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绿色金属氧化物包覆生物炭纳米复合材料的制备及其在垂直流人工湿地中用于去除反应性染料的应用:性能和动力学研究。

Green metal oxides coated biochar nanocomposites preparation and its utilization in vertical flow constructed wetlands for reactive dye removal: Performance and kinetics studies.

机构信息

Department of Chemistry, University of Agriculture, Faisalabad 38000, Pakistan.

Department of Physics, University of Agriculture, Faisalabad 38000, Pakistan.

出版信息

J Contam Hydrol. 2023 May;256:104167. doi: 10.1016/j.jconhyd.2023.104167. Epub 2023 Mar 1.

Abstract

Major causes of water pollution in the ecosystem are pollutants such as dyes which are noxious. The present study was based on the synthesis of the green nano-biochar composites from cornstalk and green metal oxide resulting in Copper oxide/biochar, Zinc oxide /biochar, Magnesium oxide/biochar, Manganese oxide/biochar, biochar for removal of dyes combined with the constructed wetland (CW). Biochar Augmentation in constructed wetland systems has improved dye removal efficiency to 95% in order of copper oxide/biochar > Magnesium oxide/biochar > Zinc oxide/biochar > Manganese oxide/biochar > biochar > control (without biochar) respectively in wetlands. It has increased the efficiency of pH by maintaining pH 6.9-7.4, while Total Suspended Solids (TSS) removal efficiency and Dissolved oxygen (DO) increased with the hydraulic retention time of about 7 days for 10 weeks. Chemical oxygen demand (COD) and colour removal efficiency increased with the hydraulic retention time of 12 days for 2 months and there was a low removal efficiency for total dissolved solids (TDS) from control (10.11%) to Copper oxide /biochar (64.44%) and Electrical conductivity (EC) from control (8%) to Copper oxide /biochar (68%) with the hydraulic retention time of about 7 days for 10 weeks. Colour and chemical oxygen demand removal kinetics followed second and first-order kinetic. A significant growth in the plants were also observed. These results proposed the use of agricultural waste-based biochar as part of a constructed wetland substratum can provide enhanced removal of textile dyes. That can be reused.

摘要

生态系统中水污染的主要原因是染料等有害物质。本研究基于玉米秸秆和绿色金属氧化物合成绿色纳米生物炭复合材料,得到氧化铜/生物炭、氧化锌/生物炭、氧化镁/生物炭、氧化锰/生物炭、生物炭,用于去除染料,并与构建的湿地(CW)相结合。生物炭在构建湿地系统中的增强作用提高了染料去除效率,在湿地中,氧化铜/生物炭>氧化镁/生物炭>氧化锌/生物炭>氧化锰/生物炭>生物炭>对照(无生物炭)的顺序分别达到 95%。它通过维持 pH 值 6.9-7.4 来提高 pH 值的效率,同时总悬浮固体(TSS)去除效率和溶解氧(DO)随着水力停留时间的增加而增加,大约为 10 周的 7 天。化学需氧量(COD)和颜色去除效率随着水力停留时间的增加而增加,2 个月的 12 天,总溶解固体(TDS)的去除效率从对照(10.11%)到氧化铜/生物炭(64.44%)和电导率(EC)从对照(8%)到氧化铜/生物炭(68%)随着水力停留时间的增加而增加,10 周的 7 天左右。颜色和化学需氧量去除动力学遵循二级和一级动力学。还观察到植物的显著生长。这些结果表明,使用农业废物基生物炭作为构建湿地基质的一部分,可以提供增强的纺织染料去除效果。可以重复使用。

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