemosphere, 2018, Vol.211: 648-652
[19] Sustainable biodegradation of phenol by immobilized Bacillus sp. SAS19 with porous carbonaceous gels as carriers. [期刊]. Journal of environmental management, 2018, Vol.222: 185-189
[20] THE EFFECT OF SHORT-TERM EXPOSURE TO LOW pH/ALUMINUM ON THE ION REGULATION, RELATED ATPase ACTIVITIES AND HAEMATOLOGICAL PARAMETERS OF JUVENILE COMMON CARP. [期刊]. Fresenius Environmental Bulletin, 2018, Vol.27(No.5): 3318-3325
[21] A New Approach of Rpf Addition to Explore Bacterial Consortium for Enhanced Phenol Degradation Under High Salinity Conditions [期刊]. Current Microbiology,
[22] Resuscitation of viable but non-culturable bacteria to enhance the cellulose-degrading capability of bacterial community in composting [期刊]. Microbial Biotechnology, 2018, Vol.11(No.3): 527-536
[23] Resuscitation of viable but non‐culturable bacteria to enhance the cellulose‐degrading capability of bacterial community in composting [期刊]. Microbial Biotechnology, 2018, Vol.11(No.3): 527-536
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