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9篇 您的检索式:作者名="Beiping Xu"
    题名 作者 年代 出处 被引量
1Immune multi-agent model using vaccine for cooperative air-defense system of systems for surface warship formation based on danger theory显示文摘Aiming at the problem on cooperative air-defense of surface warship formation,this paper maps the cooperative airdefense system of systems (SoS) for surface warship formation (CASoSSWF) to the biological immune system (BIS) according to the similarity of the defense mechanism and characteristics between the CASoSSWF and the BIS,and then designs the models of components and the architecture for a monitoring agent,a regulating agent,a killer agent,a pre-warning agent and a communicating agent by making use of the theories and methods of the artificial immune system,the multi-agent system (MAS),the vaccine and the danger theory (DT).Moreover a new immune multi-agent model using vaccine based on DT (IMMUVBDT) for the cooperative air-defense SoS is advanced.The immune response and immune mechanism of the CASoSSWF are analyzed.The model has a capability of memory,evolution,commendable dynamic environment adaptability and self-learning,and embodies adequately the cooperative air-defense mechanism for the CASoSSWF.Therefore it shows a novel idea for the CASoSSWF which can provide conception models for a surface warship formation operation simulation system.Jun Wang Xiaozhe Zhao Beiping Xu Wei Wang Zhiyong Niu 2013Journal of Systems Engineering and Electronics2013,24,6:8
2Floc structure and membrane fouling affected by sodium alginate interaction with Al species as model organic pollutants显示文摘Membrane filtration combined with pre-coagulation has advantages in advanced wastewater treatment. As a model of a microbial polysaccharide, research on the effect of sodium alginate(SA) on alum hydrolysis has been rare; therefore, it is necessary to gain insight into the interface interaction between SA molecules and Al species, and the role SA plays during floc formation. In this study, the interaction mechanism between SA and Al species has been investigated, by evaluating the effect of SA on floc characteristics and membrane fouling during coagulation–ultrafiltration with different Al species coagulants(AlCl3 and preformed Al13). Al 2 p X-ray photoelectron spectroscopy(XPS) confirmed that the complexation of ligands and Al species strongly affects the reaction pathways for Al hydrolysis and the final nature of the flocs, as Al13 can be decomposed into octahedral precipitates when SA is added. The presence of SA can affect floc properties, which have important impacts on the characteristics of the cake layer and membrane fouling. Due to the bridging ability of SA, the floc strength increased by about 50% using Ala, which was much better than preformed Al13, with a percentage increase of only about 6%. Moreover,the recovery factor of HA-flocs was decreased from 96% to 43% with SA addition of 0.5 mg/L.It was concluded that SA can affect the characteristics of the cake layer and membrane fouling through participating in the formation of primary flocs and altering the Al hydrolysis pathway.Xuejun Xiong Hui Xu Beiping Zhang Xiaohui Wu Hongyan Sun Dongsheng Wang Zhengyang Wang 2019Journal of Environmental Sciences2019,31,8:3
3Adsorption of sulfonamides on lake sediments显示文摘Zhenxing ZHONG Jian XU Yuan ZHANG Lei LI ChangshengGUO Yan HE Wenhong FAN Beiping ZHANG 2013Frontiers of Environmental Science & Engineering2013,7,4:2
4Effects of dietary vitamin A on antioxidant responses of abalone Haliotis discus hannai Ino显示文摘FU Jinghua ZHANG Wenbing MAI Kangsen FENG Xiuni XU Wei LIUFU Zhiguo TAN Beiping 2006Acta Oceanologica Sinica2006,25,5:2
5Effects of dopaminergic lesion of central nucleus of amygdala on acquisition of conditioned place aversion in morphine-treated rats显示文摘Xu Wei Tan Beiping Li Yonghui J Psychopharmacol0,,:1
6Effects of diet- ary chitosan and Bacillus subtilis on the growth performance, non-specific immune and disease resistance of cobia, Rachy- centron canadum显示文摘Geng Xu Dong Xiaohui Tan Beiping etal 2011Fish and Shellfish Immunology2011,31,3:1
7A new method to improve surface morphology of Ni-Fe-Mo-Co alloy electrode and its catalytic activity for HER显示文摘A new pretreatment method has been developed to improve the catalytic activity of the Ni-Fe-Mo-Co alloy elec- trode for hydrogen evolution reaction (HER). The procedure involves pre-electrolyzing the Ni-Fe-Mo-Co alloy electrode in 30% KOH solution containing 10% potassium sodium tartrate at 70°C for 2 h, until some of the Mo and Fe elements are leached out. The surface morphology of the Ni-Fe-Mo-Co alloy demonstrates a unique hive-like structure after the pre- treatment, which has the pore size in a nanometer range (about 50 nm), a very large real surface area, and good stability. The results of the electrochemical studies show that compared to other similar electrode materials and the treated Ni-Fe-Mo-Co electrode by leaching method, the pre-treated Ni-Fe-Mo-Co electrode has a much lower overpotential and much higher exchange current density for HER. In addition, a long-term continuous electrolysis test with a current interrup- tion shows that the Ni-Fe-Mo-Co alloy has excellent catalytic stability.LUO Beiping REN Buye XU You ZHENG Yajie 2007Rare Metals2007,26,3:1
8Susceptibility to morphine place conditioning: relationship with stress-induced locomotion and novelty-seeking behavior in juvenile and adult rats显示文摘Xigeng Zheng Xue Ke Beiping Tan Xiaojing Luo Wei Xu Xiaoyan Yang Nan Sui 2003Pharmacology Biochemistry and Behavior2003,,4:1
9A novel splicing variant in the TMC1 gene causes non-syndromic hearing loss in a Chinese family显示文摘To the Editor:Hearing loss is the most common sensory disorder in humans.There is one case of congenital deafness among every 1000 newborns,and in 50%of cases,the deafness is hereditary.Deafness exhibits high genetic heterogeneity.To date,over 110 non-syndromic deafness genes have been identified(http://gffzz3a23cfdba04944d9sqp0u0xxq6kfx6b6k.ffgz.tsg.suse.edu.cn/).Lots of those genes can cause both autosomaldominant hearing loss(ADNSHL)and autosomal-recessive non-syndromic hearing loss(ARNSHL)andTMC1(encoding the transmembrane channel-like 1)is one of them.TMC1(OMIM:606706)is a member of the TMC family located at 9q21.13.The protein contains 760 amino acids and has six transmembrane regions.TMC1 is expressed in the inner and outer hair cells of the cochlea.A TMC1 mutation was first shown to cause deafness in 2002.[1]The prevalence of TMC1 variants ranged from 3.4%(19/557)among Pakistani ARNSHL families to 8.1%(7/86)in Turkish families.To date,around 20 hearing loss families associated withTMC1 variants have been reported in China.Beiping Zeng Hongen Xu Yongan Tian Qianyu Lin Haifeng Feng Zhifeng Zhang Siqi Li Wenxue Tang 2022Chinese Medical Journal2022,135,21:0
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