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联合改良剂对稻麦轮作两种镉污染土壤作物产量和镉吸收的影响。

Effects of combined amendments on crop yield and cadmium uptake in two cadmium contaminated soils under rice-wheat rotation.

机构信息

Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, China; University of Chinese Academy of Sciences, Beijing 100049, China.

Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, China.

出版信息

Ecotoxicol Environ Saf. 2018 Feb;148:303-310. doi: 10.1016/j.ecoenv.2017.10.043. Epub 2017 Nov 6.

Abstract

Soil cadmium (Cd) contamination in China has become a serious concern due to its high toxicity to human health through food chains. A pot experiment was conducted to investigate the effects of hydrated lime (L), hydroxyapatite (H) and organic fertilizer (F) alone or in combination to remedy a mild (DY) and a moderate (YX) Cd contaminated agricultural soil under rice-wheat rotation. Results showed that crops grain yield and Cd concentration, soil pH, CaCl extractable Cd and Cd speciation were markedly affected by the amendments. In both cropping seasons, hydrated lime and hydroxyapatite significantly immobilized soil Cd, and hydroxyapatite, organic fertilizer significantly increased grain yield. Hydrated lime mainly increased soil carbonates bound Cd fractions resulted from 16.7% to 36.2% and from 16.8% to 28.3%, and hydroxyapatite increased Fe/Mn oxides Cd fractions from 19.3% to 33.4% and from 31.4% to 42.1% in the DY and YX soils, respectively; while organic fertilizer slightly increased soil exchangeable and organic matter bound Cd fractions. Besides, combined amendments contain alkaline materials and organic materials have the potential to decrease grain Cd and increase grain yield simultaneously. Therefore, in view of the effects of amendments on grain yield and Cd concentration, the cost as well as the potential benefits expected, combined amendments like hydrated lime + organic fertilizer, hydrated lime + hydroxyapatite + organic fertilizer are recommended in practical application. Mechanisms of Cd immobilization affected by amendments are mainly attributed to the changes in soil Cd availability and crops root uptake rather than internal translocation in plants.

摘要

中国土壤镉(Cd)污染问题严重,通过食物链对人类健康构成高毒性威胁。采用盆栽试验研究了单独及组合施用熟石灰(L)、羟基磷灰石(H)和有机肥(F)对水稻-小麦轮作下轻度(DY)和中度(YX)Cd 污染农田的修复效果。结果表明,改良剂显著影响作物籽粒产量和 Cd 浓度、土壤 pH 值、CaCl2 可提取 Cd 和 Cd 形态。在两个种植季,熟石灰和羟基磷灰石均显著固定土壤 Cd,而羟基磷灰石和有机肥显著提高了籽粒产量。熟石灰主要增加了土壤碳酸盐结合态 Cd 分数,增加幅度为 16.7%至 36.2%和 16.8%至 28.3%,羟基磷灰石增加了 DY 和 YX 土壤中铁锰氧化物结合态 Cd 分数,分别增加了 19.3%至 33.4%和 31.4%至 42.1%;而有机肥略微增加了土壤可交换态和有机结合态 Cd 分数。此外,复合改良剂同时具有碱性物质和有机物质,具有降低籽粒 Cd 浓度和提高籽粒产量的潜力。因此,考虑到改良剂对籽粒产量和 Cd 浓度的影响、成本以及预期的潜在效益,在实际应用中推荐使用熟石灰+有机肥、熟石灰+羟基磷灰石+有机肥等复合改良剂。改良剂对 Cd 固定的作用机制主要归因于土壤 Cd 有效性的变化和作物根系吸收,而不是植物内部的迁移。

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