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首页> 外文期刊>The Science of the Total Environment >Striking a balance between N sources: Mitigating soil acidification and accumulation of phosphorous and heavy metals from manure
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Striking a balance between N sources: Mitigating soil acidification and accumulation of phosphorous and heavy metals from manure

机译:在N来源之间突击平衡:减轻土壤酸化和来自粪肥的磷和重金属的积累

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摘要

Manure amendment has been shown to effectively prevent red soil (Ferralic Cambisol) acidification from chemical nitrogen (N) fertilization. However, information is lacking on how much manure is needed to mitigate acidification and maintain soil productivity while preventing accumulation of other nutrients and heavy metals from long-term inputs. This study determined the effects of various combinations of manure with urea-N on acidification and changes in soil P. K, and heavy metals in a 9-year maize field experiment in southern China. Treatments included chemical N, P and K fertilization only (NPKMO), and NPK plus swine manure, which supplied 20% (NPKM20), 40% (NPKM40), and 60% (NPKM60) of total N at 225 kg N ha~(-1) year~(-1). Soil pH, exchangeable acidity, available P and K, and maize yield were determined annually from 2009 to 2018. Soil exchangeable base cations, total and phytoavailable Cr, Pb, As, Ni, Cd, Cu, and Zn were measured in 2018. A significant decrease in soil pH occurred under NPKMO and NPKM20 from initial 4.93 to 4.46 and 4.71, respectively. Whereas, under NPKM40 and NPKM60 no change or a significant increase in soil pH (to 5.47) occurred, as well as increased exchangeable base cations, and increased yields. Manure application markedly increased soil available P (but not K) to 67.6-182.6 mg kg~(-1) and significantly increased total Pb, Cu, and Zn and available Cu and Zn in soil. The results indicate sourcing 40% or greater of total N from manure can prevent or reverse acidification of red soil, and provide ail P required, however, additional K inputs are required for balanced plant nutrient supply. An integrated approach of increasing N use efficiency, reducing chemical input, and reducing heavy metal concentrations in animal feed are all necessary for sustainable use of manure in soil acidity and nutrient management as well as minimizing environmental risks.
机译:已经证明粪肥修正案有效防止了从化学氮(N)施肥中的红壤(挠性凸纤维)酸化。然而,缺乏信息缺乏施肥需求和维持土壤生产率的时间,同时防止来自长期投入的其他营养素和重金属的积累。本研究确定了粪肥与尿素-N的各种组合对南方9年玉米田间实验中土壤P.K和重金属的酸化和变化的影响。治疗包括化学N,P和K施肥(NPKMO)和NPK加猪粪,其提供20%(NPKM20),40%(NPKM40)和60%(NPKM60),在225 kg N HA〜( -1)年〜(-1)。每年从2009年至2018年每年测定土壤pH,可交换酸度,可用的p和k和玉米产率。在2018年测量土壤可交换的基阳离子,总嗜可可用于的基础阳离子,总和植物的基础阳离子,总和植物,Ni,Cd,Cu和Zn。a在NPKMO和NPKM20下,分别从初始4.93至4.46和4.71发生的土壤pH的显着降低。然而,在NPKM40和NPKM60下,没有变化或土壤pH(至5.47)的显着增加,以及可更换的基地阳离子和增加的收益率。粪便施用明显增加土壤(但不是K)至67.6-182.6mg kg〜(-1),并且在土壤中显着增加了总Pb,Cu和Zn和可用的Cu和Zn。结果表明,从粪肥中产生40%或更高的N总量可以预防或反转红壤的酸化,并提供所需的AIL P,但是均衡的植物营养供应需要额外的k个输入。增加N使用效率,减少化学输入和减少动物饲料中重金属浓度的综合方法是可持续使用土壤酸度和养分管理的粪肥和营养管理以及最小化环境风险所必需的。

著录项

  • 来源
    《The Science of the Total Environment》 |2021年第2期|142189.1-142189.10|共10页
  • 作者单位

    National Engineering Laboratory for Improving Quality of Arable Land Institute of Agricultural Resources and Regional Planning Chinese Academy of Agricultural Sciences Beijing 100081 China National Field Observation and Research Station of Farmland Ecosystem in Qiyang Institute of Agricultural Resources and Regional Planning Chinese Academy of Agricultural Sciences Hunan 426182 China;

    National Engineering Laboratory for Improving Quality of Arable Land Institute of Agricultural Resources and Regional Planning Chinese Academy of Agricultural Sciences Beijing 100081 China National Field Observation and Research Station of Farmland Ecosystem in Qiyang Institute of Agricultural Resources and Regional Planning Chinese Academy of Agricultural Sciences Hunan 426182 China;

    National Engineering Laboratory for Improving Quality of Arable Land Institute of Agricultural Resources and Regional Planning Chinese Academy of Agricultural Sciences Beijing 100081 China National Field Observation and Research Station of Farmland Ecosystem in Qiyang Institute of Agricultural Resources and Regional Planning Chinese Academy of Agricultural Sciences Hunan 426182 China;

    National Engineering Laboratory for Improving Quality of Arable Land Institute of Agricultural Resources and Regional Planning Chinese Academy of Agricultural Sciences Beijing 100081 China National Field Observation and Research Station of Farmland Ecosystem in Qiyang Institute of Agricultural Resources and Regional Planning Chinese Academy of Agricultural Sciences Hunan 426182 China;

    National Engineering Laboratory for Improving Quality of Arable Land Institute of Agricultural Resources and Regional Planning Chinese Academy of Agricultural Sciences Beijing 100081 China;

    Rothamsted Research Sustainable Agriculture Sciences - North Wyke Devon EX20 2SB UK;

    Rothamsted Research Sustainable Agriculture Sciences - North Wyke Devon EX20 2SB UK;

    USDA Agricultural Research Service San Joaquin Valley Agricultural Sciences Center Parlier CA 93648-9757 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil pH; Exchangeable aluminum; Base cations; Maize yield;

    机译:土壤pH;可交换铝;基阳离子;玉米产量;

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