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Life cycle assessment of solid waste management strategies in a chlor-alkali production facility

机译:氯碱生产设施中固体废物管理策略的生命周期评估

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The waste management of a chlor-alkali and calcium chloride industrial facility from southern Chile was the object of this study. The main solid waste materials generated in these processes are brine sediments and calcium chloride sediments, respectively. Both residues are mixed in the liquid phase and filtered in a press filter, obtaining a final low humidity solid waste, called 'mixed sediments', which is disposed of in an industrial landfill as non-hazardous waste. The aim of the present study was to compare by means of LCA, the current waste management option of the studied chlor-alkali facility, namely landfill disposal, with two new possible options: the reuse of the mixed sediments as mineral additive in compost and the use of brine sediments as an unconventional sorbent for the removal of heavy metals from wastewater. The functional unit was defined as 1 tonne of waste being managed. To perform this evaluation, software SimaPro 7.0 was used, selecting the Ecoindicator 99 and CML 2000 methodologies for impact evaluation. The obtained results indicate that the use of brine sediments as a novel material for the removal of heavy metals from wastewater (scenario 3) presented environmental benefits when compared with the waste management option of sediments landfilling (scenario 1). The avoided environmental loads, generated by the substitution of activated granular carbon and the removal of Cu and Zn from wastewater in the treatment process generated positive environmental impacts, enhancing the environmental performance of scenario 3.
机译:这项研究的目标是智利南部氯碱和氯化钙工业设施的废物管理。这些过程中产生的主要固体废物分别是盐水沉积物和氯化钙沉积物。将两种残留物在液相中混合,并在压滤机中过滤,得到最终的低湿度固体废物,称为“混合沉淀物”,将其作为无害废物处理在工业垃圾填埋场中。本研究的目的是通过LCA来比较所研究的氯碱设施的当前废物管理方案(即垃圾填埋处理),并提供两个新的可能方案:将混合沉淀物作为堆肥中的矿物添加剂再利用和使用盐水沉积物作为非常规吸附剂从废水中去除重金属。功能单位定义为管理1吨废物。为了执行此评估,使用了SimaPro 7.0软件,选择了Ecoindicator 99和CML 2000方法进行影响评估。获得的结果表明,与沉积物填埋的废物管理方案(方案1)相比,使用盐水沉淀物作为从废水中去除重金属的新型材料(方案3)具有环境效益。在处理过程中,活性颗粒碳的替代以及废水中铜和锌的去除所避免的环境负荷产生了积极的环境影响,增强了方案3的环境绩效。

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