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Use of LCA to evaluate the environmental benefits of substituting chromic acid anodizing (CAA)

机译:使用LCA评估替代铬酸阳极氧化(CAA)的环境效益

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Chromic acid anodizing processes are currently being replaced in many industrial sectors because of the recognized adverse effect on the environment and health of used hexavalent chromium compounds. The environmental impacts of the existing processes must, however, be quantified in order to constitute a baseline against which the environmental performance of potential alternative options could be compared. The whole life cycle of the process should also be taken into account to ensure that the possible chosen solution for eliminating or lowering chromium (VI) emissions would not drastically damage the overall process performance in other environmental areas. In our study, we used a simplified life cycle assessment methodology that only took into account the key environmental issues of the considered industrial sector. Both the scope and the data needs were reduced by focusing only on significant flows and by using a generic database for steps other than the anodizing one. A precise literature review was carried out to evaluate bath atmospheric emissions. The results of the performed assessment confirmed that the only way to efficiently deal with hexavalent chromium compounds is to substitute the electrolyte used in the bath as the most Cr(Vl) emissions are caused by other stages than the main one. Other specific issues, such as water and energy consumptions have, nevertheless, to be studied throughout the whole life cycle of the chemical substitute to monitor performance against CAA.
机译:由于公认的对使用过的六价铬化合物对环境和健康的不利影响,目前在许多工业领域中正在取代铬酸阳极氧化工艺。但是,必须量化现有流程对环境的影响,以构成一个基准,可以与之比较潜在替代方案的环境绩效。还应考虑该过程的整个生命周期,以确保为消除或降低六价铬(VI)排放而选择的解决方案不会对其他环境领域的整体过程性能造成严重损害。在我们的研究中,我们使用了简化的生命周期评估方法,该方法仅考虑了所考虑的工业部门的关键环境问题。通过只关注大量流量并通过将通用数据库用于阳极氧化以外的步骤,从而减少了范围和数据需求。进行了精确的文献综述,以评估镀液的大气排放。评估的结果证实,有效处理六价铬化合物的唯一方法是替代镀液中使用的电解质,因为大部分Cr(Vl)排放是由主要阶段以外的其他阶段引起的。但是,还需要在化学替代品的整个生命周期中研究其他特定问题,例如水和能源消耗,以监控CAA的性能。

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