钝化剂对两种水稻砷及营养元素吸收的影响
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S156

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江苏省林业科技创新与推广项目(LYKJ[2019]08),江苏省研究生科研与实践创新计划项目(KYCX24_1535)和江苏省农业气象重点实验室开放基金项目资助。


Effects of Passivators on Arsenic and Nutrient Uptake by Two Rice Cultivars
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    摘要:

    筛选高效钝化剂并揭示其降砷(As)机制是As污染农田土壤治理修复的研究重点之一。本文以南粳9108和内5优8105两个水稻品种为供试植物,通过盆栽试验研究施用3% 的玉米秸秆生物质炭(MBC)、花生壳生物质炭(PBC)、凹凸棒石(ATP)和羟基磷灰石(HAP)对水稻各部位As含量的影响,并比较不同钝化剂处理下土壤理化性质及水稻各部位氮磷含量的差异,由此分析有关降As机制。结果表明,钝化剂处理显著降低了水稻茎叶和籽粒的As含量(P < 0.001)。对于南粳9108,不同处理籽粒As的降低效果顺序为HAP>ATP>PBC>MBC;对于内5优8105,则为HAP>MBC>ATP>PBC。另外,水稻茎叶和籽粒的As含量水平与水稻品种有关,内5优8105茎叶和籽粒的As含量均大于南粳9108(P < 0.05)。MBC和PBC处理显著增加了土壤有机质和速效钾含量,MBC和HAP处理显著增加了土壤有效磷含量。同时,MBC、PBC、HAP和ATP处理增加了内5优8105茎叶和籽粒氮含量及南粳9108茎叶和内5优8105籽粒磷含量。相关分析表明,南粳9108籽粒As含量与茎叶磷含量呈显著负相关关系,内5优8105籽粒As含量与土壤有效磷、根和茎叶磷含量呈显著负相关关系,这表明钝化剂可能通过影响土壤有效磷含量及水稻磷吸收而抑制水稻对As的吸收。综上可知,施用MBC、PBC、ATP和HAP不同程度降低了水稻各部位As含量,其中HAP处理对水稻籽粒As的降低效果最佳,可在As污染农田土壤的修复中推荐应用。

    Abstract:

    Screening out highly effective passivators and revealing their arsenic (As) reduction mechanisms are one of the key research focuses in the remediation of As contaminated agricultural soils. Two rice cultivars of Nangeng 9108 and Nei5you 8105 were used as test plants in a pot experiment, the effects of maize straw biochar (MBC), peanut shell biochar (PBC), attapulgite (ATP) and hydroxyapatite (HAP) under the 3% application rates on As content in various parts of rice plants were investigated, and related soil physiochemical properties and the contents of nitrogen (N) and phosphorus (P) in various rice tissues were compared, based on which corresponding As reduction mechanisms were analyzed. The results showed that the passivators significantly reduced As contents in straws and grains of both cultivars (P < 0.001). For the cultivar of Nangeng 9108, the reduction effect of As content in the grains by passivation followed the order of HAP>ATP>PBC>MBC, and HAP>MBC>ATP>PBC for the Nei5you 8105 cultivar. In addition, the levels of As contents in the straws and grains were related to rice cultivars as indicated by the observation that As contents in straws and grains of Nei5you 8105 were significantly higher than Nangeng 9108. MBC and PBC significantly increased contents of soil organic matter and available potassium, MBC and HAP increased the content of soil available phosphorus content. Meanwhile, MBC, PBC, HAP and ATP increased N contents in straws and grains of Nei5you 8105, and increased P contents in straws of Nangeng 9108 and grains of Nei5you 8105. Correlation analysis showed that As content in grains of Nangeng 9108 had a significantly negative correlation with P content in straws, while that of Nei5you 8105 had a significant negative correlation with available P content in soil, P contents in roots and straws, suggesting that the passivators might inhibit rice As uptake through affecting available P content in soil and P uptake by rice. In conclusion, the application of MBC, PBC, HAP and ATP passivators reduced As contents in various rice tissues to different degrees, the most effective with HAP, which can be recommended to use in the remediation of As contaminated soils.

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李仁英,李傲,刘雨霏,徐向华,黄利东,简静,李玉聪,芦文皓,段盛芹,普布次松.钝化剂对两种水稻砷及营养元素吸收的影响[J].土壤,2025,57(4):853-861. LI Renying, LI Ao, LIU Yufei, XU Xianghua, HUANG Lidong, JIAN Jing, LI Yucong, LU Wenhao, DUAN Shengqin, PUBU Cisong. Effects of Passivators on Arsenic and Nutrient Uptake by Two Rice Cultivars[J]. Soils,2025,57(4):853-861

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  • 收稿日期:2024-04-23
  • 最后修改日期:2024-07-20
  • 录用日期:2024-07-31
  • 在线发布日期: 2025-09-18
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