Faculty of Civil Engineering Technology, Universiti Malaysia Pahang, 26300, Gambang, Kuantan, Pahang, Malaysia.
Faculty of Civil Engineering Technology, Universiti Malaysia Pahang, 26300, Gambang, Kuantan, Pahang, Malaysia; Earth Resources and Sustainability Center (EARS), Universiti Malaysia Pahang, 26300, Gambang, Kuantan, Pahang, Malaysia.
J Environ Sci (China). 2020 Mar;89:47-64. doi: 10.1016/j.jes.2019.09.023. Epub 2019 Nov 4.
In an era of electronics, recovering the precious metal such as gold from ever increasing piles of electronic-wastes and metal-ion infested soil has become one of the prime concerns for researchers worldwide. Biological mining is an attractive, economical and non-hazardous to recover gold from the low-grade auriferous ore containing waste or soil. This review represents the recent major biological gold retrieval methods used to bio-mine gold. The biomining methods discussed in this review include, bioleaching, bio-oxidation, bio-precipitation, bio-flotation, bio-flocculation, bio-sorption, bio-reduction, bio-electrometallurgical technologies and bioaccumulation. The mechanism of gold biorecovery by microbes is explained in detail to explore its intracellular mechanistic, which help it withstand high concentrations of gold without causing any fatal consequences. Major challenges and future opportunities associated with each method and how they will dictate the fate of gold bio-metallurgy from metal wastes or metal infested soil bioremediation in the coming future are also discussed. With the help of concurrent advancements in high-throughput technologies, the gold bio-exploratory methods will speed up our ways to ensure maximum gold retrieval out of such low-grade ores containing sources, while keeping the gold mining clean and more sustainable.
在电子时代,从日益增多的电子废物和金属离子污染的土壤中回收贵金属(如金)已成为全球研究人员关注的首要问题之一。生物采矿是一种有吸引力的、经济的、非危险的方法,可以从含有废物或土壤的低品位含金矿石中回收金。本综述介绍了最近用于生物提取金的主要生物金回收方法。本文综述的生物采矿方法包括生物浸出、生物氧化、生物沉淀、生物浮选、生物絮凝、生物吸附、生物还原、生物冶金技术和生物积累。详细解释了微生物回收金的机制,以探索其细胞内机制,帮助其在不造成任何致命后果的情况下耐受高浓度的金。还讨论了与每种方法相关的主要挑战和未来机遇,以及它们将如何决定未来从金属废物或金属污染土壤生物修复中生物冶金的命运。在高通量技术的协同进步的帮助下,生物勘探方法将加快我们的步伐,确保从这些含有金资源的低品位矿石中最大限度地回收金,同时使金矿开采更加清洁和可持续。