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7篇 您的检索式:作者名="Zhen Tao Mi"
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1Distribution and source of microplastics in China's second largest reservoir-Danjiangkou Reservoir显示文摘Fresh water microplastic pollution is of pressing concern globally,but its distribution and sources in reservoirs are poorly documented.Danjiangkou Reservoir is the second largest reservoir in China and is divided into the Han Reservoir and Dan Reservoir.In this work,microplastic abundances and morphological characteristics of the reservoir were investigated.The microplastic abundance of 15 main tributaries of the reservoir was also measured.The vertical distribution(in water column and sediment),horizontal distribution(in Han Reservoir and Dan Reservoir)and source of microplastics were analyzed.Microplastics accumulated in the middle layer of the reservoir,and the size and color of the microplastic particles changed from the surface to the bottom,which implies that surveys of surface water are not enough to determine the microplastic contamination for deep water reservoirs.In the surface water,the microplastic abundance in the Han Reservoir was lower than that in the Dan Reservoir(p<0.05),but microplastic abundance did not differ significantly in the intermediate and bottom water.Tributaries were one of the main sources of microplastics for Han Reservoir but not for Dan Reservoir.Agricultural cultivation in the hydro-fluctuation belt might be an important source of microplastics in the Dan Reservoir,which should be given additional attention.The results of this study can provide valuable information for developing microplastic sampling strategies in deep water reservoirs.Further studies are recommended to investigate the process through which microplastics in the hydro-fluctuation belt enter the reservoir and the sinking behavior of microplastics in the reservoir.Li Lin Xiong Pan Sheng Zhang Danwen Li Wenliang Zhai Zhen Wang Jingxiang Tao Changqing Mi Qingyun Li John C.Crittenden 2021Journal of Environmental Sciences2021,33,4:13
2Novel endo-to exo-isomerization of dicyclopentadiene显示文摘Endo-dicyclopentadiene was isomerized to exo-isomer by thermal treatment at evaluated temperature and pressure. The reaction temperature and pressure are key factors for this novel isomerization. This result may have great potential for practical application.Xiang Wen Zhang Kai Jiang Qiang Jiang Ji Jun Zou Li Wang Zhen Tao Mi 2007Chinese Chemical Letters2007,18,6:5
3Cordyceps militaris polysaccharides can improve the immune efficacy of Newcastle disease vaccine in chicken显示文摘Mi Wang Xinyu Meng Ruile Yang Tao Qin Ying Li Lifang Zhang Chengzhong Fei Wenli Zhen Keyu Zhang Xiaoyang Wang Yuanliang Hu Feiqun Xue 2013International Journal of Biological Macromolecules2013,,:1
4Synergistic“Anchor‑Capture”Enabled by Amino and Carboxyl for Constructing Robust Interface of Zn Anode显示文摘While the rechargeable aqueous zinc-ion batteries(AZIBs)have been recognized as one of the most viable batteries for scale-up application,the instability on Zn anode–electrolyte interface bottleneck the further development dramatically.Herein,we utilize the amino acid glycine(Gly)as an electrolyte additive to stabilize the Zn anode–electrolyte interface.The unique interfacial chemistry is facilitated by the synergistic“anchor-capture”effect of polar groups in Gly molecule,manifested by simultaneously coupling the amino to anchor on the surface of Zn anode and the carboxyl to capture Zn^(2+)in the local region.As such,this robust anode–electrolyte interface inhibits the disordered migration of Zn^(2+),and effectively suppresses both side reactions and dendrite growth.The reversibility of Zn anode achieves a significant improvement with an average Coulombic efficiency of 99.22%at 1 mA cm^(−2)and 0.5 mAh cm^(−2)over 500 cycles.Even at a high Zn utilization rate(depth of discharge,DODZn)of 68%,a steady cycle life up to 200 h is obtained for ultrathin Zn foils(20μm).The superior rate capability and long-term cycle stability of Zn–MnO_(2)full cells further prove the effectiveness of Gly in stabilizing Zn anode.This work sheds light on additive designing from the specific roles of polar groups for AZIBs.Zhen Luo Yufan Xia Shuang Chen Xingxing Wu Ran Zeng Xuan Zhang Hongge Pan Mi Yan Tingting Shi Kai Tao Ben Bin Xu Yinzhu Jiang 2023Nano-Micro Letters2023,15,11:1
5Binding of several heavy metal ions by polyaspartyl polymers and their application to some chinese herbal medicines 显示文摘Sun Bo Mi Zhen -Tao An Gang 2007Journal of Applied Polymer Science2007,106,:1
6Cordyceps militaris polysaccharides can improve the immune efficacy of Newcastle disease vaccine in chicken显示文摘Mi Wang Xinyu Meng Ruile Yang Tao Qin Ying Li Lifang Zhang Chengzhong Fei Wenli Zhen Keyu Zhang Xiaoyang Wang Yuanliang Hu Feiqun Xue 2013International Journal of Biological Macromolecules2013,,:1
7Role of the immune microenvironment in bone,cartilage,and soft tissue regeneration:from mechanism to therapeuticopportunity显示文摘Bone,cartilage,and soft tissue regeneration is a complex spatiotemporal process recruiting a variety of cell types,whose activity and interplay must be precisely mediated for effective healing post-injury.Although extensive strides have been made in the understanding of the immune microenvironment processes governing bone,cartilage,and soft tissue regeneration,effective clinical translation of these mechanisms remains a challenge.Regulation of the immune microenvironment is increasingly becoming a favorable target for bone,cartilage,and soft tissue regeneration;therefore,an in-depth understanding of the communication between immune cells and functional tissue cells would be valuable.Herein,we review the regulatory role of the immune microenvironment in the promotion and maintenance of stem cell states in the context of bone,cartilage,and soft tissue repair and regeneration.We discuss the roles of various immune cell subsets in bone,cartilage,and soft tissue repair and regeneration processes and introduce novel strategies,for example,biomaterial-targeting of immune cell activity,aimed at regulating healing.Understanding the mechanisms of the crosstalk between the immune microenvironment and regeneration pathways may shed light on new therapeutic opportunities for enhancing bone,cartilage,and soft tissue regeneration through regulation of the immune microenvironment.Yuan Xiong Bo‑Bin Mi Ze Lin Yi‑Qiang Hu Le Yu Kang‑Kang Zha Adriana CPanayi Tao Yu Lang Chen Zhen‑Ping Liu Anish Patel Qian Feng Shuan‑Hu Zhou Guo‑Hui Liu 2023Military Medical Research2023,10,4:0
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