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生物炭纳米复合材料增强垂直流人工湿地(VF-CWs)中 Actas Pink-2B 染料的去除。

Actas Pink-2B dye removal in biochar nanocomposites augmented vertical flow constructed wetland (VF-CWs).

机构信息

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

Department of Physics, Government College Women University, Faisalabad, Pakistan.

出版信息

Int J Phytoremediation. 2024;26(9):1392-1409. doi: 10.1080/15226514.2024.2324360. Epub 2024 Mar 5.

Abstract

Industries generate hazardous dye wastewater, posing significant threats to public health and the environment. Removing dyes before discharge is crucial. The ongoing study primarily focused on synthesizing, applying, and understanding the mechanism of green nano-biochar composites. These composites, including zinc oxide/biochar, copper oxide/biochar, magnesium oxide/biochar, and manganese oxide/biochar, are designed to effectively remove Actas Pink-2B (Direct Red-31) in conjunction with constructed wetlands. Constructed wetland maintained pH 6.0-7.9. At the 10th week, the copper oxide/biochar treatment demonstrated the highest removal efficiency of total suspended solids (72%), dissolved oxygen (7.2 mg/L), and total dissolved solids (79.90%), followed by other biochar composites. The maximum removal efficiency for chemical oxygen demand (COD) and color was observed at a retention time of 60 days. The electrical conductivity also followed the same order, with a decrease observed up to the 8th week before becoming constant. A comprehensive statistical analysis was conducted, encompassing various techniques including variance analysis, regression analysis, correlation analysis, and principal component analysis. The rate of color and COD removal followed a second-order and first-order kinetics, respectively. A significant negative relationship was observed between dissolved oxygen and COD. The study indicates that employing biochar composites in constructed wetlands improves textile dye removal efficiency.

摘要

工业生产会产生有害的染料废水,对公众健康和环境构成重大威胁。在排放之前去除染料至关重要。正在进行的研究主要集中在合成、应用和理解绿色纳米生物炭复合材料的机制上。这些复合材料包括氧化锌/生物炭、氧化铜/生物炭、氧化镁/生物炭和氧化锰/生物炭,旨在与人工湿地一起有效去除 Actas Pink-2B(直接红 31)。人工湿地的 pH 值保持在 6.0-7.9。在第 10 周时,氧化铜/生物炭处理对总悬浮固体(TSS)的去除效率最高(72%),溶解氧(7.2mg/L)和总溶解固体(79.90%),其次是其他生物炭复合材料。在 60 天的停留时间内,对化学需氧量(COD)和颜色的去除效率达到最高。电导率也遵循相同的顺序,直到第 8 周才开始下降并保持稳定。进行了全面的统计分析,包括方差分析、回归分析、相关分析和主成分分析等各种技术。颜色和 COD 的去除速率分别遵循二级和一级动力学。溶解氧和 COD 之间存在显著的负相关关系。该研究表明,在人工湿地中使用生物炭复合材料可以提高纺织染料的去除效率。

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