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铁改性生物炭和硅溶胶联合控制稻田砷镉污染的研究

A paddy field study of arsenic and cadmium pollution control by using iron-modified biochar and silica sol together.

机构信息

College of Natural Resources and Environment, South China Agricultural University, Guangzhou, 510642, People's Republic of China.

Guangdong Institute of Eco-Environmental Science and Technology, Guangzhou, 510650, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2019 Aug;26(24):24979-24987. doi: 10.1007/s11356-019-05381-x. Epub 2019 Jun 26.

Abstract

Under flooded conditions in paddy soil, the mobility of As increases while the mobility of Cd decreases. The opposite geochemical behavior of As and Cd makes it difficult to reduce their mobilities simultaneously. Our recent study found that combined applications of biochar and zero-valent iron successfully reduced the mobilities of As and Cd simultaneously. On this basis, in the present study, an iron-modified biochar (Fe-BC) was developed, and its effect on decreasing the accumulations of As and Cd in rice was verified in a 2-year field trial. In addition, previous studies indicated that silicon fertilizer can also reduce As and Cd accumulation in rice grain. Hence, the effect of the combined or separate application of Fe-BC and silica sol on As and Cd accumulation in rice grain was investigated. Over the 2-year field trial, the grain yields decreased in the following order: iron-modified biochar plus silica sol (Fe-BC plus Si) > silica sol (Si) > Fe-BC > control (CK). Concentrations of As and Cd in brown rice were in the order: Fe-BC plus Si < Si ≈ Fe-BC < CK. The treatments of Fe-BC and Fe-BC plus Si significantly increased the soil pH and thus decreased available As and available Cd in the soil. In addition, significantly positive correlations between available As and As in brown rice and between available Cd and Cd in brown rice were found. In conclusion, co-application of iron-modified biochar and silica sol should be a recommended strategy to reduce the accumulation of As and Cd in rice grains.

摘要

在稻田淹水条件下,砷的迁移性增加,而镉的迁移性降低。砷和镉的这种相反的地球化学行为使得同时降低它们的迁移性变得困难。我们最近的研究发现,生物炭和零价铁的联合应用成功地同时降低了砷和镉的迁移性。在此基础上,本研究开发了一种铁改性生物炭(Fe-BC),并在为期两年的田间试验中验证了其降低水稻砷和镉积累的效果。此外,先前的研究表明,硅肥也可以降低水稻籽粒中砷和镉的积累。因此,研究了 Fe-BC 和硅溶胶的联合或单独应用对水稻籽粒中砷和镉积累的影响。在为期两年的田间试验中,稻谷产量的降低顺序为:铁改性生物炭加硅溶胶(Fe-BC 加 Si)>硅溶胶(Si)>铁改性生物炭(Fe-BC)>对照(CK)。糙米中砷和镉的浓度顺序为:Fe-BC 加 Si<Si≈Fe-BC<CK。Fe-BC 和 Fe-BC 加 Si 的处理显著提高了土壤 pH 值,从而降低了土壤中有效砷和有效镉的含量。此外,还发现糙米中有效砷与砷和有效镉与镉之间存在显著正相关。总之,铁改性生物炭和硅溶胶的联合应用应该是一种推荐的策略,可以降低水稻籽粒中砷和镉的积累。

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