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利用浮萍(Pistia stratiotes)开发浮床植物系统(FVS)以去除重金属(Pb、Zn、Cr、Cu、Ni)的实验和建模研究。

Experiments and modeling to develop a Pistia stratiotes based Floating Vegetated System (FVS) for the removal of heavy metals (Pb, Zn, Cr, Cu, Ni).

机构信息

School of Civil Engineering, KIIT University, Bhubaneswar, 751024, Odisha, India.

School of Infrastructure, IIT, Bhubaneswar 752 050, Odisha, India.

出版信息

Sci Total Environ. 2024 May 20;926:171981. doi: 10.1016/j.scitotenv.2024.171981. Epub 2024 Mar 26.

Abstract

Floating Vegetated System (FVS) emerged as a green and sustainable technology, presenting a viable solution for treating heavy metals (HMs) contaminated water without disrupting the food web. Pistia stratiotes has been used in the design of FVS due to its abundance of aerenchyma tissues, which contribute to its ability to remain buoyant. FVS exhibited significant HMs removal efficiencies, with Pb top at average 84.4 %, followed by Zn (81.1 %), Cr (78.5 %), Cu (76.5 %) and Ni (73 %). Bio-concentration Factor (BCF) and Translocation Factor (TF) values evaluated the plant's adeptness in metal uptake. For plants treated with Cu, the highest post-treatment chlorophyll content of 9 ± 1 mg.ml was observed while Zn induced plant shows the lowest content of 7.1 ± 0.4 mg.ml. Using Box-Behnken Design (BBD), the system achieved 81.48 % Pb removal under optimized conditions such as initial Pb conc. of 9.25 mg. l, HRT of 24.49 days and a water depth of 26.52 cm. ANOVA analysis highlighted the significant impact of all the factors such as initial HM conc., HRT and wastewater depth on FVS performance. Kinetic analysis estimated a closer observance to the zero-order model, supported by high determination coefficient (R) values. In conclusion, the FVS, as one of the most eco-friendly technologies, demonstrates higher potential for treating polluted water bodies, offering a sustainable remedy to global metal pollution challenges. Research on FVS for HMs removal is an area of ongoing interest and there are several potential future studies that could be pursued to further understand and optimize their effectiveness such as optimization of plant species, enhancement of plant-metal interactions, effects of environmental factors, economic feasibility studies, disposal of heavy metals accumulated plant, scale-up and application in real-world settings, etc.

摘要

浮叶植物系统 (FVS) 作为一种绿色可持续技术出现,为处理重金属 (HM) 污染水而不破坏食物网提供了可行的解决方案。由于具有丰富的通气组织,水蕹菜被用于 FVS 的设计,这有助于其保持浮力。FVS 表现出显著的 HM 去除效率,其中 Pb 的平均去除率最高为 84.4%,其次是 Zn(81.1%)、Cr(78.5%)、Cu(76.5%)和 Ni(73%)。生物浓缩因子 (BCF) 和迁移因子 (TF) 值评估了植物对金属吸收的能力。对于用 Cu 处理的植物,观察到最高的叶绿素含量为 9 ± 1 mg.ml,而 Zn 诱导的植物显示出最低的叶绿素含量 7.1 ± 0.4 mg.ml。使用 Box-Behnken 设计 (BBD),在优化条件下,系统实现了 81.48%的 Pb 去除,优化条件为初始 Pb 浓度为 9.25 mg.l、HRT 为 24.49 天和水深为 26.52 cm。方差分析强调了所有因素(如初始 HM 浓度、HRT 和废水深度)对 FVS 性能的显著影响。动力学分析估计更接近零级模型,支持高决定系数 (R) 值。总之,FVS 作为最环保的技术之一,对处理受污染水体具有更高的潜力,为全球金属污染挑战提供了可持续的解决方案。FVS 去除 HM 的研究是一个持续关注的领域,有几个潜在的未来研究可以进一步探讨,以进一步理解和优化其有效性,例如优化植物物种、增强植物-金属相互作用、环境因素的影响、经济可行性研究、重金属积累植物的处理、放大和实际应用等。

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