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[不同性质硅肥对土壤生物有效态镉和砷的主要影响因素]

[Primary Factors Affecting Soil Bioavailable Cadmium and Asenic by Different Properties of Silicon Fertilizer].

作者信息

Huang Rui, Wei Wei, Xie Yun-He, Liu Sai-Hua, Chen Hao-Yu, Peng Hua, Ji Xiong-Hui

机构信息

Longping Branch of Graduate School of Hunan University, Changsha 410125, China.

Hunan Institute of Agro-Environment and Ecology, Hunan Academy of Agricultural Sciences, Changsha 410125, China.

出版信息

Huan Jing Ke Xue. 2023 Feb 8;44(2):991-1002. doi: 10.13227/j.hjkx.202204239.

Abstract

To clarify the primary factors affecting soil bioavailable cadmium (Cd) and arsenic (As) by silicon fertilizer, we chose different properties of silicon fertilizer, including three types of alkaline silicon fertilizer[NaSiO, CaSiO, and ASSF (pH 9-11)] and one weak acid neutral soluble silicon fertilizer (NSSF, pH 5-6), to carry out a pot experiment by adding different amounts of Si fertilizer (25-800 mg·kg, calculated as Si). After 21 days of flooding, soil basic physical and chemical properties, along with diffusive gradients in thin film Cd and As (DGT-Cd and DGT-As) were investigated. The results showed that the application of Si fertilizer with different properties had different significant effects on the basic physical and chemical properties of soil. Specifically, the three types of alkaline silicon fertilizer significantly increased the soil pH (<0.05), among which NaSiO exhibited the strongest ability; however, the application of NSSF remarkably reduced soil pH (<0.05), and per unit (mg) Si application of NSSF could reduce soil pH by 0.0017 units. Furthermore, with each fertilizer application rate that reached 400 mg·kg (calculated as Si), the changes in soil pH and Eh tended to be gentle. The ability of the four types of silicon fertilizer to improve soil available silicon ranked as NSSF>NaSiO>ASSF>CaSiO. Additionally, the application of the three types of alkaline silicon fertilizer apparently decreased soil DGT-Cd while increasing soil DGT-As (<0.05). When the addition rate of CaSiO was up to 100 mg·kg(calculated as Si), soil DGT-Cd concentration could be significantly decreased by approximately 50.89% without causing a significant increase in soil DGT-As concentration. Conversely, when the NSSF application rate was up to 400 mg·kg (calculated as Si), the soil DGT-As basically reached its steady-state, and the DGT-As reduction rate reached 85.87%. Strikingly, the correlation analysis of the influencing factors of soil DGT-Cd and DGT-As showed that soil pH was the main factor affecting soil bioavailable Cd and As (DGT-Cd and DGT-As), and the effect of soil available Si and P on soil Cd and As bioavailability was negligible. Consequently, soil DGT-Cd and soil DGT-As could reach a minimum when soil pH was adjusted to 6.5-7.0 or 5-5.5 by alkaline silicon fertilizer or NSSF, respectively. It is undoubtedly of great significance, to clarify the primary factors that influence soil bioavailable Cd and As to ensure food security production.

摘要

为阐明硅肥影响土壤生物有效性镉(Cd)和砷(As)的主要因素,我们选取了不同性质的硅肥,包括三种碱性硅肥[硅酸钠(NaSiO)、硅酸钙(CaSiO)和碱渣硅肥(ASSF,pH 9 - 11)]和一种弱酸中性可溶性硅肥(NSSF,pH 5 - 6),通过添加不同量的硅肥(25 - 800 mg·kg,以Si计)进行盆栽试验。淹水21天后,研究了土壤基本理化性质以及薄膜扩散梯度法测定的镉和砷(DGT - Cd和DGT - As)。结果表明,施用不同性质的硅肥对土壤基本理化性质有不同的显著影响。具体而言,三种碱性硅肥显著提高了土壤pH值(<0.05),其中硅酸钠提高土壤pH值的能力最强;然而,施用NSSF显著降低了土壤pH值(<0.05),每单位(mg)NSSF施硅可使土壤pH值降低0.0017个单位。此外,当每种肥料施用量达到400 mg·kg(以Si计)时,土壤pH值和氧化还原电位(Eh)的变化趋于平缓。四种硅肥提高土壤有效硅的能力排序为:NSSF>硅酸钠>ASSF>硅酸钙。此外,三种碱性硅肥的施用明显降低了土壤DGT - Cd含量,同时提高了土壤DGT - As含量(<0.05)。当硅酸钙添加量达到100 mg·kg(以Si计)时,土壤DGT - Cd浓度可显著降低约50.89%,且不会导致土壤DGT - As浓度显著增加。相反,当NSSF施用量达到400 mg·kg(以Si计)时,土壤DGT - As基本达到稳态,DGT - As降低率达到85.87%。引人注目的是,土壤DGT - Cd和DGT - As影响因素的相关分析表明,土壤pH值是影响土壤生物有效性镉和砷(DGT - Cd和DGT - As)的主要因素,土壤有效硅和磷对土壤镉和砷生物有效性的影响可忽略不计。因此,分别通过碱性硅肥或NSSF将土壤pH值调节至6.5 - 7.0或5 - 5.5时,土壤DGT - Cd和土壤DGT - As可达到最低值。阐明影响土壤生物有效性镉和砷的主要因素对于确保粮食安全生产无疑具有重要意义。

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