盐生植物
环境科学
盐(化学)
土壤污染
环境化学
污染
锂(药物)
环境保护
环境工程
化学
土壤水分
生态学
生物
盐度
土壤科学
物理化学
内分泌学
作者
Ritsuko Yaokawa,Hiroki Sugimoto,Satoru Kosaka,Takamasa Nonaka,Ritsuko Kitagawa‐Yogo
标识
DOI:10.1021/acs.est.5c03574
摘要
Increasing levels of lithium (Li) contamination, caused by ongoing escalations in Li production, represent a contemporary environmental issue that requires effective resolution. Phytoremediation, in which metals in contaminated soil are accumulated by plants for remediation, is energy- and cost-intensive, as the recovered plants are typically burned with the aim of concentrating the metals. In this study, we propose a Li recovery method that entails harvesting the salts excreted by Li-tolerant halophytes. Acids exuded from the roots of halophytic Rhodes grass can leach Li + ions from soil-borne Li ore, thereby facilitating Li absorption via the roots and subsequent excretion through leaf salt glands. Li concentrations in the salts excreted by Rhodes grass grown in soil containing Li ore (amblygonite) at 200 mg Li kg –1 were 110-fold higher than those in the soil. Efficient recovery of Li from Li-containing soil as excreted salts thus reduces soil contamination and ultimately contributes to a sustainable Li cycle with low environmental impact.
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