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Synthesis of zeolitic-type adsorbent material from municipal solid waste incinerator bottom ash and its application in heavy metal adsorption

机译:垃圾焚烧炉底灰合成沸石型吸附材料及其在重金属吸附中的应用

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摘要

Municipal solid waste incinerator (MSWI) bottom ash (BA) was converted to zeolitic-type adsorbent materials by hydrothermal conversion under strongly alkaline conditions. The conversion product was determined to be a mixture of sodium aluminum silicate hydrate (SASH) (Na2O·Al2O3·1.68SiO2·1.73H2O) and tobermorite (Ca5Si6O16(OH)2·4H2O). The BET specific surface area was 22.1 m2/g, which represented a significant gain compared to the BA (4.6 m2/g) due to the formation of micropores and mesopores. The converted BA demonstrated promising performance for application as a sorbent towards several heavy metals (oxyanions of As(V), and Cd2+, Co2+, Ni2+, Pb2+, and Zn2+). Its performance was found to be generally superior to that of a mainly clinoptilolite natural zeolite, achieving greater sorption extents and better stabilizing capability of contaminated sediments. At a lower dosage rate (50 mg sorbent per gram sediment) to that of natural zeolite, converted BA achieved greater than 80% reduction of cationic heavy metal concentrations in sediment porewater. These results suggest a promising route for reutilization of MSWI-BA, which can greatly enhance the sustainability of waste incineration technology.
机译:通过在强碱性条件下进行水热转化,将城市固体废物焚烧炉(MSWI)的底灰(BA)转化为沸石型吸附材料。确定该转化产物为硅酸铝铝水合物(SASH)(Na 2 O·Al 2 O 3·1.68SiO 2·1.73H 2 O)和水辉石(Ca 5 Si 6 O 16(OH)2·4H 2 O)的混合物。 BET比表面积为22.1 m2 / g,由于微孔和中孔的形成,与BA(4.6 m2 / g)相比,具有明显的增加。转化后的BA表现出可用于多种重金属(As(V)的氧阴离子和Cd2 +,Co2 +,Ni2 +,Pb2 +和Zn2 +的吸附剂)的良好性能。发现其性能通常优于主要斜发沸石天然沸石,具有更大的吸附程度和更好的被污染沉积物的稳定能力。与天然沸石相比,在较低的剂量率(每克沉积物50 mg吸附剂)下,转化的BA可降低沉积物孔隙水中阳离子重金属的浓度降低80%以上。这些结果表明,MSWI-BA的再利用前景广阔,可以大大提高垃圾焚烧技术的可持续性。

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