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THE FLASH RECYCLE SYSTEM FOR THE COOLING OF AUTOCLAVES PROCESS DESIGN AND OPERATION

机译:用于冷却高压灭菌器工艺设计和操作的闪光回收系统

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The leaching of sulphide minerals generates a significant amount of energy. There are three systems that might be used to remove this energy. These are: cooling coils, quench water, and flash recycle. Flash recycle is the recycling of slurry from the autoclave to the feed tank. Heat is removed in this arrangement when the slurry at elevated temperature and pressure is flashed to atmosphere, releasing steam. The slurry is returned to the autoclave at lower temperature, resulting in cooling. The cooling is directly proportional to the steam released from the recycled slurry. Design equations and results for the flash recycle system are presented. A fourth proposal for removing heat is to recycle slurry from the back of the autoclave. These four alternatives not only remove the heat, but also have an effect on the leaching efficiency. Amongst the four alternatives, design calculations indicate that the flash recycle option is the optimal solution in terms of leaching efficiency and heat removal, and recycling product from the back of the autoclave is the worst. In spite of its efficiency in terms of heat removal and leaching, the implementation of the flash recycle system is limited to a few operations in the platinum industry.
机译:硫化物矿物的浸出产生了大量的能量。有三个系统可用于消除这种能量。这些是:冷却线圈,淬火水和闪光回收。闪光回收是从高压釜中回收浆料到进料罐。当升高温度和压力下的浆料闪蒸到大气中时,在这种布置中除去热量,释放蒸汽。将浆料在较低温度下返回高压釜,导致冷却。冷却与从再循环浆料中释放的蒸汽成比例。介绍了闪光回收系统的设计方程和结果。除去热量的第四个提案是从高压釜后部再循环浆料。这四种替代方案不仅消除了热量,而且还对浸出效率产生影响。在四种替代方案中,设计计算表明,闪光回收选项是在浸出效率和散热方面的最佳解决方案,以及从高压釜后部的回收产品是最糟糕的。尽管其在散热和浸出方面效率,但闪光回收系统的实施仅限于铂金工业的几个操作。

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