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毛细管电泳中溶质系统的熵平衡方程 被引量:2
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作者 梁恒 周心艳 林炳承 《西安交通大学学报》 EI CAS CSCD 北大核心 1998年第6期70-73,共4页
采用非平衡热力学的研究方法,提出了溶质系统在毛细管电泳(CE)分离过程中的熵平衡方程.指出了各种非平衡因素不仅使溶质带展宽,同时也促使溶质带间分离.阐明了溶质系统的熵平衡方程是整体优化CE分离大系统的基础.
关键词 熵平衡方程 毛细管电泳 溶质系统
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地下水溶质系统的形成及其在开采条件下的变化——以福州盆地为例
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作者 范锡朋 《地质论评》 CAS CSCD 北大核心 1996年第5期465-474,共10页
根据地下水地球化学特征,在福州盆地划分出4个溶质系统,ENE断层系列浅循环溶质系统,洪积扇带溶质系统,古河道带溶质系统及NNW断层带深循环溶质系统,文中论述了各系统的形成过程及其在开采条件下的变化。
关键词 地下水 溶质系统 水质演变 开采条件
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Mathematical model for coupled reactive flow and solute transport during heap bioleaching of copper sulfide 被引量:6
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作者 尹升华 吴爱祥 +1 位作者 李希雯 王贻明 《Journal of Central South University》 SCIE EI CAS 2011年第5期1434-1440,共7页
Based on the momentum and mass conservation equations, a comprehensive model of heap bioleaching process is developed to investigate the interaction between chemical reactions, solution flow, gas flow, and solute tran... Based on the momentum and mass conservation equations, a comprehensive model of heap bioleaching process is developed to investigate the interaction between chemical reactions, solution flow, gas flow, and solute transport within the leaching system. The governing equations are solved numerically using the COMSOL Multiphysics software for the coupled reactive flow and solute transport at micro-scale, meso-scale and macro-scale levels. At or near the surface of ore particle, the acid concentration is relatively higher than that in the central area, while the concentration gradient decreases after 72 d of leaching. The flow simulation between ore particles by combining X-ray CT technology shows that the highest velocity in narrow pore reaches 0.375 m/s. The air velocity within the dump shows that the velocity near the top and side surface is relatively high, which leads to the high oxygen concentration in that area. The coupled heat transfer and liquid flow process shows that the solution can act as an effective remover from the heap, dropping the highest temperature from 60 to 38 ℃. The reagent transfer coupled with solution flow is also analyzed. The results obtained allow us to obtain a better understanding of the fundamental physical phenomenon of the bioleaching process. 展开更多
关键词 copper sulphide heap bioleaching leaching reaction solution flow solute transport
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