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Waste Minimization Protocols for the Process of Synthesizing Zeolites from South African Coal Fly Ash

机译:南非粉煤灰合成沸石过程中的废物最小化方案

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摘要

Production of a high value zeolite from fly ash has been shown to be an avenue for the utilization of South African fly ash which presently constitutes a huge disposal problem. The synthesis of zeolites Na-P1 and analcime on a micro-scale has been successful and preliminary investigation shows that scale-up synthesis is promising. However, the post-synthesis supernatant waste generated contains high levels of NaOH that may constitute a secondary disposal problem. A waste minimization protocol was developed to reduce the volume of waste generated with a view to enhancing the feasibility of the scale synthesis. Series of experiments were conducted in 100 mL jacketed batch reactors. Fly ash was reacted with 5 Mol NaOH on a 1:1 mass basis during the aging step, followed by hydrothermal treatment in which ultrapure water was added to the slurry. This study shows that by re-introducing the supernatant waste into the experiments in such a way that it supplies the required reagent (NaOH) for the zeolite synthesis, zeolite Na-P1 and analcime can be synthesized. It also shows that the synthesis process can be altered to allow up to 100% re-use of the supernatant waste to yield high value zeolitic products. This study effectively constructed two protocols for the minimization of waste generated during the synthesis of zeolites from South African coal fly ash. This result could be used to establish a basis for legal and environmental aspects involved in the commission of a full-scale plant synthesizing zeolites NaP1 and analcime.
机译:由粉煤灰生产高价值的沸石已被证明是利用南非粉煤灰的途径,该粉煤灰目前构成了巨大的处置问题。 Na-P1分子筛和Analcime分子筛的合成已经成功,初步研究表明按比例放大的合成很有希望。然而,合成后产生的上清液废料含有高含量的NaOH,这可能构成二次处置问题。为了增加规模合成的可行性,开发了废物最小化方案以减少产生的废物量。系列实验在100 mL夹套间歇反应器中进行。在老化步骤中,使粉煤灰与5摩尔NaOH以1:1的质量比进行反应,然后进行水热处理,其中将超纯水添加到浆料中。这项研究表明,通过将上清液废料重新引入实验中,以使其提供合成沸石所需的试剂(NaOH),可以合成Na-P1沸石和Analcime。它还表明,可以改变合成工艺,以允许最多100%重复使用上清液废物,以生产高价值的沸石产品。这项研究有效地构建了两个协议,以最小化由南非粉煤灰合成沸石过程中产生的废物。该结果可用于为法律和环境方面的基础建立参与大规模工厂合成NaP1和Analcime沸石的合成。

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