首页> 外文期刊>Journal of material cycles and waste management >Current and future solid waste management system in Northern Viet Nam with focus on Ha Noi: climate change effects and landfill management
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Current and future solid waste management system in Northern Viet Nam with focus on Ha Noi: climate change effects and landfill management

机译:越南北部目前和未来的固体废物管理系统,重点放在河内:气候变化影响和垃圾掩埋管理

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摘要

The contribution investigates the solid waste management system in Ha Noi under consideration of the interrelation between climate change effects and landfill management by means of a cause-and-effect-analysis as well as water balances using the HELP 3.95 model and gas emission data, followed by a Strength, Weakness, Opportunities, Threats (SWOT) analysis. Even landfills are sources of methane (CH4) emissions they are also impacted by climate change. The main effects on landfill sites are the change of climatic conditions, namely the regional water balance, extreme precipitation and storm events. The results of the water balance model results show that a geomembrane surface sealing can reduce the leachate formation significantly, a fact that is also valid for the climate change scenario with higher precipitation. The risk of flooding and erosion at the landfill sites increases, which will require a customized water management. In parallel landfill gas offers the opportunity for recovery of Greenhouse Gases (GHG) and the generation of renewable energy. Some further management options are wind turbines, photovoltaic systems or biomass for biogas conversion, which was grown on closed landfill sites. The inclusion of climate friendly management options of closed landfills in a "Good Landfill Aftercare Practice" is recommended.
机译:该贡献调查了河内的固体废物管理系统,考虑了气候变化影响与垃圾填埋管理之间的相互关系,并通过因果分析以及使用HELP 3.95模型和气体排放数据的水平衡进行了研究,随后通过优势,劣势,机会,威胁(SWOT)分析。即使垃圾填埋场也是甲烷(CH4)排放源,它们也受到气候变化的影响。对垃圾填埋场的主要影响是气候条件的变化,即区域水平衡,极端降水和暴风雨事件。水平衡模型结果表明,土工膜表面密封可以显着减少渗滤液的形成,这一事实对于降水量较高的气候变化情景也有效。垃圾填埋场的洪水和侵蚀风险增加,这将需要定制的水管理。同时,垃圾填埋气为温室气体(GHG)的回收和可再生能源的产生提供了机会。其他一些管理选择是风力涡轮机,光伏系统或用于沼气转化的生物质,它们生长在封闭的垃圾填埋场上。建议将封闭式垃圾填埋场的气候友好型管理方案纳入“良好的垃圾填埋场善后实践”中。

著录项

  • 来源
    《Journal of material cycles and waste management》 |2017年第3期|1106-1116|共11页
  • 作者单位

    Univ Appl Sci Magdeburg Stendal, Breitscheidstr 2, D-39114 Magdeburg, Germany|C&E Consulting & Engn GmbH, Jagdschankenstr 52, D-09117 Chemnitz, Germany;

    C&E Consulting & Engn GmbH, Jagdschankenstr 52, D-09117 Chemnitz, Germany|IAF Radiookol GmbH, Wilhelm Ronsch Str 9, D-01454 Radeberg, Germany;

    C&E Consulting & Engn GmbH, Jagdschankenstr 52, D-09117 Chemnitz, Germany|IAF Radiookol GmbH, Wilhelm Ronsch Str 9, D-01454 Radeberg, Germany;

    Ctr Technol Responding Climate Change CliTech Hyd, Dept Meteorol, 8 Phao Dai Lang Str, Dong Da Dist, Ha Noi, Vietnam;

    Ind Univ Ho Chi Minh City, 12 Nguyen Van Bao,Ward 4, Ho Chi Minh City, Vietnam;

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

    Solid waste management; Climate change impact; Landfill management;

    机译:固体废物管理;气候变化影响;填埋管理;

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