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生物-有机稳定剂显示出在稳定污染农田土壤中的镉方面的广阔前景。

Bio-organic stabilizing agent shows promising prospect for the stabilization of cadmium in contaminated farmland soil.

机构信息

State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan, 430070, China.

Hubei Key Laboratory of Soil Environment and Pollution Remediation, Huazhong Agricultural University, Wuhan, 430070, China.

出版信息

Environ Sci Pollut Res Int. 2019 Aug;26(23):23399-23406. doi: 10.1007/s11356-019-05619-8. Epub 2019 Jun 14.

Abstract

In situ immobilization of cadmium (Cd) has been considered as a cost-effective and non-disruptive remediation technique for Cd-contaminated soils. In this study, several immobilization approaches were compared in a Cd-contaminated agricultural farmland. The soil was treated with different combinations of the immobilizing agents such as biochar (C), rice straw (RS), lime (L), and engineered bacteria P. putida X4/pIME (B). The plant yield and Cd uptake of lettuce as well as soil Cd fractionations were measured. The Cd content in lettuce leaves and roots decreased by 46.867.2% and 36.860.2%, respectively. Among the five treatments, combined rice straw, lime, and engineered bacteria treatment showed the lowest Cd concentration in lettuce leaves (0.14 mg/kg) and the highest plant yield (21.5 t/ha). The alleviating effects are assigned to the significant transformation of water soluble and exchangeable Cd to humic substance bound, strong organic bound and residual Cd in the soils. This study suggests that this bio-organic stabilizing agent is more cost-effective than some other immobilization agents reported previously, and shows a great application prospect in improving agriculture production of heavy metal-polluted agricultural soils.

摘要

原位固定化镉(Cd)被认为是一种经济有效的、非破坏的修复技术,可用于修复 Cd 污染土壤。本研究比较了几种固定化方法在 Cd 污染农田中的应用。土壤分别用不同组合的固定化剂进行处理,如生物炭(C)、稻草(RS)、石灰(L)和工程菌 P. putida X4/pIME(B)。测定了生菜的产量和 Cd 吸收以及土壤 Cd 形态。生菜叶片和根系中的 Cd 含量分别降低了 46.8%67.2%和 36.8%60.2%。在五种处理中,稻草、石灰和工程菌联合处理的生菜叶片 Cd 浓度最低(0.14mg/kg),植物产量最高(21.5t/ha)。这种缓解效果归因于土壤中水溶性和可交换态 Cd 向腐殖质结合态、强有机结合态和残渣态 Cd 的显著转化。本研究表明,与以前报道的一些固定化剂相比,这种生物有机稳定剂更具成本效益,在提高重金属污染农田的农业生产方面具有广阔的应用前景。

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