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Environmental profile of an innovative household biowaste dryer system based on Life Cycle Assessment

机译:基于生命周期评估的创新型家用生物垃圾烘干机系统的环境概况

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摘要

An alternative approach to biowaste management involves the application of an innovative household dryer for the dehydration of biowaste at source, in order to significantly reduce its mass and volume, and subsequently the collection frequency. The main objective of this work is to assess the potential impacts of the system under examination, which involves the household dryer use and kerbside collection of the dehydrated residues (biomass), by conducting a Life Cycle Assessment study. The stages considered in the present study include the following: (a) the construction of the household biowaste dryer; (b) the use of the dryer and the collection of dehydrated residues; (c) the end-of-life treatment of the dryer. The results revealed that emissions coming from kerbside collection account for the vast majority of the total emissions from each category examined, apart from Terrestrial Ecotoxicity, where lignite, heavy fuel oil and diesel combustion during electricity production affect mainly this category. The potential impact in Global Warming over 100 years was estimated to be 8.87 kg CO2 eq / t biowaste. The Human Toxicity Potential was 1.86 kg 1,4-DB eq / t biowaste, Terrestrial Ecotoxicity Potential was 0.027 kg 1,4-DB eq / t biowaste, Freshwater Aquatic Ecotoxicity Potential was 0.0126 kg 1,4-DB eq / t biowaste and Marine Aquatic Ecotoxicity Potential was 521.85 kg 1,4-DB eq / t biowaste. Acidification Potential was estimated at 0.035 kg SO2 eq / t biowaste, while Eutrophication Potential was 0.0065 kg PO4- eq / t biowaste. Finally, Photochemical Oxidation Potential was 0.0014 kg C2H4 eq / t biowaste.
机译:生物废物管理的另一种方法包括使用创新的家用干燥机,从源头上对生物废物进行脱水,以显着降低其质量和体积,从而减少收集频率。这项工作的主要目的是通过进行生命周期评估研究,评估所检查系统的潜在影响,该系统涉及家用烘干机的使用以及脱水残留物(生物质)的路边收集。本研究考虑的阶段包括:(a)建造家用生物废物干燥机; (b)使用干燥机和收集脱水残留物; (c)干燥机的报废处理。结果表明,除陆地生态毒性外,来自路边收集的排放物占所检查每个类别总排放量的绝大部分,其中在生产过程中褐煤,重质燃油和柴油燃烧主要影响该类别。据估计,在100年的时间里,全球变暖的潜在影响为8.87千克二氧化碳当量/吨生物废物。人类毒性潜力为1.86千克1,4-DB eq / t生物废物,陆地生态毒性潜力为0.027千克1,4-DB eq / t生物废物,淡水水生生态毒性潜力为0.0126千克1,4-DB eq / t生物废物和海洋水生生态毒性潜能为521.85千克1,4-DB当量/吨生物废物。酸化潜力估计为0.035 kg SO2当量/吨生物废物,而富营养化潜力为0.0065 kg PO4-当量/吨生物废物。最后,光化学氧化潜能为0.0014 kg C2H4当量/吨生物废物。

著录项

  • 来源
    《Waste management & research》 |2019年第1期|48-58|共11页
  • 作者单位

    Natl Tech Univ Athens, Sch Chem Engn, Unit Environm Sci & Technol, 9 Iroon Polytechniou St,Zographou Campus, GR-15773 Athens, Greece;

    Natl Tech Univ Athens, Sch Chem Engn, Unit Environm Sci & Technol, 9 Iroon Polytechniou St,Zographou Campus, GR-15773 Athens, Greece;

    Natl Tech Univ Athens, Sch Chem Engn, Unit Environm Sci & Technol, 9 Iroon Polytechniou St,Zographou Campus, GR-15773 Athens, Greece;

    Natl Tech Univ Athens, Sch Chem Engn, Unit Environm Sci & Technol, 9 Iroon Polytechniou St,Zographou Campus, GR-15773 Athens, Greece;

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

    Life Cycle Assessment; waste drying; biomass; waste management; waste treatment;

    机译:生命周期评估;废物干燥;生物量;废物管理;废物处理;

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