沙棘根土复合体抗剪特性对平茬复壮的响应
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内蒙古农业大学

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“梯度应力下植物根系在固土抗蚀受损后自修复的生物力学响应机制”(41867011);内蒙古自治区教育厅关于“加强我国北方重要生态安全屏障建设”研究专项:黄河流域内蒙古砒砂岩区生态防护型沙棘人工林提质增效关键机制研究(STAQZX202309);内蒙古自然科学“沙棘根系固土抗蚀作用对平茬复壮的响应机制”(2021MS04011);内蒙古自治区教育科学研究“十四五”规划专项课题(2023NGHZX-LD165)


Response of shear resistance properties of seabuckthorn root-soil complex to stubble rejuvenation
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    摘要:

    【目的】 植物生物力学特性是水土保持植物措施研究的重要内容,为固土保水阻流拦沙等方面提供重要理论依据。【方法】以内蒙古砒砂岩区8a生处于衰退型的沙棘人工林为研究对象,采用平茬复壮措施后经过一个生长季的生长,对其根系分布数量特征、根土复合体抗剪特性进行研究,并与相同立地条件下同龄未平茬复壮作为ck对照进行比较,揭示其差异性,为发挥植被固土护坡、土壤保持的沙棘人工林可持续经营管理提供生物力学方面的科学依据。【结果】结果显示:沙棘标准株根系0-1.5mm径级的根数、根长、根表面积、根干重分别为平茬的87.13%>未平茬77.84%;根长相比较平茬的87.16%>未平茬87.13%;根表面积相比较平茬的52.57%>未平茬44.22%;根干重相比较平茬的54.78%>未平茬46.18%,表明平茬促进了细根的生长。在根系集中分布土层根土复合体抗剪强度、残余抗剪强度平茬较未平茬分别增长了4.08%和28.80%,粘聚力和残余粘聚力平茬较未平茬分别增长了8.25%和50.64%,内摩擦角和残余内摩擦角平茬较未平茬分别增长了18% 和25.57%;且平茬与未平茬沙棘根土复合体的抗剪特性、残余抗剪特性均优于素土,即含根土体的抗剪能力优于无根系土壤。【结论】试验研究结果证明由于平茬促进了细根的生长,细根旺盛的生命活动加强根-土间相互作用,根土黏结性能改善,通过细根的网络胶结缠绕等,提高了平茬后沙棘根-土复合体的抗剪强度,促进了土体的稳定性及抗侵蚀能力。

    Abstract:

    Plant biomechanical characteristics are an important part of the research on soil and water conservation measures, and provide an important theoretical basis for soil fixation, water retention, water retention, flow resistance and sand retention.In this paper, 8a declining sea buckthorn plantation in the Wushan Sandstone area of Inner Mongolia was taken as the research object. After one growing season, the characteristics of root distribution and the shear resistance of the root-soil complex were studied by adopting the measures of crop restoration, and the differences were compared with ck under the same site conditions. It can provide the scientific basis of biomechanics for sustainable management of sea-buckthorn artificial forest with soil stabilization, slope protection and soil conservation. The results showed that the root number, root length, root surface area and root dry weight of 0-1.5mm diameter of standard seabuckthorn roots were 87.13% > 77.84% of uncultivated roots, respectively. The root length was 87.16% in plain stubble and 87.13% in open stubble.The root surface area of flat stubble was 52.57% and that of unflat stubble was 44.22%.The root dry weight of flat stub was 54.78% higher than that of unflat stub 46.18%, indicating that flat stub promoted fine root growth. The shear strength and residual shear strength of the root soil complex increased by 4.08% and 28.80%, and the cohesion and residual cohesion increased by 8.25% and 50.64%, respectively, in the plain soil compared with the non-plain soil, and the internal friction Angle and residual internal friction Angle increased by 18% and 25.57%, respectively. The shear and residual shear properties of the stubble and unstubbed sea buckthorn root soil complex were better than those of plain soil, that is, the shear ability of soil with roots was better than that of soil without roots. The experimental results showed that stubble promoted the growth of fine roots, the vigorous life activities of fine roots strengthened the root-soil interaction, improved the root soil bonding performance, and improved the shear strength of the root-soil complex after stubble through the network cementation and winding of fine roots, which promoted the stability and erosion resistance of the soil.

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  • 收稿日期:2025-03-10
  • 最后修改日期:2025-06-29
  • 录用日期:2025-06-30
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