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Impact of dissolved organic matter on Zn extractability and transfer in calcareous soil with maize straw amendment

机译:玉米秸秆修正溶解有机物对溶解有机物对钙质土壤钙质萃取性和转移的影响

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摘要

PurposeCrop straw return into arable land is a common method of disposing of excess straw in China and can improve soil dissolved organic matter (DOM) that is known to modify soil zinc (Zn) extractability and mobility.Materials and methodsWe conducted a soil box (internal dimensions, 160x140x80mm(3)) experiment to evaluate the response of Zn extractability and transfer by diffusion to DOM after maize straw amendment (St, 0 and 15gkg(-1)) in calcareous soil treated with ZnSO(4)7H(2)O (Zn, 0 and 20mgkg(-1)). Soil treated with St(0)Zn(0) (control), St(15)Zn(0), St(0)Zn(20), or St(15)Zn(20) was isolated in the 10-mm center of the box, and untreated soil was placed in compartments at either side.Results and discussionResults revealed that addition of St(0)Zn(20) or St(15)Zn(20) increased the concentration of Zn extracted with diethylenetriaminepentaacetic acid (DTPA-extractable Zn) in the central layer compared with control or addition of St(15)Zn(0). Over the course of 45days, transfer of DTPA-extractable Zn into the adjacent untreated soil was detected at 15-20mm in soil with St(15)Zn(20) but at 10-15mm with St(0)Zn(20) and only 0-5mm with St(15)Zn(0). Additionally, a higher amount of DTPA-extractable Zn transfer into the adjacent untreated soil also occurred in St(15)Zn(20). This increased DTPA-extractable Zn transfer may be associated with the formation of Zn-fulvic acid complexes with the provision of DOM derived from straw.ConclusionsSoluble Zn combined with straw return may be a promising strategy for improving both Zn mobility and extractability in calcareous soil.
机译:PurposeCrop稻草返回到耕地是中国过量秸秆废弃的常用方法,并且可以改善土壤溶解的有机物质(DOM),是已知的修改土壤锌(Zn)萃取性和mobility.Materials和methodsWe进行了土箱(内部尺寸,160x140x80mm(3))的实验来评估的Zn萃取性和转印的通过扩散用的ZnSO处理石灰性土壤玉米秸秆(ST,0和15gkg(-1))之后的响应于DOM(4)7H(2)O (锌,0和20mgkg(-1))。土壤与ST(0)的Zn(0)(控制),ST(15)的Zn(0),ST处理(0)的Zn(20),或ST(15)的Zn(20)中的溶液在10毫米中心隔离的方块,和未处理的土壤在任一side.Results放置在隔室和discussionResults揭示,此外ST(0)的Zn(20)或ST(15)的Zn(20)增加的Zn的浓度与二亚乙基三酸萃取(DTPA -extractable Zn)的中央层与对照或添加ST(15相比)的Zn(0)。过45天的过程中,在15-20mm检测转印DTPA-提取锌进入相邻的未处理土壤土壤与圣(15)的Zn(20),但在与圣10-15mm的(0)的Zn(20),并且仅0-5mm与圣(15)的Zn(0)。此外,较高量的DTPA-提取锌转移到相邻的未处理土壤也发生在ST(15)的Zn(20)。这种增加的DTPA-提取锌转移可以与地层的Zn的灰黄霉酸的复合物与提供DOM相关联从straw.ConclusionsSoluble锌衍生用稻草返回组合可以是用于改善石灰性土壤锌两者的移动性和萃取性有希望的策略。

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  • 来源
    《Nature reviews Cancer》 |2019年第2期|共11页
  • 作者单位

    Northwest A&

    F Univ Coll Nat Resources &

    Environm Key Lab Plant Nutr &

    Agrienvironm Northwest;

    Northwest A&

    F Univ Coll Nat Resources &

    Environm Key Lab Plant Nutr &

    Agrienvironm Northwest;

    Northwest A&

    F Univ Coll Nat Resources &

    Environm Key Lab Plant Nutr &

    Agrienvironm Northwest;

    Northwest A&

    F Univ Coll Nat Resources &

    Environm Key Lab Plant Nutr &

    Agrienvironm Northwest;

    Northwest A&

    F Univ Coll Nat Resources &

    Environm Key Lab Plant Nutr &

    Agrienvironm Northwest;

    Northwest A&

    F Univ Coll Nat Resources &

    Environm Key Lab Plant Nutr &

    Agrienvironm Northwest;

    Northwest A&

    F Univ Coll Nat Resources &

    Environm Key Lab Plant Nutr &

    Agrienvironm Northwest;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学;
  • 关键词

    DTPA-extractable Zn; Humic substances; Straw decomposition; Zn associated with fulvic acid; Zn diffusion;

    机译:DTPA可提取的Zn;腐殖质;秸秆分解;Zn与Fulvic酸相关;Zn扩散;

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