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Does intensification with UV light and US improve the sustainability of electrolytic waste treatment processes?

机译:使用紫外线和美国改善了电解废物处理过程的可持续性吗?

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摘要

This work aims to assess the influence of ultrasounds (US) application or ultraviolet (UV) light irradiation on the efficiency and sustainability of the treatment of wastes by conductive diamond electrochemical oxidation (CDEO). To do this, a life cycle assessment (LCA) is carried out in order to quantify the environmental impacts of the intensified CDEO processes. Inventories of three bench scale remediation plants (CDEO, Sono-CDEO and Photo-CDEO) in which the different technologies are implemented are performed by means of 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. Photo-CDEO attains the faster and more efficient removal in terms of energy consumed. All impact categories are lower in the case in which UV light irradiation is coupled to the CDEO treatment, particularly if the electrolyte does not contain chloride anions. From the point of view of toxicity and ecotoxicity, it is essential to achieve a complete mineralization, because of the intermediates generated into wastes containing chloride anions can become more hazardous than the initial pesticide. The operation of these technologies at large current densities shows positive results from the sustainability point of view, despite the huge environmental impact related to the energy production. Data notice that almost a 99.0% of the total global wanning potential is mainly due to the electricity required during the electrochemical treatment, being higher by the sono and photo CDEO treatments because of the use of additional devices. Nevertheless, this issue can be overcome by means of using renewable energies as power sources of these remediation treatments. According to results, it can be claimed that the electrochemical technologies may successfully compete with other AOPs in terms of sustainability.
机译:这项工作旨在评估超声(美国)施用或紫外线(UV)光照射对通过导电金刚石电化学氧化(CDEO)处理废物的效率和可持续性的影响。为此,进行生命周期评估(LCA),以量化加剧CDEO过程的环境影响。通过生态荧光3.3数据库进行三个台式修复植物(Cdeo,Sono-Cdeo和光Cdeo)的清单,其中实现了不同的技术。意识到,USETOX,IPPC和配方方法,用于量化环境负担到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个端点影响类别。 Photo-Cdeo在消耗的能量方面获得更快,更有效的拆除。在UV光照射与CDEO处理偶联的情况下,所有冲击类别都较低,特别是如果电解质不含氯化物阴离子。从毒性和生态毒性的角度来看,才能实现完全的矿化,因为含有氯化物阴离子的废物产生的中间体可能变得比初始农药更有危险。尽管与能源生产有巨大的环境影响,但是在大型电流密度下,这些技术的操作表明了来自可持续发展的阳性结果。数据通知,全球近99.0%的全球航空潜力主要是由于电化学治疗期间所需的电力,因为使用其他装置,Sono和Photo Cdeo治疗更高。然而,可以通过使用可再生能源作为这些修复治疗的电源来克服这个问题。根据结果​​,可以要求电化学技术在可持续性方面可以成功地与其他AOP竞争。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|111597.1-111597.8|共8页
  • 作者单位

    Department of Chemical Engineering University of Castiilla La Mancha Campus Universitario s/n. 13071 Ciudad Real Spain;

    Department of Chemical Engineering University of Castiilla La Mancha Campus Universitario s/n. 13071 Ciudad Real Spain;

    Department of Chemical Engineering University of Castiilla La Mancha Campus Universitario s/n. 13071 Ciudad Real Spain;

    Department of Chemical Engineering University of Castiilla La Mancha Campus Universitario s/n. 13071 Ciudad Real Spain;

    Department of Chemical Engineering University of Castiilla La Mancha Campus Universitario s/n. 13071 Ciudad Real Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Life cycle assessment; Electrolysis; Wastewater; Photo-electrolysis; Sono-electrolysis; Intermediates;

    机译:生命周期评估;电解;废水;光电解;超声电解;中间体;

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