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Synthesis of high strength binders from alkali activation of glass materials from municipal solid waste incineration bottom ash

机译:从城市固体废弃物焚烧底灰碱活化碱活化高强度粘合剂的合成

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This study reports an innovative way to utilize municipal solid waste incineration bottom ash for cleaner production of high strength binders. By alkali activation of glass materials separated from incineration bottom ash with a mixture of sodium silicate and sodium hydroxide solutions, binders with compressive strengths as high as 70 MPa can be synthesized. Selective chemical extractions, X-ray powder diffraction, and Fourier transform infrared and solid-state nuclear magnetic resonance spectroscopies are engaged to characterize gel composition. Results show that the resultant binders contain mainly an amorphous sodium silicate gel. Nuclear magnetic resonance spectral deconvolution reveals that the sodium silicate gel possesses a higher nano-structural connectivity than the precursor glass materials in incineration bottom ash. Both the percentage and the degree of polymerization of the gel increases with increasing SiO2/Na2O ratio in the activating solution. The resulting binder can potentially be used for the production of construction materials and structural concretes. Conclusions from the current study are of environmental significance because they provide potential solutions to recover waste into resources and alleviates the needs for ash disposal. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究报告了采用城市固体废物焚烧底灰进行清洁生产的创新方法,用于清洁高强度粘合剂。通过用硅酸钠和氢氧化钠溶液的混合物与焚烧底灰分离的玻璃材料的碱性活化,可以合成具有高达70MPa的压缩强度的粘合剂。选择性化学提取,X射线粉末衍射和傅里叶变换红外和固态核磁共振谱啮合,以表征凝胶组合物。结果表明,所得粘合剂主要含有无定形硅酸钠凝胶。核磁共振光谱碎屑显示硅酸钠凝胶具有比焚烧底灰中的前体玻璃材料更高的纳米结构连通性。凝胶的聚合百分比和聚合程度随着活化溶液中的增加而增加。所得到的粘合剂可能用于生产建筑材料和结构混凝土。目前研究的结论具有环境意义,因为它们提供了恢复废物的潜在解决方案,并减轻了对灰烬处理的需求。 (c)2018年elestvier有限公司保留所有权利。

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