首页> 外文期刊>Practice Periodical of Hazardous, Toxic, and Radioactive Waste Management >Interaction of Landfill Leachate with Compacted Lateritic Soil Treated with Bacillus coagulans Using Microbial-Induced Calcite Precipitation Approach
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Interaction of Landfill Leachate with Compacted Lateritic Soil Treated with Bacillus coagulans Using Microbial-Induced Calcite Precipitation Approach

机译:微生物诱导方解石沉淀法处理凝结芽孢杆菌处理垃圾渗滤液与压实红壤的相互作用

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The performance of lateritic soil treated with Bacillus coagulans (B. Coagulans) was assessed for use as hydraulic barrier material in municipal solid waste (MSW) containment use. The soil was classified as A-4(2) and SC using AASHTO (American Association of State Highway and Transportation Officials) and the Unified Soil Classification System, respectively. Index, hydraulic conductivity, calcite content, and microanalysis tests were carried out. Soil specimens were treated with B. coagulans at one-third pore volume (i.e., the numerical difference between the initial degree of saturation before soaking in water and final degree of saturation after full saturation of the soil specimens in water) in stepped suspension densities of 0, 1.5 × 10~8, 6.0 × 10~8, 1.2 × 10~9, 1.8 × 10~9, and 2.4 × 10~9 cells/mL, respectively. Cementation reagent was poured on the compacted soil in the mold and allowed to percolate until partial saturation was achieved. Compacted specimens after treatment were placed in water for 24-48 h and then permeated in three sets using water only, water and leachate, and leachate only for a total duration of 90 days. Compatibility test results showed reduction in long-term hydraulic conductivity values for the different permeation regimens considered. Absolute values recorded varied from 7.10 × 10~(-10), 1.04 × 10~(-9), and 7.50 × 10~(-10) to 1.71 × 10~(-9) m/s, 1.69 × 10~(-9), and 8.28 × 10~(-10)m/s when permeated with water only, sequentially with water and leachate, and with leachate only, respectively, at 0 and 2.4 × 10~9 cells/mL, respectively. Calcite content increased for specimens permeated with water only (i.e., from 4.00% to 4.80%) and decreased for specimens sequentially permeated with water and leachate (i.e., from 6.60% to 4.00%) and leachate only (i.e., from 4.80% to 4.00%). Results of chemical compatibility and microanalysis showed that the treated soil is compatible with MSW leachate with the exception of a few cases that did not meet the minimum permisible hydraulic conducutivity value of 1.00 × 10~(-9) m/s used for landfill purposes.
机译:评估了用凝结芽孢杆菌(B. Coagulans)处理的红土土壤在城市固体废物(MSW)围堵用途中用作水硬性屏障材料的性能。分别使用AASHTO(美国国家公路和运输官员协会)和统一土壤分类系统将土壤分类为A-4(2)和SC。进行了指数,水力传导率,方解石含量和微分析测试。在1/3的悬浮密度下,用凝结芽孢杆菌在三分之一的孔体积(即浸入水中的初始饱和度和完全浸入水中的最终饱和度之间的数值差)处处理。分别为0、1.5×10〜8、6.0×10〜8、1.2×10〜9、1.8×10〜9和2.4×10〜9细胞/ mL。将胶结剂倒在模具中的压实土壤上,使其渗滤直至达到部分饱和。处理后的压实样品在水中放置24-48小时,然后仅用水,水和渗滤液,仅渗滤液分成三组渗透,总共持续90天。相容性测试结果显示,对于所考虑的不同渗透方案,长期水力传导率值有所降低。记录的绝对值从7.10×10〜(-10),1.04×10〜(-9)和7.50×10〜(-10)到1.71×10〜(-9)m / s,1.69×10〜( -9)和8.28×10〜(-10)m / s的渗透率分别为0和2.4×10〜9 cell / mL,分别仅与水和渗滤液依次渗入,依次渗入水和渗滤液,仅渗滤液。仅渗透水的样品的方解石含量增加(即,从4.00%降至4.80%),随后浸水和渗滤液的样品的方解石含量降低(即,从6.60%至4.00%)和仅浸出物的方解石含量(即,从4.80%降至4.00) %)。化学相容性和微分析结果表明,除少数情况下,处理后的土壤与垃圾填埋场渗滤液相容,只有少数情况不能满足用于垃圾填埋的最低允许渗透水导率值1.00×10〜(-9)m / s。

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