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The influence of fly ash additions on acid mine drainage production from coarse coal refuse.

机译:粉煤灰添加量对粗煤refuse石酸性矿山排水生产的影响。

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摘要

The exclusion of coal fly ash from regulation as a hazardous waste has led to increased interest in returning ash to the coalfields for disposal. Bulk-blending alkaline fly ash with acid forming coal refuse may present a disposal option that aids in the control of acid mine drainage. A preliminary column leaching study examined the leachate quality from acid-forming coal refuse:fly ash blends. Coal refuse (2.2% total-S), and two refuse:fly ash blends (20% and 33% ash w/w) were packed into leaching columns and leached under unsaturated conditions for over four years. The coal refuse columns acidified quickly, producing peak leachate levels of acidity (pH 1.7), Fe (10,000 mg l{dollar}sp{lcub}-1{rcub}{dollar}), SO{dollar}sb4sp{lcub}-2{rcub}{dollar} (30,000 mg l{dollar}sp{lcub}-1{rcub}{dollar}), and Mn (300 mg l{dollar}sp{lcub}-1{rcub}{dollar}). Both ash blended treatments provided alkaline leachate with low metal levels. A second column study used a refuse with higher potential acidity (4% total-S), and two alkaline ash sources; one blended at two rates (20% and 33%) and one at four rates (5%, 10%, 20%, and 33%). Bulk-blended ground agricultural limestone, rock phosphate ore, and topsoil treatments were also studied. The unamended refuse treatment acidified rapidly and produced acidic (pH 1.7) leachates with high peak dissolved metal levels ({dollar}>{dollar}15,000 mg l{dollar}sp{lcub}-1{rcub}{dollar} Fe; 200 mg l{dollar}sp{lcub}-1{rcub}{dollar} Mn). Treatments blended with 33% ash produced alkaline (pH {dollar}>{dollar} 8.4) leachates with low metal levels (Al {dollar}<{dollar} 1.0 mg l{dollar}sp{lcub}-1{rcub};{dollar} Cu-0.10 mg l{dollar}sp{lcub}-1{rcub}{dollar}; Fe {dollar}<{dollar} 2.0 mg l{dollar}sp{lcub}-1{rcub}{dollar}; Mn {dollar}<{dollar} 3.0 mg l{dollar}sp{lcub}-1{rcub}{dollar}). Treatments containing less ash eventually acidified and ash bound metals (Mn and Cu) were stripped from the ash and eluted in quantities proportionate to the amount of ash in the blend. A field experiment with water sampling lysimeters examined bulk-blended refuse (0.8% S) with two acidic and one alkaline ash. The ash treatments did not produce consistent negative impacts on leachate water quality, and produced positive effects on plant biomass production compared to unamended controls. Overall, the inhibition of pyrite oxidation by high ash blends was attributed to alkalinity effects, chemisorption, decreased hydraulic conductivity, and decreased oxygen diffusion to pyritic surfaces. Ash alkalinity and refuse potential acidity must be balanced for environmental safety in this co-disposal environment.
机译:将粉煤灰排除在危险废物之外,这导致人们越来越有兴趣将粉煤灰返回煤田进行处置。带有酸形成煤refuse石的大块混合碱性粉煤灰可能是一种有助于控制酸性矿山排水的处置选择。初步的柱浸研究研究了形成酸的煤coal石与粉煤灰混合物的渗滤液质量。将煤refuse石(占总S的2.2%)和两种垃圾:粉煤灰的混合物(W / W的灰分分别为20%和33%)装填到浸出塔中,并在不饱和条件下浸出四年以上。煤refuse石柱快速酸化,产生最高酸度(pH 1.7),Fe(10,000 mg l {dollar} sp {lcub} -1 {rcub} {dollar}),SO {dollar} sb4sp {lcub} -2峰值渗滤液。 {rcub} {dollar}(30,000毫克l {dollar} sp {lcub} -1 {rcub} {dollar})和Mn(300 mg l {dollar} sp {lcub} -1 {rcub} {dollar})。两种灰混合处理均提供了低金属含量的碱性渗滤液。第二个专栏研究使用了具有更高潜在酸度(总S含量为4%)的垃圾和两个碱灰源。一种以两种比率(20%和33%)混合,一种以四种比率(5%,10%,20%和33%)混合。还研究了大块混合地面农用石灰石,磷矿矿石和表土处理方法。未经修正的垃圾处理会迅速酸化并产生酸性(pH 1.7)渗滤液,具有最高的峰值溶解金属水平({dollar}> {dollar} 15,000 mg l {dollar} sp {lcub} -1 {rcub} {dollar} Fe; 200 mg 1 {dollar} sp {lcub} -1 {rcub} {dollar} Mn)。与33%灰分混合的处理可产生低金属含量(Al {dollar} <{dollar} 1.0 mg l {dollar} sp {lcub} -1 {rcub}; {美元:Cu-0.10 mg l {dollar} sp {lcub} -1 {rcub} {dollar}; Fe {dollar} <{dollar} 2.0 mg l {dollar} sp {lcub} -1 {rcub} {dollar}; Mn {美元} <{美元} 3.0毫克l {美元} sp {lcub} -1 {rcub} {美元})。灰分较少的处理液最终被酸化,灰分结合的金属(Mn和Cu)从灰分中剥离,并按与混合物中灰分量成比例的量洗脱。用水量测渗仪进行的野外试验检查了混合混有两种酸性和一种碱性灰烬的垃圾(0.8%S)。与未经修正的对照相比,灰分处理对渗滤液水质没有产生持续的负面影响,并且对植物生物量的产生产生了积极的影响。总体而言,高灰分混合物对黄铁矿氧化的抑制作用归因于碱度效应,化学吸附,降低的水力传导率和减少的氧扩散至黄铁矿表面。在这种共处置环境中,为了环境安全,必须平衡灰碱度和垃圾潜在酸度。

著录项

  • 作者

    Stewart, Barry Robert.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Mining.; Environmental Sciences.; Engineering Environmental.; Geochemistry.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 205 p.
  • 总页数 205
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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