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Soil organic carbon and soil aggregate stability associated with aggregate fractions in a chronosequence of citrus orchards plantations

机译:与柑橘果园种植园的血管生殖器血管术中与骨料分数相关的土壤有机碳和土壤聚集稳定性

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摘要

Soil aggregates and their associated C may serve as accurate diagnostic markers for changes in soil characteristics in response to different agricultural management practices. However, there is limited knowledge regarding the effects of various chronosequences on soil organic C (SOC) pool in aggregates of different particle sizes in citrus plantations. Surface soil (0-20 cm) samples were collected from 120 citrus orchards (Yongxing County, Hunan Province, China) of different plantation ages (0-10y, ll-20y, and 21-30y). Plantation age dramatically affected the composition of soil aggregates of different particle sizes and their associated SOC, with the strongest macroaggregate fraction observed in the 0-10y orchards. Soil mean weight diameter (MWD) and geometric mean diameter (GMD) gradually decreased with plantation age (by 12.58% and 20.30% in 21-30y orchards, respectively). However, soil fractal dimension (D) and erodibility (K) gradually increased with plantation age (by 3.95% and 2.15% in 21-30y orchards, respectively). Furthermore, the SOC content and pool of aggregates and contribution of aggregates to SOC decreased with decreasing particle size. Multivariate analysis identified the aggregate fraction with a particle size over 2 mm as the main factor affecting the stability of soil aggregates in citrus plantations. The SOC content of aggregates was positively correlated with soil MWD and GMD but negatively correlated with soil D and if. The distribution of organic matter in soil aggregates can help us better understand the stability of soil structure and reduce the risk of soil erosion in successive citrus planting (<30y).
机译:土壤聚集体及其相关的C可以作为用于不同农业管理实践的土壤特征变化的准确诊断标志物。然而,关于柑橘种植园在不同粒度尺寸的聚集体中的土壤有机C(SoC)池对土壤有机C(SoC)池的影响有限。从120个柑橘果园(湖南省,湖南省,中国)不同种植园(0-10Y,LL-20Y和21-30Y)收集了表面土壤(0-20厘米)样品。种植园时代显着影响了不同粒度的土壤聚集体的组成及其相关的SOC,在0-10Y果园中观察到的最强的宏观微粒分数。土壤平均重量直径(MWD)和几何平均直径(GMD)随种植症时期逐渐降低(分别在21-30Y果树园中的12.58%和20.30%)。然而,土壤分形尺寸(d)和蚀刻性(k)分别逐渐增加,分别逐渐增加,分别逐渐增加21-30多果园的3.95%和2.15%)。此外,通过降低粒度,聚集体和聚集体与SOC的贡献的SoC内容和贡献减少。多变量分析鉴定粒径超过2mm的聚集馏分,作为影响柑橘种植园中土壤骨料稳定性的主要因素。聚集体的SOC含量与土壤MWD和GMD呈正相关,但与土壤D和IF呈负相关。土壤聚集体中有机质的分布可以帮助我们更好地了解土壤结构的稳定性,降低连续柑橘种植的土壤侵蚀风险(<30倍)。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|112847.1-112847.8|共8页
  • 作者单位

    College of Resources and Environment Hunan Agricultural University Changsha 410028 China;

    College of Resources and Environment Hunan Agricultural University Changsha 410028 China;

    College of Resources and Environment Hunan Agricultural University Changsha 410028 China;

    Institute of Soil and Fertilizer Hunan Academy of Agricultural Sciences Changsha 410125 China;

    College of Resources and Environment Hunan Agricultural University Changsha 410028 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Citrus orchards; Soil structure; Aggregate composition; Organic carbon; Plantation age;

    机译:柑橘果园;土壤结构;骨料组合物;有机碳;种植园时代;

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