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首页> 外文期刊>Waste management & research >Blending organic material with municipal solid waste incinerator bottom ash to promote in-situ carbonation in road base
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Blending organic material with municipal solid waste incinerator bottom ash to promote in-situ carbonation in road base

机译:将有机材料与城市固体废物焚化炉底灰混合,以促进路基原位碳化

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The use of municipal solid waste incinerator bottom ash for road-base construction is an accepted practice in Europe and Asia, and of growing interest in the US. It is common practice to cure bottom ash by stockpiling it for several weeks before using it in this application. The curing process exposes the bottom ash to atmospheric carbon dioxide, which promotes carbonation, lowering its pH (making it less alkaline), and making many heavy metals less soluble. While this process makes bottom ash a more environmentally acceptable material, it takes time and requires additional handling. This article investigates a concept to facilitate carbonation of bottom ash in its compacted state, potentially eliminating the stockpile curing process. It is demonstrated here that blending a small amount of organic material with bottom ash will accelerate carbonation and lower pH in compacted samples by providing a carbon source for bacteria to produce carbon dioxide. Different quantities of biosolids (1%, 2%, 3%, and 5% by mass) were added to compacted bottom ash samples to examine the effect of organic materials on carbonation, and results were compared with a compacted control bottom ash sample. The pH of the control bottom ash sample decreased from 12.07 to 9.78 after 63 days, while the pH of the sample containing 5% biosolids decreased from 11.70 to 9.74 in only 7 days and to 8.18 after 63 days. Physical testing was conducted to examine suitability for beneficial use. The results indicate that bottom ash containing less than 3% biosolids met minimum bearing strength requirements for road base.
机译:在欧洲和亚洲,将市政固体废物焚烧炉底灰用于道路基层建设是一种公认​​的做法,并且在美国越来越受到关注。通常的做法是在应用前将底灰储存数周以使其固化。固化过程将底灰暴露于大气中的二氧化碳中,这会促进碳酸化,降低其pH(使其碱性降低),并使许多重金属的溶解性降低。尽管此过程使底灰成为更环保的材料,但仍需要时间并需要额外的处理。本文研究了一种概念,该概念可促进压实状态下的底灰碳化,从而有可能消除堆肥的固化过程。在此证明,通过为细菌提供二氧化碳产生的碳源,将少量有机物质与底灰混合可加速碳酸化并降低压实样品的pH值。将不同数量的生物固体(按质量计分别为1%,2%,3%和5%)添加到压实的底灰样品中,以检查有机材料对碳酸化的影响,并将结果与​​压实的对照底灰样品进行比较。对照底灰样品的pH在63天后从12.07降低到9.78,而含有5%生物固体的样品的pH仅在7天内从11.70降低到9.74,而在63天后降低到8.18。进行了物理测试以检查有益用途的适用性。结果表明,含少于3%生物固体的底灰满足路基的最低承载强度要求。

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