堆肥改良土壤中镉吸附性和植物生物利用率的时间变化

IF 2.9 Q2 SOIL SCIENCE Soil Systems Pub Date : 2023-11-29 DOI:10.3390/soilsystems7040107
S. Al Mamun, N. Lehto, J. Cavanagh, Richard McDowell, Liv Kellermann, Brett H. Robinson
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引用次数: 0

摘要

施用受镉污染的磷酸盐肥料,使许多农田土壤中这种非必需元素的浓度增高。因此,一些农产品中的金属浓度超过了食品中的最高限量。堆肥可以减少镉从土壤向植物的转移,但这种有益作用能持续多久尚不清楚。我们的目的是确定两种市场园林土壤(一种异位正交颗粒土和一种新近淤泥质土)中植物可利用镉的时间变化。分别在 19 °C、30 °C 和 30 °C三种培养条件下,以 2.5% w/w 的比例添加城市绿色废物堆肥或锯屑和动物废物堆肥,并在 1 年内以每公斤土壤添加 0.6 克尿素的方式添加氮。每个重复在 1、5、9、13、21、31 和 49 周后取样,通过 0.05 M Ca(NO3)2 萃取法估算植物可利用的镉。马铃薯种薯(Solanum tuberosum)'Nadine'品种生长在 Pukekohe Allophanic Orthic Granular 土壤中,该土壤刚添加了城市堆肥,并经过一年的陈化。使用 ICP-OES(电感耦合等离子体-光发射光谱仪)分析了所有样本中的镉浓度。在这一年中,土壤-堆肥混合物中的镉浓度有所下降,其中在 30 °C 下培养并添加氮的土壤中镉浓度下降幅度最大。盆栽实验证实了这一点,实验结果表明,在新改良土壤和陈化一年的改良土壤中,马铃薯中的镉浓度都降低了 50%。土壤中的镉固定化可能是由于有机物对镉的吸附以及铁和铝的氧化-氢氧化物对吸附的镉的封闭。在 49 周内,可溶性镉不会随着有机物的氧化而增加。在土壤中施用城市堆肥将降低植物的镉溶解度和植物对镉的吸收,在测试的土壤中至少持续一年。
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Temporal Changes in Cd Sorption and Plant Bioavailability in Compost-Amended Soils
The application of Cd-contaminated phosphate fertiliser has enriched concentrations of this non-essential element in many agricultural soils. Consequently, concentrations of the metal in some agricultural products exceed the Maximum Limit in foods. Composts can reduce the transfer of Cd from soil to plants; however, it is unclear how long this beneficial effect endures. We aimed to determine temporal changes of phytoavailable Cd in two market garden soils (an Allophanic Orthic Granular Soil and a Recent Silt Loam). Soils were amended with either municipal green waste compost or sawdust and animal waste compost at a rate of 2.5% w/w under three incubation regimes: at 19 °C, at 30 °C, and at 30 °C with additional N added as urea at 0.6 g urea/kg soil added over 1 year. Each replicate was sampled after 1, 5, 9, 13, 21, 31, and 49 weeks, and phytoavailable Cd was estimated through 0.05 M Ca(NO3)2 extraction. Seed potato (Solanum tuberosum), ‘Nadine’ variety, was grown in the Pukekohe Allophanic Orthic Granular Soil, freshly amended with municipal compost and the same soil aged for one year. The concentration of Cd in all samples was analysed using an ICP-OES (Inductively Coupled Plasma-Optical Emission Spectrometer). The C concentration in the soil—compost mixtures decreased over the year, with the greatest decreases occurring in the soils incubated at 30 °C with added N. Unexpectedly, the concentration of Ca(NO3)2-extractable Cd in the compost-amended soils did not increase over time and in some cases even decreased. This was confirmed through a pot experiment, which showed the Cd concentration in potato was reduced by 50% in both the freshly amended soil and the amended soil aged for one year. Cadmium immobilisation in soils might be due to both the sorption of Cd by organic matter and the occlusion of sorbed Cd by oxy-hydroxides of iron and aluminium. Over 49 weeks, soluble Cd does not increase as organic matter oxidises. The application of municipal compost to soil will reduce both plant Cd solubility and plant Cd uptake for at least one year in the soils tested.
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来源期刊
Soil Systems
Soil Systems Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
5.30
自引率
5.70%
发文量
80
审稿时长
11 weeks
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