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Improving sustainability of electrolytic wastewater treatment processes by green powering

机译:通过绿色电力提高电解废水处理过程的可持续性

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摘要

This work focuses on the evaluation of the impact of powering electrolytic wastewater treatment processes with grid or renewable energy on the sustainability of this electrochemical remediation technology. To face this goal, it was performed an inventory of three bench-scale plants made up by the same treatment technology but powered from different supplies: connected to grid and directly coupled with solar photovoltaic panels or a wind turbine. Results show that the powering mode can significantly affect the environmental risks of the treatment, not only in terms of electricity demand but also on the formation of intermediates, which are more important in the cases in which the intensity profile varied. A life cycle assessment (LCA) is carried out in order to quantify the environmental impacts of green powering electrolytic wastewater treatment processes. Ecoinvent 3.3 data base, AWARE, USEtox, IPPC and ReCiPe methodologies are used to quantify the environmental burden into 5 midpoint (water footprint, global warming 100a, ozone layer depletion, human toxicity, freshwater ecotoxicity) and 17 endpoint impact categories. All impact categories are higher in the case in which the supplied power cames from a electricity grid mix. For the removal of 0.1 g 2,4-dichlorophenoxyacetic acid (2,4D) per liter (functional unit) of treated wastewater releases 0.14 kg CO_2 eq. If the energy is provided by a wind turbine or a solar panel the processes emit 0.020 kg CO_2 eq and 0.019 kg CO_2 eq, respectively. A comparison of the impact based on the grid mix used in different countries is also made, which has pointed out the relevance of this input on the sustainability of the environmental electrochemical technologies.
机译:这项工作侧重于评价电解废水处理过程对电网或可再生能源对该电化学修复技术的可持续性的影响的评价。要面对这一目标,它是由相同的处理技术组成的三个台式植物的库存,而是从不同的物资供电:连接到网格并直接与太阳能光伏板或风力涡轮机联接。结果表明,电力模式可能会显着影响治疗的环境风险,不仅就电力需求而言,还对中间体的形成,这在强度曲线变化的情况下更为重要。进行生命周期评估(LCA),以便量化绿色电力电解废水处理过程的环境影响。 EcoInvent 3.3数据库,了解,USETOX,IPPC和配方方法用于量化环境负担至5个中点(水占地面积,全球变暖100A,臭氧层耗尽,人毒性,淡水生态毒性)和17个终点影响类别。所有冲击类别在供应的电网组合的情况下较高。为了除去处理废水的每升0.1g 2,4-二氯苯乙酸(2,4d)(官能团)释放0.14kg CO_2当量。如果通过风力涡轮机或太阳能电池板提供能量,则该过程分别发出0.020kg CO_2 eq和0.019kg CO_2 EQ。还制定了基于不同国家的电网组合的影响的比较,这已经指出了这一投入对环境电化学技术的可持续性的相关性。

著录项

  • 来源
    《The Science of the Total Environment》 |2021年第2期|142230.1-142230.9|共9页
  • 作者单位

    Department of Chemical Engineering University of Castilla La Mancha Campus Universitario s 13071 Ciudad Real Spain;

    Department of Chemical Engineering University of Castilla La Mancha Campus Universitario s 13071 Ciudad Real Spain;

    Department of Chemical Engineering University of Castilla La Mancha Campus Universitario s 13071 Ciudad Real Spain;

    Department of Chemical Engineering University of Castilla La Mancha Campus Universitario s 13071 Ciudad Real Spain;

    Department of Chemical Engineering University of Castilla La Mancha Campus Universitario s 13071 Ciudad Real Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Life cycle assessment; Electrolysis; Wastewater; Solar photovoltaic; Wind turbine;

    机译:生命周期评估;电解;废水;太阳能光伏;风力涡轮机;

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