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| 1 | Protein association and disso- ciation regulated by ferric ion: a novel pathway for oxidative deposition of iron in pea seed ferritin显示文摘 | LI Chaorui FU Xiaoping QI Xin | 2009 | Journal of Biological Chemistry2009,284,16: | 1 |
| 2 | Structure stability and corrosion resistance of nano-TiO 2 coatings on aluminum in seawater by a vacuum dip-coating method显示文摘 | Tong Liu Feifei Zhang Chaorui Xue Lan Li Yansheng Yin | 2010 | Surface & Coatings Technology2010,,7: | 1 |
| 3 | Purification and characterization of a novel fungi Se-containing protein from Se-enriched Ganoderma Lucidum mushroom and its Se-dependent radical scavenging activity显示文摘 | Ming Du Lei Zhao Chaorui Li Guanghua Zhao Xiaosong Hu | 2007 | European Food Research and Technology2007,,5: | 1 |
| 4 | Purification and characterization of a novel fungi Se-containing protein from Se-enriched Ganoderma Lucidum mushroom and its Se-dependent radical scavenging activity显示文摘 | Ming Du Lei Zhao Chaorui Li Guanghua Zhao Xiaosong Hu | 2007 | European Food Research and Technology2007,,5: | 1 |
| 5 | A novelelectrochemical immunosensor for highly sensitive detection ofaflatoxin B1 in corn using single-walled carbon nanotubes/chitosan显示文摘 | ZHANG Xian LI Chaorui WANG Weicheng | 2016 | Food Chemistry2016,192,: | 1 |
| 6 | Investigation on the Growth and Development of Muscle Fibers in Black Goat Lambs显示文摘[Objectives]This study was conducted to analyze and study the growth and development of muscle fibers at different stages,so as to provide a theoretical basis for subsequent research on developmental biology and nutritional regulation.[Methods]The body weights of black goat lambs in groups at different month age(0-6 months old)were recorded,and the diameter,area and number of muscle fibers were measured by tissue section and hematoxylin-eosin staining.The curves of body weight and muscle fiber growth and development of black goat lambs were drawn.[Results]The black goat lambs maintained a high absolute growth intensity of 2.95-4.35 kg/30 d throughout the rearing cycle,and the body weight continued to increase significantly,while the relative growth coefficient decreased from 93.05%at the age of 30 d to 13.83%at the age of 180 d.The diameter and area of muscle fibers in black goat lambs showed obvious'three-stage'growth and development characteristics,and showed different trends of gender advantages in different stages.[Conclusions]This study will help to further optimize the key supporting technologies for production and promote the diversified and comprehensive development of the mutton sheep industry in Sichuan Province. | Lin ZHANG Shengxia BAI Quzhe EMU Feng XU Jingsheng FAN Xuemei LI Bo LI Bin ZHANG Chunmei LI Chaorui XIONG | 2022 | Agricultural Biotechnology2022,11,2: | 0 |
| 7 | Facile preparation of multifunctional Cu_(2−x)S/S/rGO composite for all-round residual water remediation during interfacial solar driven water evaporation process显示文摘Presently,interfacial solar water evaporation(ISWE)is now injecting new vitality into the field of water remediation.However,during the ISWE process,the nonvolatile pollutants might be concentrated in residual water,and further contaminate the environment.Preparing advanced photothermal materials is in need to get comprehensive purification of various pollutants in residual water.Herein,we report a facile laser thermal method to prepare Cu_(2−x)S/sulfur/reduced graphene oxide(Cu_(2−x)S/S/rGO)nanocomposites for realizing all-round residual water remediation during the ISWE process.The as-prepared Cu2−xS/S/rGO nanocomposites demonstrated excellent photothermal and photocatalytic properties.Through blending with GO nanosheets having excellent adsorption capacity,the synergetic effect of photothermal,photocatalytic,and adsorption properties resulted in highly efficient purification of rhodamine B,bacterial,and heavy metal ions in residual water during the ISWE process.The experimental results also showed that,increasing solar light intensity can promote the residual water remediation,but ultrafast water evaporation under high light intensity may deteriorate the purifying effect.This report may pave a new way to prepare multifunctional materials for water remediation through the ISWE technology. | Chaorui Xue Yang Shen Qian Zhang Qing Chang Ning Li Ying Li Wenjing Zheng Shengliang Hu Jinlong Yang | 2023 | Nano Research2023,16,4: | 0 |
| 8 | Numerical investigation on fire-induced indoor and outdoor air pollutant dispersion in an idealized urban street canyon显示文摘Fire-induced pollutant dispersion under the influence of buoyancy in urban street canyons has attracted wide attention given its adverse impact on human health.This study analyzes the influences of fire source location and crossflowing wind(perpendicular to the canyon centerline)on indoor and outdoor air pollutant dispersion in an idealized urban street canyon by employing large eddy simulation.Three fire scenarios are defined according to the transverse location of the fire source:near the windward building(scenario 1),in the middle of the canyon(scenario 2),and near the leeward building(scenario 3).Results show that a re-entrainment phenomenon appears when the wind velocity reaches a critical value in scenarios 1 and 2,but it doesn't occur in scenario 3.Fire source location significantly influences the critical re-entrainment velocity.The critical velocity in scenario 1 is approximate 1.2-1.5 m/s larger than that in scenario 2.When the heat release rate is large,the critical Fr numbers are less sensitive to changes in HRR,and remain approximately constant with values of 0.47(scenario 1)and 0.37(scenario 2).When the wind velocity is large,more compartments are expected to be affected in the upper floors in all of the three scenarios,and smoke is distributed in an inverted triangle within the buildings.The indoor/outdoor temperature and pollutant concentrations are also analyzed.Our findings can provide valuable information for both human and property safety in relation to urban street canyons and their surrounding buildings. | Shengzhong Zhao Haoran Yang Chaorui Li Imad Obadi Fei Wang Wenjun Lei Tiantian Xu Miaocheng Weng | 2022 | Building Simulation2022,15,4: | 0 |