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| 1 | Seven microcystins from Microcystis waterbloom in Lake Dalai,China显示文摘Seven types of microcystins,isolated from Microcystis waterbloom in Lake Dalai,were characterized.The major toxins:MCYST-LR,MCYST-RR,[D-Asp3]MCYST-LR and[Dha7]MCYST-LR were identified by high performance liquid chromatography(HPLC),as com-pared with the authentic microcystins.The minor toxins:MCYST FR,[L-Mser7]MCYST-LRand an unknown MCYST which was most likely to be MCYST-(H4)YR were identified with frit-fast atom bombardment liquid chromatography/mass spectrometry(Frit-FAB LC/MS)and aminoacid analysis.The toxigenic diversity in blue-green algae(cyanobacteria)was discussed. | He Zhenrong He Jiawan Yu Minjuan Institute of Hydrobiology,Chinese Academy of Sciences,Wuhan 430072,ChinaQiao Mingye Shen Zhi Wu Liandi Inner Mongolia Environmental Science Research Instìtute,Huhehote 010010,ChinaWu Suozhu Guo Yunfeng Hulunbeer League Environmental Monitoring Station,Inner Mogolia 021008,ChinaFumio Kondo Aichi Prefectural Institute of Public Health,Tsuji-machi,Kita-ku,Nagoya 462,JapanKen-ichi Harada Faculty of Pharmacy,Meijo University,Tempaku,Nagoya 468,Japan | 1997 | Journal of Environmental Sciences1997,9,1: | 6 |
| 2 | Load-sharing mechanism in timber-steel hybrid shear wall systems显示文摘The lateral performance of timber-steel hybrid shear wall systems with regard to the interaction between the steel frame and the intill wood shear wall was investigated in this paper. A numerical model for the timber-steel hybrid shear wall system was developed and verified against test results. Design parameters, such as the lateral infill-to-frame stiffness ratio and the arrangements of wood-steel bolted connections were studied using the numerical model. Some design recommendations were also proposed based on the parametric analysis. In the hybrid shear wall system, the infill wood wall was found to resist a major part of the lateral load within relatively small wall drifts, and then the steel frame provided more lateral resistance. Under seismic loads, the infill wood wall could significantly reduce the inter-story drift of the hybrid system, and a complementary effect between the infill wood wall and the steel frame was observed through different lateral load resisting mechanisms, which provided robustness to the hybrid shear wall systems. | Zheng LI Minjuan HE Frank LAM Minghao LI | 2015 | Frontiers of Structural and Civil Engineering2015,9,2: | 5 |
| 3 | Post-marketing safety surveillance and reevaluation of Motherwort injection:A clinical study of 10094 cases显示文摘OBJECTIVE:To investigate the safety profiles of Motherwort injection(MI).METHODS:A multi-center,prospective and drugderived hospital intensive monitoring method was conducted to assess the safety of MI in real world applications.This study was based on a very large population after the injection was approved and marketed in China.All patients using the injection in participating hospitals were monitored to determine the incidence,pattern,severity and outcome of associated adverse events.RESULTS:The post-marketing surveillance was performed in 10 094 female patients from April to December,2015.The incidence of adverse drug reactions(ADRs) was 0.79‰(8/10 094).Among the 8 patients,the reported adverse events mainly included systemic abnormalities,such as fever,chills and eyelid edema;skin and appendages disorders,such as pruritus and rash;gastrointestinal disorders,such as nausea,abdominal distension and pain;heart rate and rhythm disorders,such as palpitation and increased heart rate.All of these ADRs were mild in severity.CONCLUSION:In this study the ADRs incidence rate of MI is very low,which supports that it is generally safe for use in obstetric and gynecological diseases.However,the total number of 8 ADRs recorded over a relatively short time span seems limited,and the low number of reports could not represent an absolute guarantee of safety. | Cao Shan Zhang Wenhao Zhao Ziwei Heng Mingli Bu Huaien Wang Hongwu Liu Xinghui Wang Zhong Cai Yan Ma Yuyan Cui Shihong Deng Jihong Ding Guifeng Ding Yajuan Dong Linhong Duan Zhentao Fan Ling Fan Yang Fu Fen He Jing Ji Shuying Jin Lin Li Hong Li Hongying Liao Tao Lu Wei Luo Xiucui Lü Zhihui Ma Fengchun Ma Dafeng Shi Tianyun Sun Juying Sun Xiaotong Teng Hong Wang Jinhua Wang Ruihua Wang Ying Wang Zhengling Xi Jie Xu Minjuan Xu Zhihong Yan Qian Yang Cuirong Yang Yimei Yin Jie Yu Jinhua Yuan Wenjun Zhang Guanli Zhang Meihua Zhao Renfeng Zhong Yonghong Zhou Jian | 2018 | Journal of Traditional Chinese Medicine2018,38,4: | 4 |
| 4 | Experimental investigation on lateral performance of pre-stressed tube bolted connection with high initial stiffness 显示文摘 | HE Minjuan ZHAO Yi MA Renle | 2016 | Advaces in Structural Engineering2016,19,5: | 1 |
| 5 | Fuzzy intelligent control method for improving flight attitude stability of plant protection quadrotor UAV显示文摘At present,the attitude control method of plant protection UAV is the classical PID control,but there are some imperfections in the PID control,such as the contradiction between speediness and overshoot,the weak anti-jamming ability and adaptability.The physical parameters of plant protection UAV are time-varying,and the airflow also interferes with it.The control ability of classical PID is limited,and its control parameters are fixed,and its anti-jamming ability and adaptability are not strong.Therefore,a fuzzy adaptive PID controller is proposed in this paper.Fuzzy logic control is used to optimize the control parameters of PID in order to improve the dynamic and static performance and adaptability of attitude control of plant protection UAV.In the process of research,the mathematical model of UAV is established firstly,then the fuzzy adaptive PID is designed,and then the simulation is carried out in Simulink.The simulation results show that the fuzzy adaptive PID controller has better dynamic and static control performance and adaptability than the traditional PID controller.Therefore,the proposed control method has excellent application value in the attitude of plant protection UAV. | Zhihui He Wanlin Gao Xiongkui He Minjuan Wang Yunling Liu Yue Song Zewu An | 2019 | International Journal of Agricultural and Biological Engineering2019,12,6: | 1 |
| 6 | Fluoride Ion Adsorption Effect and Adsorption Mechanism of Self-Supported Adsorbent Materials Based on Desulfurization Gypsum-Aluminate Cement显示文摘The adsorption method has the advantages of low cost,high efficiency,and environmental friendliness in treating fluorinated wastewater,and the adsorbent material is the key.This study combines the inherent anion-exchange adsorption properties of layered double hydroxides(LDHs).Self-supported porous adsorbent materials loaded with AFm and AFt were prepared from a composite cementitious system consisting of calcium aluminate cement(CAC)and flue gas desulfurization gypsum(FGDG)by chemical foaming technique.The mineral composition of the adsorbent material was characterized by X-ray diffraction(XRD)and Scanning electron microscopy(SEM).Through the static adsorption experiment,the adsorption effect of the mineral composition of the adsorbent on fluoride ions was deeply analyzed,and the adsorption mechanism was revealed.XRD and SEM showed that the main hydration phases of the composite cementitious system consisting of CAC and FGDG are AFm,AFt,AH_(3),and CaSO_(4)·2H_(2)O.FGDG accelerates the hydration process of CAC and inhibits the transformation of AFt to AFm.The AFt content increased,and the AFm content decreased or even disappeared as the amount of FGDG increased.Static adsorption experiment results showed that AFm and AFt in adsorbent materials could significantly enhance the adsorption of fluoride ions.The adsorption of F^(−)in aqueous solution by PAG tends more towards monolayer adsorption with a theoretical maximum capacity of 108.70 mg/g and is similar to the measured value of 112.77 mg/g. | Xuefeng Song Minjuan Sun Juan He Lei Wang | 2023 | Journal of Renewable Materials2023,11,12: | 0 |
| 7 | Mesoporous silicon sulfonic acid as a highly efficient and stable catalyst for the selective hydroamination of cyclohexene with cyclohexylamine to dicyclohexylamine in the vapor phase显示文摘In this work,a new mesoporous silicon sulfonic acid catalyst derived from silicic acid has been successfully prepared by the chemical bonding method.The physicochemical properties of mesoporous silicon sulfonic acid catalysts have been systematically characterized using various techniques.The results demonstrate that sulfonic acid groups have been grafted on silicic acid by forming a new chemical bond(Si-O-S).The mesoporous silicon sulfonic acid exhibits excellent catalytic performance and stability in the vapor phase hydroamination reaction of cyclohexene with cyclohexylamine.Cyclohexene conversion of 61% and 97% selectivity to dicyclohexylamine was maintained after running the reaction for over 350 h at 280℃.The developed mesoporous silicon sulfonic acid catalyst shows advantages of low cost,superior acid site accessibility,and long term reactivity stability.Moreover,a possible catalytic hydroamination reaction mechanism over silicon sulfonic acid was suggested.It has been demonstrated that the sulfonic acid groups of the catalyst play an important role in the hydroamination.The present work provides a simple,efficient,and environmentally friendly method for the hydroamination of cyclohexene to valuable dicyclohexylamine,which also shows important industrial application prospects. | Jingbin Wen Kuiyi You Minjuan Chen Jian Jian Fangfang Zhao Pingle Liu Qiuhong Ai He’an Luo | 2021 | Frontiers of Chemical Science and Engineering2021,15,3: | 0 |
| 8 | Influence of core stiffness on the behavior of tall timber buildings subjected to wind loads显示文摘This study analyzes the feasibility of the use of cross-laminated timber(CLT)as a load-bearing structural element in a 40-story building based on Chinese design requirements.The proposed design of the high-rise concrete-CLT building utilizes the core-outrigger system.Concrete is used for the central core and outriggers,and CLT is used for the rest of the structure of the building.Finite element models with different types of connections were developed using SAP2000 to analyze the lateral behavior of the building under wind action.The finite element models with rigid connections deduce the wind load distributions on individual structural elements,which determine the total number and the stiffness of fasteners of the CLT panels.Accordingly,spring links with equivalent stiffness that simulate the mechanical fasteners were employed in SAP2000.The results indicate that CLT increases the lateral flexibility of the building.A closed concrete core was substituted by two half cores to measure the requirement of the maximum lateral deflection.However,the acceleration at the building top still exceeded the limitation prescribed in Chinese Code JGJ 3-2010 owing to the lightweight of CLT and decreased stiffness of the hybrid building.To restrict this top acceleration within the limit,further approaches to increase the stiffness in the weak direction of the building are required.Methods such as the modification of the floor layout,increase in the thickness of walls,and addition of extra damping capacity should be considered and verified in the future. | Zhouyan XIA Jan-Willem G.VAN DE KUILEN Andrea POLASTRI Ario CECCOTTI Minjuan HE | 2021 | Frontiers of Structural and Civil Engineering2021,15,1: | 0 |