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Influence of waste glass in the foaming process of open cell porous ceramic as filtration media for industrial wastewater

机译:废玻璃对开放式电池多孔陶瓷发泡过程的影响作为工业废水过滤介质

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摘要

This paper reports the development and testing results of a prototype ceramic filter with excellent sorption properties (99% elimination in 5 min) leading to good efficacy in the removal of industrial contaminants (Reactive Bezaktiv Turquoise Blue V-G (BTB) dye). The novelty in the investigation lies in developing the filter material obtained from the recycling of waste glass combined with highly porous open-cell clay material. This newly developed material showed a significant reduction in the energy requirements (sintering temperature required for the production of industrial filters) thus addressing the grand challenge of sustainable and cleaner manufacturing. The methodology entails sintering of the clay foam (CF) at temperatures ranging from 800 to 1050 degrees C and blending it with 5%, 7% and 10 wt% milled glass cullet. One of the aims of this investigation was to evaluate and analyse the effect of the pH of the solution, contact time and equilibrium isotherm on the sorption process and the mechanical compressive strength, porosity, water uptake. From the kinetic studies, it was discovered that the experimental results were well aligned with the pseudo-second-order model and chemisorption was discovered to be a mechanism driving the adsorption process. These findings are crucial in designing cost-effective industrial filtration system since the filter material being proposed in this work is reusable, recyclable and readily available in abundance. Overall, the pathway for the reuse of waste glass shown by this work help address the sustainability targets set by the UN Charter via SDG 6 and SDG 12. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文报告了原型陶瓷过滤器的开发和测试结果,具有优异的吸附性能(5分钟的8分钟),导致工业污染物的去除性良好疗效(反应性Bezaktiv绿松石蓝色V-G(BTB)染料)。调查中的新颖性在于开发从废玻璃的再循环与高度多孔的开孔粘土材料中获得的过滤材料。这种新开发的材料表明,能量要求(生产工业过滤器所需的烧结温度)显着降低,从而解决了可持续和清洁制造业的大挑战。该方法需要在800至1050℃的温度下烧结粘土泡沫(CF),并将其与5%,7%和10wt%研磨的玻璃Cullet混合。该调查的一个目的是评估和分析溶液pH值,接触时间和平衡等温线对吸附过程和机械抗压强度,孔隙率,水吸收的影响。从动力学研究中,发现实验结果与伪二阶模型很好地对准,并发现化学吸附是驱动吸附过程的机制。这些发现对于设计具有成本效益的工业过滤系统来说至关重要,因为在这项工作中提出的过滤材料是可重复使用的,可回收的,并且容易获得丰富。总的来说,这项工作所示的废物玻璃的途径有助于通过SDG 6和SDG 12帮助讲述UN宪章所设定的可持续发展目标。(c)2020 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2021年第1期|124546.1-124546.11|共11页
  • 作者单位

    Riga Tech Univ Inst Gen Chem Engn Fac Mat Sci & Appl Chem Rudolfs Cimdins Riga Biomat Innovat & Dev Ctr RTU Pulka 3 LV-1007 Riga Latvia;

    Univ Ahmed Draia Fac Sci & Technol Dept Sci Nat & La Vie Lab Ressources Nat Sahariennes Adrar 01000 Algeria;

    London South Bank Univ Sch Engn London SE1 0AA England|Cranfield Univ Sch Aerosp Transport & Mfg Cranfield MK43 0AL Beds England;

    Riga Tech Univ Inst Gen Chem Engn Fac Mat Sci & Appl Chem Rudolfs Cimdins Riga Biomat Innovat & Dev Ctr RTU Pulka 3 LV-1007 Riga Latvia;

    Univ East London Sustainabil Res Inst London E16 2RD England;

    Riga Tech Univ Inst Gen Chem Engn Fac Mat Sci & Appl Chem Rudolfs Cimdins Riga Biomat Innovat & Dev Ctr RTU Pulka 3 LV-1007 Riga Latvia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ceramic clay foam; Open cell; Sorption capacity; Textile dye; Isotherm;

    机译:陶瓷粘土泡沫;开孔;吸附能力;纺织染料;等温线;
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