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腐殖酸类改良剂的添加和老化对土壤溶液中 Cd 溶解度及其在水稻中积累的影响。

Effects of the addition and aging of humic acid-based amendments on the solubility of Cd in soil solution and its accumulation in rice.

机构信息

Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, Key Laboratory of Plant-Soil Interactions of the Ministry of Education, China Agricultural University, Beijing 100193, People's Republic of China.

Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, Key Laboratory of Plant-Soil Interactions of the Ministry of Education, China Agricultural University, Beijing 100193, People's Republic of China.

出版信息

Chemosphere. 2018 Apr;196:303-310. doi: 10.1016/j.chemosphere.2018.01.002. Epub 2018 Jan 2.

Abstract

Humic substances can reduce mobility and bio-accessibility of Cd in soil and therefore inhibit its uptake by rice, which is a major source of human Cd intake. Yet, the effects of aging humic substances are not fully understood. A rice pot experiment was conducted to evaluate the effects of humic acid-based amendments on the mobility of Cd in soil solution and its uptake by rice when amendments were freshly added or aged for 130 d. The results showed that the aged and the unaged amendments generally decreased Cd concentration in soil solution, but the effect declined with time. Unaged HA-K (humic-potassium) reduced Cd concentration by 88% for the first sampling, but this dropped to 46% for the last sampling, compared to that of the control. All amendments, whether aged or not, reduced the content of Cd in rice seedlings, as well as in mature plants. Aged and unaged woody peat reduced the Cd content in seedlings by 79% and in grains by 70%, respectively. Aging of amendments caused lower pH and higher Cd concentration in the soil solution for all amendments and accordingly, the Cd content in rice seedlings or each part of mature plants in the aged group was higher than that of the unaged group. The applied amendments might reduce the solubility of Cd through the alteration in soil pH, and thus inhibit the uptake of Cd by rice, but the effects diminished with aging.

摘要

腐殖质可以降低土壤中镉的迁移性和生物可利用性,从而抑制其被水稻吸收,而水稻正是人类摄入镉的主要来源。然而,腐殖质老化的影响尚未完全清楚。本研究采用盆栽试验,评价了腐殖酸基改良剂在新鲜添加和老化 130 天后对土壤溶液中镉迁移性及其被水稻吸收的影响。结果表明,老化和未老化的改良剂通常会降低土壤溶液中镉的浓度,但随着时间的推移,这种效应会减弱。未老化的 HA-K(腐殖酸钾)在第一次采样时将镉浓度降低了 88%,但在最后一次采样时降至 46%,而对照则保持不变。所有改良剂,无论是否老化,均降低了水稻幼苗和成熟植株中镉的含量。老化和未老化的木质泥炭分别将幼苗和谷物中的镉含量降低了 79%和 70%。所有改良剂的老化均导致土壤溶液的 pH 值降低和镉浓度升高,因此,老化组中水稻幼苗或各成熟植株部分的镉含量均高于未老化组。施加的改良剂可能通过改变土壤 pH 值来降低镉的溶解度,从而抑制水稻对镉的吸收,但这种效应会随着老化而减弱。

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