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利用地下构建湿地种植 和 对集约化家禽和水产养殖废水进行植物修复。

Phytoremediation of an integrated poultry and aquaculture wastewater using sub-surface constructed wetland planted with and .

机构信息

Department of Agricultural and Biosystems Engineering, Federal University of Agriculture, Abeokuta, Ogun State, Nigeria.

Department of Agriculture and Natural Resources, Ondo State Local Government Service Commission, Akure, Ondo State, Nigeria.

出版信息

Int J Phytoremediation. 2024 May;26(7):1133-1143. doi: 10.1080/15226514.2023.2294485. Epub 2023 Dec 23.

Abstract

This study focused on assessing the effectiveness of vertical subsurface constructed wetlands (VSFCW) in purifying integrated poultry and aquaculture wastewater (PAW) in a tropical region. This evaluation encompassed the treatment of physico-chemical, heavy metal, and microbiological pollutants across three distinct climatic seasons and hydraulic retention time (HRT: 21 days). Parameters such as BOD (29.50 mg/L), COD (56.67 mg/L), Zn (2.97 mg/L), Cr (0.24 mg/L), Cu (1.78 mg/L), Pb (0.21 mg/L), total fecal coliform (866.67 cfu/mL), total coliform (1666.67 cfu/mL), (1133.33 cfu/mL), and (700 cfu/mL) exceeded the discharge limits for wastewater into nearby surface water bodies. Significant removal efficiencies were observed for all parameters tested in the CW planted with both and . The macrophytes showed similar removal efficiencies for all tested parameters, and there was no significant difference in the initial concentrations of the parameters based on the experimental season, except for microbial properties. This suggests that weather conditions did not significantly impact the concentration of physical and chemical properties in the wastewater. Consequently, this study successfully demonstrates the potential of using a VSFCW for effective treatment of PAW.

摘要

本研究旨在评估垂直潜流人工湿地(VSFCW)在热带地区净化综合禽畜养殖废水(PAW)的效果。该评估涵盖了三个不同气候季节和水力停留时间(HRT:21 天)下的物理化学、重金属和微生物污染物的处理。BOD(29.50mg/L)、COD(56.67mg/L)、Zn(2.97mg/L)、Cr(0.24mg/L)、Cu(1.78mg/L)、Pb(0.21mg/L)、总粪大肠菌群(866.67cfu/mL)、总大肠菌群(1666.67cfu/mL)、(1133.33cfu/mL)和(700cfu/mL)等参数均超过了排入附近地表水的废水排放标准。在 CW 中种植 和 时,所有测试参数均表现出显著的去除效率。大型植物对所有测试参数的去除效率相似,并且除了微生物特性外,实验季节对参数的初始浓度没有显著差异。这表明天气条件对废水中物理和化学性质的浓度没有显著影响。因此,本研究成功地证明了使用 VSFCW 有效处理 PAW 的潜力。

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