...
首页> 外文期刊>Clean technologies and environmental policy >Connecting wastes to resources for clean technologies in the chlor-alkali industry: a life cycle approach
【24h】

Connecting wastes to resources for clean technologies in the chlor-alkali industry: a life cycle approach

机译:将废物与氯碱行业的清洁技术资源联系起来:生命周期方法

获取原文
获取原文并翻译 | 示例
           

摘要

AbstractOur current economic model is experiencing increasing demand and increasing pressure on resource utilisation, as valuable materials are lost as waste. Moving towards a circular economy and supporting efficient resource utilisation is essential for protecting the environment. The chlor-alkali industry is one of the largest consumers of salt, and efforts have been made to reduce its electricity use. Furthermore, KCl mining wastes have received increasing attention because they can be transformed into value-added resources. This work studies the influence of using different salt sources on the environmental sustainability of the chlor-alkali industry to identify further improvement opportunities. Rock salt, solar salt, KCl waste salt, vacuum salt and solution-mined salt were studied. Membrane cells in both bipolar and monopolar configurations were studied and compared to the emergent oxygen-depolarised cathode (ODC) technology. Life cycle assessment was applied to estimate the cradle-to-gate environmental impacts. The natural resource (NR) requirements and the environmental burdens (EBs) to the air and water environments were assessed. The total NR and EB requirements were reduced by 20% when vacuum salt was replaced with KCl. Moreover, the environmental impacts estimated for the monopolar membrane using KCl were comparable to those generated for the bipolar membrane using VS. The difference between the monopolar and bipolar scenarios (17%) was slightly higher than that between the bipolar and ODC technologies (12%). This work demonstrates the importance of studying every life cycle stage in a chemical process and the environmental benefit of applying a circular economy, even in energy intensive industries such as the chlor-alkali industry.
机译: Abstract 我们当前的经济模型正面临着日益增长的需求和对资源利用的压力,有价值的材料作为浪费而流失。迈向循环经济并支持有效利用资源对于保护环境至关重要。氯碱工业是盐的最大消耗者之一,并且已经努力减少其用电量。此外,由于氯化钾采矿废物可以转化为增值资源,因此受到越来越多的关注。这项工作研究了使用不同盐源对氯碱工业环境可持续性的影响,以确定进一步的改进机会。研究了岩盐,太阳盐,氯化钾废盐,真空盐和溶液开采盐。研究了双极性和单极性配置的膜细胞,并将其与新兴的氧去极化阴极(ODC)技术进行了比较。应用生命周期评估来评估从摇篮到大门的环境影响。评估了自然资源(NR)的要求以及空气和水环境的环境负担(EB)。当用KCl代替真空盐时,总的NR和EB要求降低了20%。此外,使用KCl估计的单极膜的环境影响与使用VS估计的双极膜的环境影响相当。单极性和双极性方案之间的差异(17%)略高于双极性和ODC技术之间的差异(12%)。这项工作证明了研究化学过程中每个生命周期阶段的重要性以及应用循环经济的环境效益的重要性,即使在氯碱工业等能源密集型工业中也是如此。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号