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一次性添加污泥对盐渍滩涂土壤水稻产量和重金属积累的持续影响。

Sustained effects of one-time sewage sludge addition on rice yield and heavy metals accumulation in salt-affected mudflat soil.

机构信息

College of Environmental Science and Engineering, Yangzhou University, Yangzhou, 225127, People's Republic of China.

Co-Innovation Center for Modern Production Technology of Grain Crop/Jiangsu Key Laboratory of Crop Genetics and Physiology, Yangzhou University, Yangzhou, 225127, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2021 Feb;28(6):7476-7490. doi: 10.1007/s11356-020-11115-1. Epub 2020 Oct 8.

Abstract

High-yielding and sustainable production of rice in salt-affected mudflat is restricted by high soil salinity. Although sewage sludge can be used for mudflat amendment especially soil salt reduction, the possibility of potential heavy metal contamination in sludge-amended mudflat especially under paddy cultivation remains unclear, which hinders the further utilization of sewage sludge. In this study, a field experiment was conducted in a newly reclaimed mudflat to assess the sustained effects of one-time sludge input with different addition rates (0, 30, 60, 120, and 180 t ha) on soil salinity, rice yield, and potential metal contamination under paddy cultivation. The results indicated that sewage sludge addition (SSA) significantly decreased soil salinity and increased soil fertility. The increasing SSA rates and amending years led to the gradual increase of rice yield in salt-affected mudflat. The maximum increases in rice yield were 125.1%, 124.7%, and 127.9% in 2016, 2017, and 2018, and the average annual increase in rice yield in sludge-treated mudflat was 1.7%. Sludge addition increased metals accumulation in mudflat soil and metals uptake by rice tissues except Cr, Cu, and Pb in rice grain. The maximum increments in metal concentrations in soil and rice plant all occurred at 180 t ha sludge addition rate. However, the metal concentrations in rice grain were below the safety limits even in the treatment with the highest sludge addition rate. Metal concentrations in sludge-treated soil and rice plant showed downward trend during the 3-year trial, and the decreases in total amount of soil metals were mainly concentrated in the first amending year, accounting for more than 50%. In summary, one-time sludge input achieved sustained mudflat amendment and efficient rice production. In addition, controlling the total amount of sludge input realized safe utilization of sewage sludge in salt-affected mudflat under paddy cultivation.

摘要

在盐渍淤泥地上种植水稻受到高土壤盐分的限制。尽管污水污泥可用于淤泥地改良,特别是降低土壤盐分,但在稻田种植条件下,污泥改良淤泥地中存在潜在重金属污染的可能性尚不清楚,这阻碍了污水污泥的进一步利用。本研究在新开垦的淤泥地上进行了田间试验,评估了一次性投入不同添加率(0、30、60、120 和 180 t/ha)的污泥对土壤盐分、水稻产量和潜在金属污染的持续影响。结果表明,添加污水污泥(SSA)可显著降低土壤盐分并提高土壤肥力。随着 SSA 率和改良年限的增加,盐渍淤泥地上的水稻产量逐渐增加。2016 年、2017 年和 2018 年水稻产量的最大增幅分别为 125.1%、124.7%和 127.9%,污泥处理淤泥地上的水稻产量平均年增长率为 1.7%。污泥添加增加了淤泥地土壤中金属的积累和水稻组织对金属的吸收,但水稻籽粒中的 Cr、Cu 和 Pb 除外。在 180 t/ha 污泥添加率下,土壤和水稻植物中金属浓度的最大增量均出现。然而,即使在污泥添加率最高的处理中,水稻籽粒中的金属浓度仍低于安全限值。在 3 年的试验过程中,污泥处理土壤和水稻植物中的金属浓度呈下降趋势,土壤中金属总量的减少主要集中在第一个改良年,占比超过 50%。总之,一次性污泥投入实现了淤泥地的持续改良和水稻的高效生产。此外,控制污泥总投入量实现了在稻田种植条件下安全利用盐渍淤泥地中的污水污泥。

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