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首页> 外文期刊>Transactions of the Indian Institute of Metals >SIMULATION OF A CONTINUOUS STIRRED TANK REACTOR UNDER PRESSURE LEACHING CONDITIONS
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SIMULATION OF A CONTINUOUS STIRRED TANK REACTOR UNDER PRESSURE LEACHING CONDITIONS

机译:加压浸出条件下连续搅拌釜反应器的模拟

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Pressure oxidation of sulphide materials is exothermic in nature hence heat balance consideration is very important for such operations. A model has been developed for sphalerite pressure oxidation in ammonia solution considering feed particle size distribution, residence time distribution in the continuous leaching reactor i.e. continuous stirred tank reactor (CSTR) and heat balance. The required kinetic rate equations and other parameters were taken from the laboratory scale studies on mono-size particles. Adiabatic operation of the single stage CSTR was simulated by simultaneously solving mass balance and heat balance equations. Simulation results for adiabatic CSTR are shown for 5 and 10 wt percent slurry densities varying retention times and feed temperatures in order to scan stable operating temperature. For low slurry density (5 wt percent) stable operating temperature of 145 deg C is achieved with 50 deg C slurry preheating and 2 hour retention time leading to Zn recovery
机译:硫化物材料的压力氧化本质上是放热的,因此考虑热量平衡对于此类操作非常重要。考虑进料粒度分布,在连续浸出反应器(即连续搅拌釜反应器(CSTR))中的停留时间分布和热平衡,已经开发了用于氨溶液中闪锌矿压力氧化的模型。所需的动力学速率方程式和其他参数取自对单粒径颗粒的实验室规模研究。通过同时求解质量平衡和热平衡方程来模拟单级CSTR的绝热运行。给出了绝热CSTR的模拟结果,显示了5和10 wt%的浆料密度,它们改变了保留时间和进料温度,以便扫描稳定的操作温度。对于低浆液密度(5%重量),通过50℃的浆液预热和2小时的保留时间可实现145℃的稳定工作温度,从而回收锌

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