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13篇 您的检索式:作者名="Yu Ruiling"
    题名 作者 年代 出处 被引量
1Survey on Sign Language Interpreting in China 显示文摘Xiao Xiaoyan Yu Ruiling 2009Interpreting2009,,2:1
2Aerobic granules formation and nutrients removal cha-racteristics in sequencing batch airlift reactor (SBAR) at low temperature显示文摘BAO Ruiling YU Shuili SHI Wenxin 2009Journal of Hazardous Materials2009,16,8:1
3Aerobic granules formation and nutrients removal characteristics in sequencing batch airlift reactor (SBAR) at low temperature显示文摘Ruiling Bao Shuili Yu Wenxin Shi Xuedong Zhang Yulan Wang 2009Journal of Hazardous Materials2009,,2:1
4Environmental flows and its evaluation of restoration effect based on LEDESS model in Yellow River Delta wetlands显示文摘Xingong Wang Yu Lian Chong Huang Xiaojun Wang Ruiling Wang Kai Shan Bas Pedroli Michiel Eupen Amgad ElMahdi Mahtab Ali 2012Mitigation and Adaptation Strategies for Global C2012,,4:1
5Aerobic granules formation and nutrients removal characteristics in sequencing batch airlift reactor(SBAR) at low temperature显示文摘BAO Ruiling YU Shuili SHI Wenxin 2009Journal of Hazardous Materials2009,168,23:1
6Aerobic granules formation and nutrients removal characteristics in sequencing batch airlift reactor (SBAR) at low temperature显示文摘Bao Ruiling Yu Shuili Shi Wenxin 0,,:1
7Contaminants conversion processes and removal by aerobic granular sludge at low tempera- ture 显示文摘Ban Ruiling Yu Shuili Wu Jiapei 2008Journal of Biotechnology2008,136,93:1
8Theoretical analysis and applications of Y-Inversion Ventilation System in a mine fire zone显示文摘Based on mine fire fighting practices at the 1110 working face of the Brapukuria Coal Mine,Bangladesh,we introduce and discuss the Y-Inversion Ventilation System,the latest technology used both in mine fire zone management and the unsealing process.This ventilation system can ensure that all miners breathed fresh air,providing protection for them during fire fighting and unsealing the fire zone.On the other hand,adjusting the amount of air at the working face and forming a CO leakage path controlled the state of the fire and as well ensured that the different fire extinguishing measures could be applied successfully.These are all fundamental techniques which ensured successful fire extinguishing and unsealing of the fire zone.We also analyzed the main reasons for the spontaneous coal combustion that occurred at the 1110 working face.Successful application of advanced composite polymer colloidal perfusion techniques,polymer foam MEA perfusion and fire-prevention technology by infusing nitrogen,used in mine fire zone management and unsealing,are presented.We value the experience with these techniques very highly and are of the opinion that these techniques could be widely used in mine fire fighting practices under similar spontaneous coal combustion conditions elsewhere.YANG Shengqlang PANG Weidong WEN Hu YU Baohua MA Zhihe HUANG Ruiling 2010Mining Science and Technology2010,20,5:1
9Aerobic granules formation and nutrients removal characteristics in sequencing batch airlift reactor (SBAR) at low temperature 显示文摘BAO Ruiling YU Shuili Shi Wenxin 2009Journal of Hazardous Materials2009,168,23:1
10Severe acute respiratory syndrome coronavirus protein 6 mediates ubiquitin-dependent proteosomal degradation of N-Myc(and STAT) interactor显示文摘Severe acute respiratory syndrome coronavirus(SARS-Co V) encodes eight accessory proteins, the functions of which are not yet fully understood. SARS-Co V protein 6(P6) is one of the previously studied accessory proteins that have been documented to enhance viral replication and suppress host interferon(IFN) signaling pathways. Through yeast two-hybrid screening, we identified eight potential cellular P6-interacting proteins from a human spleen c DNA library. For further investigation, we targeted the IFN signaling pathway-mediating protein, N-Myc(and STAT) interactor(Nmi). Its interaction with P6 was confirmed within cells. The results showed that P6 can promote the ubiquitin-dependent proteosomal degradation of Nmi. This study revealed a new mechanism of SARS-Co V P6 in limiting the IFN signaling to promote SARS-Co V survival in host cells.Weijia Cheng Shiyou Chen Ruiling Li Yu Chen Min Wang Deyin Guo 2015Virologica Sinica2015,30,2:1
11Survey on Sign Language Interpreting in China 显示文摘Xiao Xiaoyan Yu Ruiling 2009Interpreting2009,,2:1
12Effect of SiO2 nanoparticle addition on the characteristics of a new organic- inorganic hybrid membrane 显示文摘Yu Shuili Zuo Xingtao Bao Ruiling 2009Polymer2009,50,2:1
13A genetically engineered Escherichia coli that senses and degrades tetracycline antibiotic residue显示文摘Due to the abuse of antibiotics,antibiotic residues can be detected in both natural environment and various industrial products,posing threat to the environment and human health.Here we describe the design and implementation of an engineered Escherichia coli capable of degrading tetracycline(Tc)-one of the commonly used antibiotics once on humans and now on poultry,cattle and fisheries.A Tcdegrading enzyme,TetX,from the obligate anaerobe Bacteroides fragilis was cloned and recombinantly expressed in E.coli and fully characterized,including its Km and kcat value.We quantitatively evaluated its activity both in vitro and in vivo by UVeVis spectrometer and LC-MS.Moreover,we used a tetracycline inducible amplification circuit including T7 RNA polymerase and its specific promoter PT7 to enhance the expression level of TetX,and studied the dose-response of TetX under different inducer concentrations.Since the deployment of genetically modified organisms(GMOs)outside laboratory brings about safety concerns,it is necessary to explore the possibility of integrating a kill-switch.Toxin-Antitoxin(TA)systems were used to construct a mutually dependent host-plasmid platform and biocontainment systems in various academic and industrious situations.We selected nine TA systems from various bacteria strains and measured the toxicity of toxins(T)and the detoxifying activity of cognate antitoxins(A)to validate their potential to be used to build a kill-switch.These results prove the possibility of using engineered microorganisms to tackle antibiotic residues in environment efficiently and safely.Zepeng Mu Zhuoning Zou Ye Yang Wenbo Wang Yue Xu Jianyi Huang Ruiling Cai Ye Liu Yajin Mo Boyi Wang Yiqun Dang Yongming Li Yushan Liu Yueren Jiang Qingyang Tan Xiaohong Liu Cheng Hu Hua Li Sha Wei Chunbo Lou Yang Yu Jiangyun Wang 2018Synthetic and Systems Biotechnology2018,3,3:0
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