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Yu-Rong Liu

Showing results (11-20 of 110) with videos related to

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Journal of Basic Microbiology|November 5, 2011
Effects of long-term fertilization on the diversity of bacterial mercuric reductase gene in a Chinese upland soilYu-Rong Liu, Ji-Zheng He, Li-Mei Zhang, et al.
Microbial Ecology|February 25, 2015
Insight into the Modulation of Dissolved Organic Matter on Microbial Remediation of PAH-Contaminated SoilsXue-Mei Han, Yu-Rong Liu, Li-Mei Zhang, et al.
Journal of Environmental Sciences (China)|December 26, 2015
Responses of soil ammonia oxidizers to a short-term severe mercury stressZhi-Feng Zhou, Yu-Rong Liu, Guo-Xin Sun, et al.
The Science of the Total Environment|November 21, 2017
Biochar and nitrate reduce risk of methylmercury in soils under straw amendmentYue Zhang, Yu-Rong Liu, Pei Lei, et al.
Environmental Science and Pollution Research International|August 1, 2013
Linkage between community diversity of sulfate-reducing microorganisms and methylmercury concentration in paddy soilYu-Rong Liu, Yuan-Ming Zheng, Li-Mei Zhang, et al.
World Journal of Clinical Cases|January 31, 2022
Analysis of 20 patients with laparoscopic extended right colectomyHui-Da Zheng, Jian-Hua Xu, Yu-Rong Liu, et al.
Environment International|March 3, 2019
Mechanisms of algal biomass input enhanced microbial Hg methylation in lake sedimentsPei Lei, Luís M Nunes, Yu-Rong Liu, et al.
Applied and Environmental Microbiology|March 4, 2014
Analysis of the microbial community structure by monitoring an Hg methylation gene (hgcA) in paddy soils along an Hg gradientYu-Rong Liu, Ri-Qing Yu, Yuan-Ming Zheng, et al.
The Science of the Total Environment|June 22, 2023
Soil core microbiota drive community resistance to mercury stress and maintain functional stabilityShuai Du, Xin-Qi Li, Jiao Feng, et al.
Environmental Monitoring and Assessment|January 25, 2016
Effect of long-term industrial waste effluent pollution on soil enzyme activities and bacterial community compositionGangavarapu Subrahmanyam, Ju-Pei Shen, Yu-Rong Liu, et al.
Pageof 11

Showing results (11-20 of 110) with videos related to

Sort By:
Pageof 11
Journal of Basic Microbiology|November 5, 2011
Effects of long-term fertilization on the diversity of bacterial mercuric reductase gene in a Chinese upland soilYu-Rong Liu, Ji-Zheng He, Li-Mei Zhang, et al.
Microbial Ecology|February 25, 2015
Insight into the Modulation of Dissolved Organic Matter on Microbial Remediation of PAH-Contaminated SoilsXue-Mei Han, Yu-Rong Liu, Li-Mei Zhang, et al.
Journal of Environmental Sciences (China)|December 26, 2015
Responses of soil ammonia oxidizers to a short-term severe mercury stressZhi-Feng Zhou, Yu-Rong Liu, Guo-Xin Sun, et al.
The Science of the Total Environment|November 21, 2017
Biochar and nitrate reduce risk of methylmercury in soils under straw amendmentYue Zhang, Yu-Rong Liu, Pei Lei, et al.
Environmental Science and Pollution Research International|August 1, 2013
Linkage between community diversity of sulfate-reducing microorganisms and methylmercury concentration in paddy soilYu-Rong Liu, Yuan-Ming Zheng, Li-Mei Zhang, et al.
World Journal of Clinical Cases|January 31, 2022
Analysis of 20 patients with laparoscopic extended right colectomyHui-Da Zheng, Jian-Hua Xu, Yu-Rong Liu, et al.
Environment International|March 3, 2019
Mechanisms of algal biomass input enhanced microbial Hg methylation in lake sedimentsPei Lei, Luís M Nunes, Yu-Rong Liu, et al.
Applied and Environmental Microbiology|March 4, 2014
Analysis of the microbial community structure by monitoring an Hg methylation gene (hgcA) in paddy soils along an Hg gradientYu-Rong Liu, Ri-Qing Yu, Yuan-Ming Zheng, et al.
The Science of the Total Environment|June 22, 2023
Soil core microbiota drive community resistance to mercury stress and maintain functional stabilityShuai Du, Xin-Qi Li, Jiao Feng, et al.
Environmental Monitoring and Assessment|January 25, 2016
Effect of long-term industrial waste effluent pollution on soil enzyme activities and bacterial community compositionGangavarapu Subrahmanyam, Ju-Pei Shen, Yu-Rong Liu, et al.
Pageof 11