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联合使用碱性钝化剂和有机肥对镉污染土壤中小白菜的原位毒性降低及食品安全评估

In Situ Toxicity Reduction and Food Safety Assessment of Pak Choi ( L.) in Cadmium-Contaminated Soil by Jointly Using Alkaline Passivators and Organic Fertilizer.

作者信息

Jiao Wei, Li Zhi, Li Ruiping, Guo Jiafeng, Hou Xiaoshu, Zhang Xi, Wang Fangli

机构信息

Shandong Provincial Key Laboratory of Water and Soil Conservation and Environmental Protection, College of Resources and Environment, Linyi University, Linyi 276000, China.

School of Resources and Environment, Qingdao Agricultural University, Qingdao 266109, China.

出版信息

Toxics. 2023 Sep 29;11(10):824. doi: 10.3390/toxics11100824.

Abstract

An economical and effective method is still lacking for cadmium (Cd) toxicity reduction and food product safety improvement in soil-vegetable systems. Therefore, this study aimed to reduce the Cd toxicity to pak choi ( L.) by jointly using passivators and organic fertilizer, highlighting food products' safety based on pot experiments. The results showed that compared with the control, organic fertilizer decreased the Cd content in edible parts and the soil's available Cd by 48.4% and 20.9% on average, respectively, due to the 0.15-unit increases in soil pH. Once jointly applied with passivators, the decrements increased by 52.3-72.6% and 32.5-52.6% for the Cd content in edible parts and for the soil's available Cd, respectively, while the pH increment increased by 0.15-0.46 units. Compared with the control, the transport factor of Cd was reduced by 61.9% and 50.9-55.0% when applying organic fertilizer alone and together with the passivators, respectively. The combination treatment of biochar and organic fertilizer performed the best in decreasing the Cd content in the edible parts and the soil's available Cd. The combination treatment of fish bone meal and organic fertilizer induced the greatest increases in soil pH. The grey relational analysis results showed that the combination treatment of biochar and organic fertilizer performed the best in reducing the potential Cd pollution risk, thereby highlighting the vegetable food safety. This study provides a potential economical and effective technology for toxicity reduction and food safety in Cd-polluted soil.

摘要

在土壤-蔬菜系统中,仍缺乏一种经济有效的方法来降低镉(Cd)毒性并提高食品安全性。因此,本研究旨在通过联合使用钝化剂和有机肥来降低镉对小白菜(L.)的毒性,并基于盆栽试验突出食品的安全性。结果表明,与对照相比,由于土壤pH值平均增加0.15个单位,有机肥使可食用部分的镉含量和土壤有效镉含量分别平均降低了48.4%和20.9%。一旦与钝化剂联合使用,可食用部分的镉含量和土壤有效镉含量的降低幅度分别增加了52.3%-72.6%和32.5%-52.6%,而pH值的增加幅度增加了0.15-0.46个单位。与对照相比,单独施用有机肥和与钝化剂一起施用时,镉的转运系数分别降低了61.9%和50.9%-55.0%。生物炭与有机肥的组合处理在降低可食用部分的镉含量和土壤有效镉含量方面表现最佳。鱼骨粉与有机肥的组合处理使土壤pH值升高幅度最大。灰色关联分析结果表明,生物炭与有机肥的组合处理在降低潜在镉污染风险方面表现最佳,从而突出了蔬菜食品安全。本研究为镉污染土壤的毒性降低和食品安全提供了一种潜在的经济有效技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5329/10610932/062e357f2422/toxics-11-00824-g001.jpg

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