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Utilizing acid mine drainage sludge and coal fly ash for phosphate removal from dairy wastewater

机译:利用酸性矿山排水污泥和粉煤灰去除乳品废水中的磷酸盐

摘要

This study aims to investigate a new and sustainable approach for the reuse of industrial by-products from wastewater treatment. The dairy industry produces huge volumes of wastewater, characterized by high levels of phosphate that can result in eutrophication and degradation of aquatic ecosystems. This study evaluated the application of acid mine drainage (AMD) sludge, coal fly ash, and lignite as low-cost adsorbents for the removal of phosphate from dairy wastewater. Material characterization using X-ray fluorescence, X-ray diffraction, and Brunauer-Emmett-Teller surface area analysis revealed significant amounts of crystalline/amorphous Fe/Al/Si/Ca-based minerals and large surface areas of AMD sludge and fly ash. Batch adsorption isotherms were best described using the Freundlich model. The Freundlich distribution coefficients were 13.7 mg0.577 L0.423 g-1 and 16.9 mg0.478 L0.522 g-1 for AMD sludge and fly ash, respectively, and the nonlinearity constants suggested favourable adsorption for column applications. The breakthrough curves of fixed-bed columns, containing greater than 10 wt% of the waste materials (individual or composite blends) mixed with sand, indicated that phosphate breakthrough did not occur within 100 pore volumes while the cumulative removal was 522 and 490 mg kg-1 at 10 wt% AMD sludge and 10 wt% fly ash, respectively. By contrast, lignite exhibited negligible phosphate adsorption, possibly due to small amounts of inorganic minerals suitable for phosphate complexation and limited surface area. The results suggest that both AMD sludge and fly ash were potentially effective adsorbents if employed individually at a ratio of 10 wt% or above for column application.
机译:这项研究旨在研究一种新的,可持续的方法来重复利用废水处理中的工业副产品。乳业产生大量废水,其特点是磷酸盐含量高,可能导致水生生态系统富营养化和退化。这项研究评估了酸性矿山排水(AMD)污泥,粉煤灰和褐煤作为低成本吸附剂从乳品废水中去除磷酸盐的应用。使用X射线荧光,X射线衍射和Brunauer-Emmett-Teller表面积分析进行的材料表征显示,大量的晶体/非晶态Fe / Al / Si / Ca基矿物以及大表面积的AMD污泥和粉煤灰。批次吸附等温线最好使用Freundlich模型描述。对于AMD污泥和粉煤灰,Freundlich的分布系数分别为13.7 mg0.577 L0.423 g-1和16.9 mg0.478 L0.522 g-1,并且非线性常数表明该吸附有利于色谱柱应用。固定床色谱柱的穿透曲线(含有大于10 wt%的废料(单个或复合混合物)与沙子混合)表明,磷酸盐的突破在100孔体积内没有发生,而累积去除量为522和490 mg kg -1在10 wt%AMD污泥和10 wt%粉煤灰下。相反,褐煤显示出可忽略的磷酸盐吸附,这可能是由于少量适于磷酸盐络合的无机矿物和有限的表面积。结果表明,如果以10 wt%或更高的比例单独用于色谱柱应用,则AMD污泥和粉煤灰都是潜在有效的吸附剂。

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