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Metal Recovery and Exploitation of Lignite Ashes by Combined Physicochemical and Biotechnological Approaches

机译:组合物理化学和生物技术方法,金属回收和褐煤芦苇

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Ashes from lignite combustion for power generation contain strategic metals, metalloids and rare earth elements and may thus be a potential source of industrially demanded metals. The presented project focuses on the assessment and exploitation of this potential raw material. Lignite ash assessment showed that largest ash amounts for potential exploitation are available in the Lusatia district, Saxony. Mechanical ash pre-treatment in principle provided enriched fractions by different methods but still suffered from low yields of enriched fractions. Thermal ash processing showed multiple significant phase changes compared to original ash. Subsequent chemical leaching using HClaq resulted in high metal extraction. Alternatively, bioleaching was applied using acidophilic Fe(II) and S-oxidizing or Fe(III)-reducing microorganisms (MO) as well as heterotrophic MO. The results indicated likewise high and partly specific metal mobilizations. Industrial ash exploitation was accomplished by direct reaction with acids resulting in Al-Fesolutions which potentially can be applied in water treatment.
机译:来自褐煤燃烧的发电燃烧含有战略金属,金属和稀土元素,因此可能是工业上要求的金属的潜在来源。本项目侧重于对这种潜在的原材料的评估和开发。褐煤灰评估表明,萨克森州卢萨斯区提供最大的灰分量用于潜在的剥削。原则上的机械灰预处理原则上通过不同方法提供富集的级分,但仍然富含富集级分的产率低。与原始灰分相比,热灰处理显示出多种显着的相变。随后使用HClAQ的化学浸出导致高金属萃取。或者,使用嗜酸性Fe(II)和S-氧化或Fe(III)的微生物(Mo)以及异养MO来施用生物浸渍。结果表明同样具有高且部分特定的金属流动。通过直接与酸导致的酸性反应来完成工业灰剥削,可能在水处理中应用。

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