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Recovery of high purity zinc from filter ash produced during the thermal treatment of waste and inerting of residual materials

机译:从废物热处理和残留材料惰性化过程中产生的滤灰中回收高纯锌

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The method described below recovers zinc, a valuable metal that is present in high concentrations in filter ash from the thermal treatment of waste, and returns the filter ash stripped of heavy metals to the combustion process in order to destroy organic substances. On an industrial scale, the heavy metals in the filter ash were mobilized by means of hydrochloric acid in the acidic fluids produced in the flue-gas scrubbing process without the addition of further chemicals. A pilot plant for implementing the selective reactive extraction (SRE) method on the ash extracts, using a highly selective complexant, was operated over a period of several months in order to obtain a concentrated, high-purity zinc salt solution (mono metal solution). A zinc depletion rate of 99.8% in the aqueous extract was achieved using mixer-settler units. The residual zinc concentration in the waste water was then < 2 mg L~(-1). By stripping the loaded organic phase, a concentrated, high-purity mono metal solution with 190 g L~(-1) zinc was obtained. Zinc metal with a purity > 99.99% is then separated by means of electrolysis. To destroy organic substances present in the filter ash, particularly dioxins and furans, the extracted filter ash cake was returned to the combustion process together with household waste. Plant operation, raw and pure gas parameters, and quality of the bottom ash produced were not impacted by such recirculation. The profitability of the overall process is attributable both to the recovery of valuable zinc metal and to the cost savings made in waste water treatment and in the disposal of the waste combustion residues because the remaining mixture of filter ash and bottom ash can be reused in a combined form. This method therefore supports the sustainable and economically viable reuse of filter ash.
机译:下述方法从废物的热处理中回收锌(锌以高浓度存在于滤灰中),然后将去除重金属的滤灰返回燃烧过程,以破坏有机物质。在工业规模上,借助于烟道气洗涤过程中产生的酸性流体中的盐酸将滤灰中的重金属迁移,而无需添加其他化学物质。为了获得浓缩的高纯度锌盐溶液(单金属溶液),使用了高选择性络合剂的中试工厂使用灰分高的络合剂实施了选择性反应萃取(SRE)方法。 。使用混合沉降器单元,水提取物中的锌消耗率为99.8%。废水中的残留锌浓度小于2 mg L〜(-1)。通过汽提负载的有机相,获得具有190 g L〜(-1)锌的浓缩高纯度单金属溶液。然后通过电解分离出纯度> 99.99%的锌金属。为了销毁滤灰中存在的有机物质,特别是二恶英和呋喃,将提取的滤灰饼与生活垃圾一起返回燃烧过程。工厂的运营,原始和纯净气体参数以及生产的底灰的质量均不受这种再循环的影响。整个过程的盈利能力既可归因于有价值的锌金属的回收,又可归因于废水处理和废物燃烧残渣的处置节省的成本,因为滤渣和底灰的其余混合物可在垃圾箱中再利用。组合形式。因此,该方法支持了滤灰的可持续和经济可行的再利用。

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