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首页> 外文期刊>Journal of Environmental Management >Effect of biochars produced from solid organic municipal waste on soil quality parameters
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Effect of biochars produced from solid organic municipal waste on soil quality parameters

机译:固体有机城市垃圾产生的生物炭对土壤质量参数的影响

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摘要

New value-added uses for solid municipal waste are needed for environmental and economic sustain-ability. Fortunately, value-added biochars can be produced from mixed solid waste, thereby addressing solid waste management issues, and enabling long-term carbon sequestration. We hypothesize that soil deficiencies can be remedied by the application of municipal waste-based biochars. Select municipal organic wastes (newspaper, cardboard, woodchips and landscaping residues) individually or in a 25% blend of all four waste streams were used as feedstocks of biochars. Three sets of pyrolysis temperatures (350, 500, and 750 ℃) and 3 sets of pyrolysis residence time (2, 4 and 6 h) were used for biochar preparation. The biochar yield was in the range of 21-62% across all feedstocks and pyrolysis conditions. We observed variations in key biochar properties such as pH, electrical conductivity, bulk density and surface area depending on the feedstocks and production conditions. Biochar increased soil pH and improved its electrical conductivity, aggregate stability, water retention and micronutrient contents. Similarly, leachate from the soil amended with biochar showed increased pH and electrical conductivity. Some elements such as Ca and Mg decreased while NO_3-N increased in the leachates of soils incubated with biochars. Overall, solid waste-based biochar produced significant improvements to soil fertility parameters indicating that solid municipal wastes hold promising potential as feedstocks for manufacturing value-added biochars with varied physicochemical characteristics, allowing them to not only serve the needs for solid waste management and greenhouse gas mitigation, but also as a resource for improving the quality of depleted soils.
机译:为了提高环境和经济的可持续性,需要对固体城市垃圾进行新的增值用途。幸运的是,可以从混合固体废物中生产增值生物炭,从而解决了固体废物管理问题,并实现了长期的碳固存。我们假设可以通过应用城市垃圾为基础的生物炭来弥补土壤缺乏。特定的市政有机废物(报纸,纸板,木片和园林残留物)单独或以所有四种废物流的25%混合的比率用作生物炭的原料。使用三组热解温度(350、500和750℃)和三组热解停留时间(2、4和6 h)来制备生物炭。在所有原料和热解条件下,生物炭收率在21-62%的范围内。我们观察到了关键生物炭特性的变化,例如pH,电导率,堆积密度和表面积,取决于原料和生产条件。生物炭增加了土壤的pH值,并改善了其电导率,聚集体稳定性,保水性和微量营养素含量。同样,用生物炭改良过的土壤渗滤液显示出增加的pH值和电导率。在与生物炭一起培养的土壤中,渗滤液中的某些元素(例如钙和镁)降低,而NO_3-N升高。总体而言,以固体废物为基础的生物炭极大地改善了土壤肥力参数,表明城市固体废物作为制造具有不同理化特性的增值生物炭的原料具有广阔的发展潜力,不仅可以满足固体废物管理和温室气体的需求。缓解,也可以作为改善贫瘠土壤质量的资源。

著录项

  • 来源
    《Journal of Environmental Management》 |2017年第may1期|271-280|共10页
  • 作者单位

    Center for Excellence in Post-Harvest Technologies, North Carolina Agricultural and Technical State University, North Carolina Research Campus,Kannapolis, NC, 28081, USA;

    Center for Excellence in Post-Harvest Technologies, North Carolina Agricultural and Technical State University, North Carolina Research Campus,Kannapolis, NC, 28081, USA;

    Center for Excellence in Post-Harvest Technologies, North Carolina Agricultural and Technical State University, North Carolina Research Campus,Kannapolis, NC, 28081, USA;

    College of Health Sciences, Qatar University, P.O. Box 2713, Doha, Qatar;

    The Department of Natural Resources and Environmental Design, North Carolina Agricultural and Technical State University, Greensboro, NC, 27411, USA;

    The Department of Natural Resources and Environmental Design, North Carolina Agricultural and Technical State University, Greensboro, NC, 27411, USA;

    USDA-ARS, Coastal Plains Research Center, 2611 West Lucas Street, Florence, SC, 29501, USA;

    USDA-ARS, Coastal Plains Research Center, 2611 West Lucas Street, Florence, SC, 29501, USA;

    College of Health Sciences, Qatar University, P.O. Box 2713, Doha, Qatar;

  • 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

    Biochar; Soil amendment; Carbon sequestration; Environment; Sustainability;

    机译:生物炭土壤改良剂;碳汇;环境;可持续发展;

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