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Sustainable bioremediation and industrial ecology model: A sustainable management alternative for mining industry

机译:可持续生物修复与工业生态模式:采矿业可持续管理替代品

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Relationships among mining industry, society and environment have been historically complex due to its environmental impacts. In the Chilean mining industry, repetitive and small spills of fuel during maintenance of machinery have been adsorbed by desert soils and sawdust to control environmental pollution. The froth flotation is the main technology to recover specific mineralogical species from sulphide ores. Flotation reagents are expensive and representing an environmental risks due to its physics properties. Our objective was to investigate the feasibility of applying bioremediation as a cost-effective alternative technology to physical-chemical treatments and to evaluate the efficacy of biosolids as foaming agents. Our results show that the bioremediation is feasible by use of the autochthonous microbial communities and biosolids could be used as new environmental-friendly organic reagents. This research discloses a sustainable bioremediation process and industrial ecology model based on these two successful cases.
机译:由于环境的影响,采矿业,社会和环境之间的关系在历史上复杂。在智利矿业,在机器维护期间的重复和小漏油已经被沙漠污染和锯末吸附,以控制环境污染。泡沫浮选是从硫化物矿石中恢复特异性矿物质的主要技术。浮选试剂昂贵,由于其物理特性,表示环境风险。我们的目的是调查将生物修复应用于经济化学治疗的经济型替代技术的可行性,并评估生物溶解剂作为发泡剂的功效。我们的研究结果表明,通过使用自身加热的微生物群落和生物溶胶可作为新的环保有机试剂使用,生物修复可行。本研究公开了一种基于这两个成功案例的可持续生物修复过程和工业生态模型。

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