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[腐殖质活性组分对土壤镉有效性的调控效应及水稻安全临界阈值]

[Regulation Effects of Humus Active Components on Soil Cadmium Availability and Critical Threshold for Rice Safety].

作者信息

Hu Xiu-Zhi, Song Yi, Wang Tian-Yu, Jiang Zhen-Mao, Wei Shi-Qiang

机构信息

College of Resources and Environment, Southwest University, Chongqing 400715, China.

Chongqing Key Laboratory of Agricultural Resources and Environment Research, Chongqing 400715, China.

出版信息

Huan Jing Ke Xue. 2024 Jan 8;45(1):439-449. doi: 10.13227/j.hjkx.202301012.

Abstract

Organic materials containing humic acids (HAs) play important roles in regulating the bioavailability of cadmium (Cd) in soils and thus its accumulation in crops. The effects of the two active components of HAs, humic acid (HA) and fulvic acid (FA), in organic materials and their different ratios (HA/FA) on Cd uptake and accumulation in rice were investigated using a field plot experiment, and their relationships with the Cd fractions and availability in paddy soil as influenced by the use of these organic materials were analyzed in combination with the fractionation method of chemical continuous extraction. The results showed that the effects of HAs on Cd availability in soil and Cd accumulation in rice grains were controlled by the ratios of the active components in the organic materials. The treatments with an HA/FA ratio ≥ 4/6 had a passivating effect on soil Cd, resulting in a significant reduction in Cd availability. Compared with that in the control without the application of HAs (CK), rice grain Cd concentration was reduced by 15.2%-33.3%, whereas those with an HA/FA ratio ≤ 2/8 activated Cd in soil, and the available Cd content was significantly increased. Compared with that in CK, rice grain Cd concentration was increased by 24.2%-42.4%. The ratios of HA/FA in HAs affected the morphological transformation of soil Cd. Compared with the CK treatment, the treatments with ratios of HA/FA ≥ 4/6 promoted the transformation of soil Cd from the exchangeable form (EX-Cd) with high activity to the carbonate bound form (CA-Cd) and Fe and Mn oxide-bound forms (FM-Cd) with low activity, whereas those with ratios of HA/FA ≤ 2/8 showed the opposite effects. The effects of HA and FA on soil pH and available sulfur concentration differed. Soil pH had a significant positive correlation with HA addition but a negative correlation with FA addition, and soil available sulfur content had a significant positive correlation with FA addition at the rice tillering stage. Therefore, to ensure the quality and safety of rice, organic materials with an HA/FA ratio ≥ 4/6 should be selected. The results provided a scientific basis for the directed utilization of organic materials containing HAs.

摘要

含有腐殖酸(HAs)的有机物料在调控土壤中镉(Cd)的生物有效性及其在作物中的积累方面发挥着重要作用。采用田间小区试验,研究了有机物料中腐殖酸(HA)和富里酸(FA)这两种活性成分及其不同比例(HA/FA)对水稻吸收和积累镉的影响,并结合化学连续提取分级方法,分析了这些有机物料的使用对水稻土中镉形态及有效性的影响。结果表明,HAs对土壤中镉有效性和水稻籽粒中镉积累的影响受有机物料中活性成分比例的控制。HA/FA比例≥4/6的处理对土壤镉有钝化作用,导致镉有效性显著降低。与未施用HAs的对照(CK)相比,水稻籽粒镉含量降低了15.2% - 33.3%,而HA/FA比例≤2/8的处理则活化了土壤中的镉,有效镉含量显著增加。与CK相比,水稻籽粒镉含量增加了24.2% - 42.4%。HAs中HA/FA比例影响土壤镉的形态转化。与CK处理相比,HA/FA比例≥4/6的处理促进了土壤镉从高活性的交换态(EX - Cd)向低活性的碳酸盐结合态(CA - Cd)以及铁锰氧化物结合态(FM - Cd)的转化,而HA/FA比例≤2/8的处理则表现出相反的效果。HA和FA对土壤pH值和有效硫浓度的影响不同。土壤pH值与HA添加量呈显著正相关,与FA添加量呈负相关,在水稻分蘖期,土壤有效硫含量与FA添加量呈显著正相关。因此,为确保水稻质量安全,应选择HA/FA比例≥4/6的有机物料。研究结果为含HAs有机物料的定向利用提供了科学依据。

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