Application of aqueous extracts of Alternanthera brasiliana, Chromolaena odorata and Tridax procumbens plants in remediating lead contaminated soils

E. U. Etim, A. E. Ayejuone
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Abstract

Soil washing is an effective method of removing lead from contaminated soils. However, great limitations abound in the choice of washing solution that is ecologically sustainable for agricultural soils. In this study, applications of plant soluble extracts in remediating of Pb contaminated soils for ecological sustainability were carried out. Batch laboratory experiments were done using aqueous extracts of Alternanthera brasiliana, Chromolaena odorata, Tridax procumbens and water as control at varying soil-pulp-densities (SPD) of 3, 6, 9, 12, 15%, and washing time of 1, 3, 6, 12 h. For contaminated soil, percentage removal efficiency followed the order: Alternanthera brasiliana (38.1±0.28%) > Chromolaena odorata (21.8±0.12%) > Tridax procumbens (21.3±0.18%). The most appropriate ratio for contaminated soil was 3% SPD at 12 h washing time. Removal efficiency was found to be substantially depended on geochemical phase of Pb (exchangeable-4.04%) in contaminated soil and washing solution pH (5.68). Lead removal efficiency was observed to increased proportionally with increasing washing time, but decreased with increasing SPD. Spike soil with high exchangeable Pb-78.9% recorded significant Pb removal of 63.4±0.24% with Alternanthera brasiliana, 47.8±0.22% with Chromolaena odorata, 38.3±0.38% with Tridax procumbens and 52.0±0.26% with water. Analysis of variance at p=0.05 indicated a significant difference inpercentage Pb removal efficiency across all the four washing solutions. However, the statistical T-test indicated no significant difference at p=0.05 in percentage Pb removal efficiency between both soils. Also, moderately positive correlations were observed between contaminated and spiked soils for Alternanthera brasiliana (0.676), Chromolaena odorata (0.570) and Tridax procumbens (0.517) while negative correlation observed for water (0.485) which served as the control. The three plant extracts exhibited good potential characteristics as washing solutions for the treatment of Pb contaminated soils. Chemical modifications are recommended to enhance and improve their efficiencies when considering the geochemical phase of Pb in soil.
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水提取物在铅污染土壤修复中的应用
土壤清洗是去除受污染土壤中铅的有效方法。然而,在选择对农业土壤具有生态可持续性的洗涤溶液方面存在很大的局限性。本研究采用植物可溶性提取物修复铅污染土壤,以实现生态可持续性。在不同的土壤-纸浆-密度(SPD)(3、6、9、12、15%)和清洗时间(1、3、6、12 小时)下,使用巴西红豆杉(Alternanthera brasiliana)、异色菊(Chromolaena odorata)、三七(Tridax procumbens)的水提取物和水作为对照,进行了批量实验室实验:Alternanthera brasiliana(38.1±0.28%)> Chromolaena odorata(21.8±0.12%)> Tridax procumbens(21.3±0.18%)。在 12 小时的洗涤时间内,最适合污染土壤的比例为 3% SPD。去除效率主要取决于污染土壤中铅的地球化学相(可交换-4.04%)和洗涤溶液的 pH 值(5.68)。随着洗涤时间的增加,铅的去除率也成比例地增加,但随着 SPD 的增加,去除率下降。高可交换铅-78.9%的穗状土壤对铅的去除率分别为 Alternanthera brasiliana(63.4±0.24%)、Chromolaena odorata(47.8±0.22%)、Tridax procumbens(38.3±0.38%)和水(52.0±0.26%)。p=0.05 的方差分析表明,四种洗涤液的铅去除率存在显著差异。然而,统计 T 检验表明,在 p=0.05 的条件下,两种土壤的铅去除率百分比没有显著差异。此外,在受污染土壤和加标土壤之间观察到 Alternanthera brasiliana(0.676)、Chromolaena odorata(0.570)和 Tridax procumbens(0.517)呈中度正相关,而作为对照的水(0.485)呈负相关。作为处理铅污染土壤的洗涤溶液,这三种植物提取物表现出良好的潜在特性。考虑到土壤中铅的地球化学阶段,建议对其进行化学修饰,以提高和改善其效率。
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