生物技术促进双难处理金矿金的回收

K. Sasaki, Kojo T. Konadu
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摘要

双难熔金矿(DRGO)不仅包含锁在硫化物矿物中的黄金颗粒,而且还含有大量的碳质物质。由于Au(CN)2−与碳质物质具有很强的亲和力,这导致氰化过程中金的回收率损失显著。燃烧降低了碳质物质的含量,但也排放出CO2、SO2和As2O3等污染气体。因此,利用生物技术探索了环境友好的解决方案。由于上述目标物在矿石中的含量非常少,因此很难证明DRGO生物矿物处理前后固相的变化。本章介绍了在顺序生物处理过程中产生的各种固体残留物的矿物学和化学变化,包括铁氧化剂从硫化物中释放金,以及白腐菌分泌的木质素降解酶(木质素过氧化物酶、锰过氧化物酶、漆酶)分解碳质物质,成功地将金的回收率提高到90%以上。此外,还讨论了从DRGO中回收金的生物技术的进一步发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biotechnological Approaches to Facilitate Gold Recovery from Double Refractory Gold Ores
Double refractory gold ore (DRGO) not only include ppt levels of gold grains locked in sulfide minerals but also a problematic amount of carbonaceous matter. This causes a significant recovery loss of gold during cyanidation because of the strong affinity of the Au(CN)2 − with the carbonaceous matter. Combustion decreases the carbonaceous matter content, but also emits pollutant gases like CO2, SO2 and As2O3. Therefore, environmentally-friendly solutions have been explored by using biotechnology. Due to the very small amount of the above targets in the ore, it is challenging to show evidential changes in solid-phase before and after the biomineral processing of DRGO. This chapter introduces the mineralogical and chemical changes in the various solid residues produced during a sequential biotreatment, consisting of the liberation of gold from sulfides by an iron-oxidizer and decomposition of carbonaceous matter by lignin-degrading enzymes (lignin peroxidase, manganese peroxidase, laccase) secreted from a white rot-fungus, which successfully improved of gold recovery to over 90%. In addition, further development of biotechnology in the recovery of gold from DRGO is addressed.
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