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Studies on Reduced Extent Method for Inhibited Thermokinetics Of Enzyme-Catalyzed Reaction──Inhibition of the laccase-catalyzed oxidation of o-dihydroxybenzene by m-dihydroxybenzene
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作者 Xiong Ya Wu Dingquan on Songsheng (Department of Chemistry, Wuhan University, Wuhan 430072,China)Du Yumin (Department of Enviromental Science, Wuhan University) 《Wuhan University Journal of Natural Sciences》 CAS 1996年第1期97-100,共4页
The thermokinetic reduced extent equations of reversible inhibitions for Michaiels-Menten enzymatic reaction were deduced, and then the criteria for distingushing inhibition type was given and the methods for calculat... The thermokinetic reduced extent equations of reversible inhibitions for Michaiels-Menten enzymatic reaction were deduced, and then the criteria for distingushing inhibition type was given and the methods for calculating kinetic parameters, KM,Ki and Urn were suggested. This theory was applied to inverstigate the inhibited thermokinetics of laccase-catalyzed oxidation of o-dihydroxybenzene by m-dihydroxybenzene. The experimental results show the inhibition belongs to reversible competitive type, KM=6.224×10-3 mol L-1, Ki=2. 363 × 10-2 mol. L-1. 展开更多
关键词 THERMOKINETICS enzyme-catalyzed reaction inhibition reduced extent method LACCASE
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Size effect of lattice material and minimum weight design 被引量:4
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作者 Jun Yan Wen-Bo Hu +1 位作者 Zhen-Hua Wang Zun-Yi Duan 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2014年第2期191-197,共7页
The size effects of microstructure of lattice materials on structural analysis and minimum weight design are studied with extented multiscale finite element method(EMsFEM) in the paper. With the same volume of base ... The size effects of microstructure of lattice materials on structural analysis and minimum weight design are studied with extented multiscale finite element method(EMsFEM) in the paper. With the same volume of base material and configuration, the structural displacement and maximum axial stress of micro-rod of lattice structures with different sizes of microstructure are analyzed and compared.It is pointed out that different from the traditional mathematical homogenization method, EMsFEM is suitable for analyzing the structures which is constituted with lattice materials and composed of quantities of finite-sized micro-rods.The minimum weight design of structures composed of lattice material is studied with downscaling calculation of EMsFEM under stress constraints of micro-rods. The optimal design results show that the weight of the structure increases with the decrease of the size of basic sub-unit cells. The paper presents a new approach for analysis and optimization of lattice materials in complex engineering constructions. 展开更多
关键词 Lattice material Light weight design Size ef-fect extented multiscale finite element method
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