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| 1 | Spatial and Temporal Variability of Thermal Stress to China's Coral Reefs in South China Sea显示文摘Coral bleaching, caused by elevated sea surface temperature(SST), is occurring more frequently and seriously worldwide. Due to the lack of field observations, we understand little about the large-scale variability of thermal stress in the South China Sea(SCS) and its effect on China's coral reefs. This paper used 4-km high resolution gap-filled SST(Filled SST) data and thermal stress data related to coral bleaching derived from Coral Reef Temperature Anomaly Database(Co RTAD) to quantify the spatial and temporal characteristics of chronic thermal stress and acute thermal stress to China's coral reefs in SCS from 1982 to 2009. We analyzed the trend of SST in summer and the thermal stress frequency, intensity and duration during this period. The results indicate that, as a chronic thermal stress, summer mean SST in SCS shows an average upward trend of 0.2℃/decade and the spatial pattern is heterogeneous. Waters of Xisha Islands and Dongsha Islands of the northern SCS are warming faster through time compared to Zhongsha Islands and Nansha Islands sea areas of the southern SCS. High frequency bleaching related thermal stress events for these reefs are seen in the area to the northwest of Luzon Island. Severe anomaly thermal stress events are more likely to occur during the subsequent year of the El Nino year for these coral reefs. Besides, the duration of thermal stress varies considerably by anomaly year and by region. | ZUO Xiuling SU Fenzhen WU Wenzhou CHEN Zhike SHI Wei | 2015 | Chinese Geographical Science2015,25,2: | 7 |
| 2 | Self-assembled honokiol-loaded micelles based on poly(?-caprolactone)-poly(ethylene glycol)-poly(?-caprolactone) copolymer显示文摘 | XiaWei Wei ChangYang Gong Shuai Shi ShaoZhi Fu Ke Men Shi Zeng XiuLing Zheng MaLing Gou LiJuan Chen LiYan Qiu ZhiYong Qian | 2008 | International Journal of Pharmaceutics2008,,1: | 1 |
| 3 | Preparation of anti-corrosion films by microarc oxidation on an Al-Si alloy显示文摘 | Xue Wenbin Shi Xiuling Hua Ming | | 0,,14: | 1 |
| 4 | Observations on clinical efficacy of albendazole emulsion in 264 cases of hepatic cystic echinococcosis显示文摘 | Junjie Chai Menghebat Jiao Wei Sun Deyu Liang Bin Shi Jincao Fu Chen Li Xiong Mao Yiding Wang Xiuling Dolikun Guliber Wang Yanchun Gao Fanghua Xiao Shuhua | 2003 | Parasitology International2003,,1: | 1 |
| 5 | LC–MS/MS determination of naringin, hesperidin and neohesperidin in rat serum after orally administrating the decoction of Bulpleurum falcatum L. and Fractus aurantii显示文摘 | Xiuling Li Hongbin Xiao Xinmiao Liang Dazhuo Shi Jiangang Liu | 2003 | Journal of Pharmaceutical and Biomedical Analysis2003,,1: | 1 |
| 6 | Chemical Strain of Graphite-Based Anode during Lithiation and Delithiation at Various Temperatures显示文摘Electrochemical lithiation/delithiation of electrodes induces chemical strain cycling that causes fatigue and other harmful influences on lithium-ion batteries.In this work,a homemade in situ measurement device was used to characterize simultaneously chemical strain and nominal state of charge,especially residual chemical strain and residual nominal state of charge,in graphite-based electrodes at various temperatures.The measurements indicate that raising the testing temperature from 20℃ to 60℃ decreases the chemical strain at the same nominal state of charge during cycling,while residual chemical strain and residual nominal state of charge increase with the increase of temperature.Furthermore,a novel electrochemicalmechanical model is developed to evaluate quantitatively the chemical strain caused by a solid electrolyte interface(SEI)and the partial molar volume of Li in the SEI at different temperatures.The present study will definitely stimulate future investigations on the electro-chemo-mechanics coupling behaviors in lithium-ion batteries. | Zeyu Xu Xiuling Shi Xiaoqiang Zhuang Zihan Wang Sheng Sun Kaikai Li Tong-Yi Zhang | 2022 | Research2022,,1: | 0 |
| 7 | A recombineering system for Bacillus subtilis based on the native phage recombinase pair YqaJ/YqaK显示文摘Bacillus subtilis plays an important role in fundamental and applied research,and it has been widely used as a cell factory for the production of enzymes,antimicrobial materials,and chemicals for agriculture,medicine,and industry.However,genetic manipulation tools for B.subtilis have low efficiency.In this work,our goal was to develop a simple recombineering system for B.subtilis.We showed that genome editing can be achieved in B.subtiliis 1A751 through co-expression of YqaJ/YqaK,a native phage recombinase pair found in B.sub-tilis 168,and the competence master regulator ComK using a double-stranded DNA substrate with short ho-mology arms(100 bp)and a phosphorothioate modification at the 5′-end.Efficient gene knockouts and large DNA insertions were achieved using this new recombineering system in B.subtilis 1A751.As far as we know,this is the first recombineering system using the native phage recombinase pair YqaJ/YqaK in B.subtilis.In conclusion,this new recombineering system provides a simple and fast tool for genetic manipulation of B.sub-tilis,and it will promote studies of genome function,construction of production strains,and genome mining in B.subtilis. | Qingshu Liu Ruijuan Li Hongbo Shi Runyu Yang Qiyao Shen Qingwen Cui Xiuling Wang Aiying Li Youming Zhang Jun Fu | 2023 | Engineering Microbiology2023,3,3: | 0 |
| 8 | Chemical Strain of Graphite-Based Anode during Lithiation and Delithiation at Various Temperatures显示文摘Electrochemical lithiation/delithiation of electrodes induces chemical strain cycling that causes fatigue and other harmful influences on lithium-ion batteries.In this work,a homemade in situ measurement device was used to characterize simultaneously chemical strain and nominal state of charge,especially residual chemical strain and residual nominal state of charge,in graphite-based electrodes at various temperatures.The measurements indicate that raising the testing temperature from 20℃ to 60℃ decreases the chemical strain at the same nominal state of charge during cycling,while residual chemical strain and residual nominal state of charge increase with the increase of temperature.Furthermore,a novel electrochemicalmechanical model is developed to evaluate quantitatively the chemical strain caused by a solid electrolyte interface(SEI)and the partial molar volume of Li in the SEI at different temperatures.The present study will definitely stimulate future investigations on the electro-chemo-mechanics coupling behaviors in lithium-ion batteries. | Zeyu Xu Xiuling Shi Xiaoqiang Zhuang Zihan Wang Sheng Sun Kaikai Li Tong-Yi Zhang | 2021 | Research2021,,1: | 0 |