Putra Rudy Syah, Wicaksono Wiyogo Prio, Fatimah Is, Tanaka Shunitz
Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Islam Indonesia, Yogyakarta 55584, Indonesia.
Environmental Remediation Research Group, Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Islam Indonesia, Yogyakarta 55584, Indonesia.
Heliyon. 2022 Nov 10;8(11):e11451. doi: 10.1016/j.heliyon.2022.e11451. eCollection 2022 Nov.
The combination of electro-enhanced and hydroponic phytoremediation hereinafter referred to as electro-enhanced phytoremediation (EP) system, has been employed for rapid removal of trace metal concentration of lead (II) from contaminated water using Kentucky bluegrass ( L.) as accumulator plant. In this study, for rapid assessment the effectiveness of two-dimensional (2) electrode configuration in electro-enhanced system was evaluated by agar media for 48h period of time. Furthermore, these configurations were applied to enhance the EP system for 9d period of time. Also, a common agrochemical-urea as chaotropic agent to facilitate the healthy growth of plant in contaminated water was evaluated. The results showed that the accumulation of lead (II) concentration was higher in the plant roots (i.e. high bioaccumulation coefficient (BC) value) than in aerial parts of plant (i.e. low translocation factor (TF) value). Also, the accumulation of lead (II) concentration in plant was higher under the treated urea of EP system. The chlorophyll content, biomass accumulation productivity, and water content (i.e. dry weight-fresh weight (DW/FW) ratio) of plant either under the treated urea or untreated urea with high accumulation of lead (II) concentration revealed that the Kentucky bluegrass has able to hold out the plant stress.
电增强与水培植物修复相结合(以下简称电增强植物修复(EP)系统),已被用于利用草地早熟禾(Poa pratensis L.)作为富集植物,快速去除污染水中痕量金属铅(II)的浓度。在本研究中,为了快速评估电增强系统中二维(2D)电极配置的有效性,通过琼脂培养基在48小时内进行了评估。此外,将这些配置应用于增强EP系统9天。同时,评估了一种常见的农用化学品——尿素作为离液剂,以促进植物在污染水中的健康生长。结果表明,植物根系中铅(II)浓度的积累较高(即生物积累系数(BC)值较高),而地上部分的积累较低(即转运系数(TF)值较低)。此外,在EP系统处理的尿素条件下,植物中铅(II)浓度的积累更高。在铅(II)浓度高积累的情况下,无论是经过尿素处理还是未经过尿素处理,植物的叶绿素含量、生物量积累生产率和含水量(即干重与鲜重(DW/FW)比)表明草地早熟禾能够承受植物胁迫。