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| 1 | Sorption of Cu(lI) and Cd(II) by extraceUuar polymeric substances(EPS) from Aspergillus fumigates 显示文摘 | Yurong Yin Yongyou Hu Fen Xiong | 2011 | Intemational Biodeterioration and Biodegradation2011,65,: | 1 |
| 2 | Chicken intestine defensins activated murine peripheral blood mononuclear cells through the TLR4-NF-κB pathway显示文摘 | YuRong Yang YiBao Jiang QingQiang Yin HongDe Liang RuiPing She | 2009 | Veterinary Immunology and Immunopathology2009,,1: | 1 |
| 3 | Sorption Of Cu( I ) and Cd(I ) by extracellular polymeric substances(EPS) from Asporgillus lumigates 显示文摘 | YIN YURONG HONG YONGYOU XIONG FEN | 2011 | International Biodeterioration & Biodegradation2011,65,: | 1 |
| 4 | Sorption of Cu (Ⅱ) and Cd(Ⅱ) by extracelluar polymeric substances (EPS) from Aspergillusfumigates显示文摘 | Yin Yurong Hu Yongyou Xiong Fen | 2011 | International Biodeterioration and Biodegradation2011,65,7: | 1 |
| 5 | Numerical prediction of combustion of carbon particle clusters in a circulating fluidized bed riser显示文摘 | Zhao Yunhau Lu Huilin He Yurong Jianmin Ding Yin Lijie | 2006 | Chemical Engineering Journal2006,,1: | 1 |
| 6 | Effects of cobalt doping on the reactivity of hausmannite for As(Ⅲ)oxidation and As(Ⅴ)adsorption显示文摘Hausmannite is a common low valence Mn oxide mineral,with a distorted spinel structure,in surficial sediments.Although natural Mn oxides often contain various impurities of transitional metals(TMs),few studies have addressed the effect and related mechanism of TM doping on the reactivity of hausmannite with metal pollutants.Here,the reactivity of cobalt(Co)doped hausmannite with aqueous As(Ⅲ)and As(Ⅴ)was studied.Co doping decreased the point of zero charge of hausmannite and its adsorption capacity for As(Ⅴ).Despite a reduction of the initial As(Ⅲ)oxidation rate,Co-doped hausmannite could effectively oxidize As(Ⅲ)to As(Ⅴ),followed by the adsorption and fixation of a large amount of As(Ⅴ)on the mineral surface.Arsenic K-edge EXAFS analysis of the samples after As(Ⅴ)adsorption and As(Ⅲ)oxidation revealed that only As(Ⅴ)was adsorbed on the mineral surface,with an average As-Mn distance of 3.25–3.30 A,indicating the formation of bidentate binuclear complexes.These results provide new insights into the interaction mechanism between TMs and low valence Mn oxides and their effect on the geochemical behaviors of metal pollutants. | Shuang Zhang Hui Li Zhongkuan Wu Jeffrey EPost Bruno Lanson Yurong Liu Biyun Hu Mingxia Wang Limei Zhang Mei Hong Fan Liu Hui Yin | 2022 | Journal of Environmental Sciences2022,34,12: | 0 |
| 7 | The influences of Organizational Routines on Establishing Dynamic Competitive Advantages显示文摘 | Yurong Gao Liuying Yin | 2004 | Chinese Business Review2004,3,7: | 0 |
| 8 | Mercury transformation processes in nature: Critical knowledge gaps and perspectives for moving forward显示文摘The transformation of mercury(Hg) in the environment plays a vital role in the cycling of Hg and its risk to the ecosystem and human health. Of particular importance are Hg oxidation/reduction and methylation/demethylation processes driven or mediated by the dynamics of light, microorganisms, and organic carbon, among others. Advances in understanding those Hg transformation processes determine our capacity of projecting and mitigating Hg risk. Here, we provide a critical analysis of major knowledge gaps in our understanding of Hg transformation in nature, with perspectives on approaches moving forward. Our analysis focuses on Hg transformation processes in the environment, as well as emerging methodology in exploring these processes. Future avenues for improving the understanding of Hg transformation processes to protect ecosystem and human health are also explored. | Zhiyuan Gao Wang Zheng Yanbin Li Yurong Liu Mengjie Wu Shouying Li Ping Li Guangliang Liu Xuewu Fu Shuxiao Wang Feiyue Wang Yong Cai Xinbin Feng Baohua Gu Huan Zhong Yongguang Yin | 2022 | Journal of Environmental Sciences2022,34,9: | 0 |
| 9 | Influence of PrP 106―126 on expression of laminin and fibronectin in astrocyte显示文摘Astrogliosis is a hallmark of prion disease, but the metabolic alterations of astrocytes remain poorly documented. A synthetic peptide corresponding to amino acid 106―126 of the human prion protein (PrP) has been shown to be toxic to neurons. In this study, the effects of PrP 106―126 on astrocytes were investigated in vitro. The proliferation of astrocytes was significantly (P < 0.05) increased when grown in media conditioned with PrP 106―126 (80 μmol/L) from microglia. The expression of laminin (LN) and fibronectin (FN) was examined at both mRNA and protein levels. The results showed that ex- posure of astrocytes to PrP 106―126 enhanced the expression of LN and FN. The increase of FN in astrocyte cultures required cytokines previously released by activated microglia. This study reveals the expression of LN and FN affected by PrP106―126. | LI YuRong GUAN LeLuo YANG JianMin ZHOU XiangMei YIN XiaoMin ZHAO DeMing | 2008 | Chinese Science Bulletin2008,53,14: | 0 |
| 10 | Secure routing and transmission scheme for space-ocean broadband wireless network显示文摘Dear editor,Increase in maritime activities with exclusive economic zones leads to an increase in demands for information security in maritime communication networks.In maritime,all ships must install an automatic identification system(AIS)to ensure navigational safety,including eavesdropper ships(ESs).Therefore,the navigation information of the ships is easy for an operator to obtain via the AIS.In the study of[1],the author proposed a new AIS-based ad hoc network model and an AISbased ad hoc routing protocol for ship-to-ship and ship-to-shore data communications.To enhance the secrecy of wireless communications,physical layer security(PLS)uses the characteristics of wireless channels[2].A relay-aided PLS is suited for maritime networks.In[3],fountain code and relay-aided PLS techniques were found to be suitable for wireless networks.In[4],the PLS in opportunistic relay selection networks over independent and identically distributed Rayleigh fading channels was studied. | Yuzhou FU Chuan-Ao JIANG Yurong QIN Liuguo YIN | 2020 | Science China(Information Sciences)2020,63,4: | 0 |