a Soil and Environmental Sciences Division, Nuclear Institute for Agriculture and Biology (NIAB) , Faisalabad , Pakistan.
Int J Phytoremediation. 2019;21(10):1012-1018. doi: 10.1080/15226514.2019.1594683. Epub 2019 Apr 24.
Phytoremediation of heavy metal contaminated soils represents a promising technique and salt-tolerant hyperaccumulators for multiple metals are the need of time. Therefore, phytoremediation potential of four salt-tolerant grass species [Dhab (), Kallar (), Para () and Sporobolus ()] was evaluated for cadmium (Cd) and lead (Pb) in a hydroponic study. The plants were harvested after a growth period of 3 months in a nutrient solution containing different levels of Cd (0, 5, and 25 mg L) and Pb (0, 25, and 125 mg L). Results indicated that Dhab grass showed the highest root and shoot dry matter yield followed by Para, Kallar and grass irrespective of metal or its level under which they were grown. All the grass species showed considerable Cd-accumulating potential with an accumulation of >150 mg kgof shoot dry matter at a higher level of Cd-contamination (25 mg L). While in case of shoot Pb-accumulation only Para grass performed well and accumulated Pb >1000 mg kg of shoot dry matter at the higher level of Pb-contamination (125 mg L). Moreover, Para and Dhab grasses performed better for shoot Cd-uptake, while only Para grass showed promising shoot Pb uptake potential. In conclusion, these grass species could be penitentially used for phytoremediation of salt-affected Cd and Pb contaminated soils.
利用耐盐超富集植物修复重金属污染土壤是一种很有前途的技术,而寻找能够同时耐受多种重金属的植物则是当务之急。因此,本研究采用水培试验,评估了 4 种耐盐草本植物(Dhab、Kallar、Para 和 Sporobolus)对镉(Cd)和铅(Pb)的修复潜力。在含有不同浓度 Cd(0、5 和 25mg/L)和 Pb(0、25 和 125mg/L)的营养液中,这些植物经过 3 个月的生长后被收获。结果表明,无论金属种类及其浓度如何,Dhab 草的根和地上部干物质产量最高,其次是 Para、Kallar 和 Sporobolus 草。所有草种都具有相当高的 Cd 积累潜力,在较高 Cd 污染水平(25mg/L)下,地上部干物质的 Cd 积累量超过 150mg/kg。而在地上部 Pb 积累方面,只有 Para 草表现良好,在较高 Pb 污染水平(125mg/L)下,地上部干物质的 Pb 积累量超过 1000mg/kg。此外,Para 和 Dhab 草对地上部 Cd 的吸收表现较好,而只有 Para 草对地上部 Pb 的吸收表现出较好的潜力。综上所述,这些草本植物可能具有在盐渍化土壤中同时修复 Cd 和 Pb 污染的潜力。