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解磷菌不会显著重新移动风化煤修复的土壤中的镉。

Phosphate-solubilizing bacteria will not significantly remobilize soil cadmium remediated by weathered coal.

机构信息

School of Environment, Key Laboratory of Environmental Pollution and Health of Guangdong Province, Jinan University, Guangzhou, 510632, China.

出版信息

Environ Sci Pollut Res Int. 2019 Oct;26(28):29003-29011. doi: 10.1007/s11356-019-06142-6. Epub 2019 Aug 6.

Abstract

Cadmium (Cd) re-mobilize by phosphate-solubilizing bacteria (PSB) from immobilization contaminated soil has drawn great attention due to its serious threat to human health through food chain. However, Cd binding with weathered coal (WC), an effective Cd immobilization material, will be re-mobilized by PSB or not is still unclear. In this study, the soil and sand pots with Cd were respectively mixed with the weight fractions of 0‰, 2‰, and 3‰ WC, inoculated with or without PSB, and planted with Amaranthus mangostanus L. The experimental results indicated that: (i) Cd in soil was transformed into organic fraction with WC, which has been led to the Cd accumulation concentrations in roots and shoots reduced by 38.8% and 20.5%, respectively; (ii) PSB could promote the concentration of exchangeable-Cd fraction and soil Cd uptake by amaranth in all treatments; and (iii) WC application in sand pot respectively reduced the Cd accumulation by 47.5% in roots and 24.1% in shoots, but PSB inoculation showed no significant effect on Cd accumulation in plants under WC application. SEM, zeta potential, and FT-IR results showed that PSB inoculation after Cd immobilized by WC had no influence on the microstructure, amount of negative charge, type, and content of functional groups in WC, indicating that organic fraction Cd in WC was not re-mobilized by PSB. Therefore, the application of WC in contaminated soil was conducive to transforming Cd in organic-bound forms and intensifying Cd immobilization effects.

摘要

由于镉(Cd)通过土壤中解磷细菌(PSB)的重新释放,通过食物链对人类健康造成严重威胁,因此从固定污染土壤中重新释放的磷细菌(PSB)引起了极大关注。然而,PSB 是否会重新释放与风化煤(WC)结合的 Cd,而风化煤是一种有效的 Cd 固定材料,目前尚不清楚。在这项研究中,分别将含有 Cd 的土壤和沙盆与 0‰、2‰和 3‰的 WC 重量分数混合,接种或不接种 PSB,并种植了红苋菜。实验结果表明:(i)WC 将土壤中的 Cd 转化为有机态,导致根和地上部 Cd 积累浓度分别降低了 38.8%和 20.5%;(ii)PSB 可以促进所有处理中可交换态 Cd 分数和苋菜对土壤 Cd 的吸收;(iii)WC 在沙盆中的应用分别使根中 Cd 积累减少了 47.5%,地上部减少了 24.1%,但 PSB 接种对 WC 应用下植物中 Cd 积累没有显著影响。SEM、ζ 电位和 FT-IR 结果表明,WC 固定 Cd 后接种 PSB 对 WC 的微观结构、带电量、官能团类型和含量没有影响,表明 WC 中有机结合态的 Cd 没有被 PSB 重新释放。因此,WC 在污染土壤中的应用有利于将 Cd 转化为有机结合态,并增强 Cd 的固定效果。

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