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Recycling hazardous jarosite waste using coal combustion residues

机译:利用燃煤残渣回收危险的黄钾铁矾废物

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Increase in environmental concern due to improper management of both hazardous and non hazardous wastes released from different industrial process prioritized the necessity for the innovation research. In this context, this paper deals with the immobilization of jarosite waste released from the zinc industry and converting it into a value added product using coal combustion residues (CCRs) through solidification/stabilization (s/s) and sintering process. Experiments were conducted using different ratio of jarosite waste and clay soil with varying concentration of CCRs. The optimized experimental results (using jarosite waste and clay soil ratio of one with 15% CCRs) showed that it is possible to make a composite having desirable mechanical properties such as compressive strength (50–81 kg/ cm~2); water absorption (13–17%); shrinkage (11–32%); and density (1.6–1.8 gm cm~3) to use as a construction material. Under solid state sintering process, with the application of CCRs, the mineral phases such as X Fe_3 (SO _4)_2(OH)_6 [where X=K and NH_4], 2Fe_2O_3SO_3.5H_2O, PbSO_4, CaSO_4 in jarosite waste were transformed into a silicate matrices. The leachate studies confirmed that the toxic elements such as Cd, Pb, etc. were immobilized in the jarosite waste composite and meeting the USEPA TCLP toxicity norms for safe utility. The composite product thus developed has showed potential for recycling jarosite waste in construction sector leading to cross sector waste recycling.
机译:由于对来自不同工业过程的有害废物和非有害废物的管理不当而引起的对环境的关注增加了创新研究的必要性。在这种情况下,本文涉及固定化锌行业释放的黄钾铁矾废物,并通过固化/稳定化(s / s)和烧结过程,利用煤燃烧残渣(CCR)将其转化为增值产品。使用不同比例的黄钾铁矾废料和粘土和不同浓度的CCR进行了实验。优化的实验结果(使用黄钾铁矾废料和粘土土比率为15%的CCR)表明,可以制造出具有理想机械性能(如抗压强度(50-81 kg / cm〜2))的复合材料。吸水率(13-17%);收缩率(11–32%);和密度(1.6–1.8 gm cm〜3)用作建筑材料。在固态烧结过程中,通过使用CCR,将黄铁矿废料中的矿物相如X Fe_3(SO _4)_2(OH)_6 [其中X = K和NH_4],2Fe_2O_3SO_3.5H_2O,PbSO_4,CaSO_4转化为硅酸盐基质。渗滤液研究证实,Cd,Pb等有毒元素固定在黄钾铁矾废料复合物中,并且符合USEPA TCLP毒性标准,可安全使用。如此开发的复合产品显示出在建筑部门回收黄铁矿废物的潜力,从而导致跨部门废物的回收。

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