School of Metallurgy and Environment, Central South University, Changsha 410083, China.
School of Metallurgy and Environment, Central South University, Changsha 410083, China.
Sci Total Environ. 2021 Jul 20;779:146477. doi: 10.1016/j.scitotenv.2021.146477. Epub 2021 Mar 16.
Lime is widely applied as a soil amendment to reduce the grain cadmium (Cd) content in rice production. However, the effectiveness of liming on grain Cd reduction is inconsistent and often cannot meet the safety requirements established for rice production. To identify the factors causing the effectiveness of liming to vary, we collected data from peer-viewed articles regarding lime application in paddy soils that were published during the last ten years. The average Cd reduction rates in rice grains after liming were -44% across all the studies considered, which could be broken down into -48% for pot experiments only and -42% for field trials only. The results of a meta-analysis and decision tree analysis indicated that the experiment type (field or pot), lime dosage, lime type (CaCO, Ca(OH), or CaO), soil environment factors (soil pH, soil available Cd content, soil total Cd, and Zn content), and rice cultivar all influenced the effectiveness of liming. Recommendations were made to guide future liming practice, e.g., (1) using a larger lime dosage when applied to soil with pH < 5.5, or soil with total Cd > 1 mg/kg or total Zn > 200 mg/kg; (2) using CaCO when applied with large dosages; and (3) planting low-Cd accumulation rice cultivars while applying lime. CAPSULE: A meta-analysis showed that the effectiveness of liming on rice grain Cd reduction was affected by the experiment type (field or pot), lime dosage, lime type, soil pH, rice cultivar, and soil total Cd and Zn content.
石灰被广泛应用于土壤改良,以降低水稻生产中的谷物镉(Cd)含量。然而,石灰对降低谷物 Cd 含量的效果并不一致,往往不能满足为水稻生产设定的安全要求。为了确定导致石灰效果不一致的因素,我们收集了过去十年间有关石灰在稻田应用的同行评议文章的数据。在所有考虑的研究中,石灰处理后大米中 Cd 减少的平均率为-44%,其中仅盆栽试验为-48%,仅田间试验为-42%。荟萃分析和决策树分析的结果表明,试验类型(盆栽或田间)、石灰用量、石灰类型(CaCO₃、Ca(OH)₂或 CaO)、土壤环境因素(土壤 pH 值、土壤有效 Cd 含量、土壤总 Cd 和 Zn 含量)和水稻品种都影响石灰的效果。提出了一些建议来指导未来的石灰施用实践,例如:(1)当土壤 pH 值 < 5.5 或总 Cd > 1mg/kg 或总 Zn > 200mg/kg 时,增大石灰用量;(2)大剂量施用石灰时使用 CaCO₃;(3)施用石灰时种植低 Cd 积累的水稻品种。总之,石灰降低水稻谷粒 Cd 含量的效果受试验类型(盆栽或田间)、石灰用量、石灰类型、土壤 pH 值、水稻品种和土壤总 Cd 和 Zn 含量的影响。