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SELECTION OF A BIOOXIDATION PROCESS FOR THE PRE-TREATMENT OF REFRACTORY GOLD ORES

机译:选择难治性金矿预处理的生物氧化过程

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During the past twenty years, numerous advances have been made in the technologies used to pretreat sulfidic refractory gold ores. These advances have included improved equipment design, increased gold recoveries, and reduced operating and capital costs. More recently, treatment of refractory gold ores has primarily been accomplished by pressure oxidation (POX), roasting, chlorine oxidation, or biooxidation. In addition to improving the time-proven processes of pressure oxidation and roasting, new and innovative approaches to biooxidation pretreatment of both concentrates and whole ores have been developed. Selecting the appropriate biooxidation technology depends on the nature of the refractoriness in the ore, economic gold recovery, plant design operating parameters (such as desired tonnage), site climatic conditions, and operating and capital costs, as well as several other deciding factors. The objective of this paper is to outline the biooxidation processes and technologies currently available for the recovery of gold from refractory sulfidic ores, to discuss the critical factors that affect plant design and operation, and to provide the metallurgist with a practical guide to choosing the appropriate biooxidation technology for a particular ore or concentrate.
机译:在过去的二十年中,曾经进行了许多预付款,用于预留磺化难治性金矿石。这些进步包括改进的设备设计,增加了金回收率,并降低了运营和资本成本。最近,难熔金矿的处理主要是通过压力氧化(POX),焙烧,氯氧化或生物氧化来实现的。除了改善压力氧化和焙烧的时间经过验证的过程外,还开发了新的和创新的浓缩物和全矿石的预处理。选择合适的生物氧化技术取决于矿石中的耐火性,经济金回收率,植物设计操作参数(如期望的吨位),现场气候条件和运营和资本成本以及其他几个决定因素的性质。本文的目的是概述目前可用于从难治性磺化矿石中恢复黄金的生物氧化过程和技术,讨论影响植物设计和操作的关键因素,并为冶金专家提供选择合适的实用指南用于特定矿石或浓缩物的生物氧化技术。

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