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首页> 外文期刊>Environmental engineering and management journal >ENVIRONMENTAL PERFORMANCE EVALUATION OF A DRINKING WATER TREATMENT PLANT: A LIFE CYCLE ASSESSMENT PERSPECTIVE
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ENVIRONMENTAL PERFORMANCE EVALUATION OF A DRINKING WATER TREATMENT PLANT: A LIFE CYCLE ASSESSMENT PERSPECTIVE

机译:饮用水处理厂的环境绩效评价:生命周期评估视角

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摘要

Drinking water treatment aims to avoid or minimize some risks to human health and to provide adequate water quality by removing physical, chemical and biological contaminants. However, treatment processes require increasing efforts in terms of technology, chemicals and energy inputs, which generate increased secondary environmental impacts and added water production costs. The objective of this study is to evaluate the drinking water treatment plant (DWTP) in Iasi City (Romania) by life cycle assessment (LCA) and to identify and characterize its environmental impacts. lasi DWTP involves the following scheme: pre-oxidation (chlorine dioxide), coagulation/flocculation, sedimentation, pH correction (calcium hydroxide), rapid sand filtration, granular activated carbon filtration and disinfection (chlorine gas). LCA was performed according to the ISO 14040 standard with the support of SimaPro 8.3. software and Eco-invent 3.3 data base. Life cycle impact assessment has been performed with Recipe 1.13. Midpoint method. The life cycle inventory included the construction and operational phases. The novelty of this study was to define two additional functional units related to removing contaminants besides the traditional 1 m~3 of treated water. The main contributors to impact in most categories were: the electricity consumption (25 - 95% depending on impact category) and the ferric chloride used in coagulation/flocculation (35 - 100%, depending on impact category). Life cycle impact assessment showed that the lower the pollutant concentration, the higher the specific environmental impacts will be. which prompts for further detailed analysis of water treatment plant environmental performance in at least two directions: removal of emerging contaminants (present in very low concentrations) and a more detailed analysis on the individual performance of each treatment stage.
机译:饮用水处理旨在避免或尽量减少对人类健康的一些风险,并通过去除物理,化学和生物污染物提供足够的水质。然而,治疗过程需要在技术,化学品和能量投入方面的努力增加,从而产生增加的二次环境影响并增加水资源生产成本。本研究的目的是通过生命周期评估(LCA)评估IASI市(罗马尼亚)的饮用水处理厂(DWTP),并识别并表征其环境影响。 Lasi DWTP涉及以下方案:预氧化(二氧化氯),凝血/絮凝,沉降,pH校正(氢氧化钙),快速砂过滤,颗粒状活性炭过滤和消毒(氯气)。 LCA是根据ISO 14040标准进行的,支持SIMAPRO 8.3。软件和生态创建3.3数据库。生命周期的影响评估已经使用配方1.13进行。中点方法。生命周期库存包括建设和运营阶段。本研究的新颖性是定义除了传统1M〜3处理水之外的除去污染物相关的另外两种功能单元。主要贡献者对大多数类别的影响是:电力消耗(根据影响类别的25% - 95%)和凝血/絮凝中使用的氯化铁(35-100%,取决于影响类别)。生命周期影响评估表明,污染物浓度越低,具体的环境影响越高。这提示在至少两个方向上进一步详细分析水处理厂环境性能:除去新兴污染物(以非常低的浓度存在),并更详细地分析每个治疗阶段的个体性能。

著录项

  • 来源
    《Environmental engineering and management journal 》 |2019年第2期| 513-522| 共10页
  • 作者单位

    ''Gheorghe Asachi" Technical University of lasi Department of Environmental Engineering and Management 73 Prof. Dimitrie Mangeron Bd. 700050 lasi Romania;

    ''Gheorghe Asachi" Technical University of lasi Department of Environmental Engineering and Management 73 Prof. Dimitrie Mangeron Bd. 700050 lasi Romania;

    ''Gheorghe Asachi" Technical University of lasi Department of Environmental Engineering and Management 73 Prof. Dimitrie Mangeron Bd. 700050 lasi Romania;

    ''Gheorghe Asachi" Technical University of lasi Department of Environmental Engineering and Management 73 Prof. Dimitrie Mangeron Bd. 700050 lasi Romania SC Apavital SA lasi 10 M. Costachescu Street 700495 lasi Romania;

    Department of Environment Land and Infrastructures Engineering (DIATI) Politecnico di Torino Corso Duca degli Abruzzi 24 10129 Torino Italy;

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

    drinking water; environmental impacts; life cycle assessment; operation;

    机译:饮用水;环境影响;生命周期评估;手术;

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