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Can complementary preferential flow and non-preferential flow domains contribute to soil water supply for rubber plantation?

机译:可以互补优惠流动和非优惠流动域有助于橡胶种植厂的土壤供水吗?

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摘要

Preferential flow has always been hotspot of research regarding soil water flow, biological activity, and carbon and nitrogen dynamics. However, the mechanism of water flow exchange between two adjacent zones (with and without root system) and the pattern of soil water supply for rubber are still unclear. In the present study, we considered two plots experiencing similar farming history: in the first plot we measured soil physical properties and soil volumetric water content (VWC) during rainfall, and the second plot was used to visualise water flow path and to measure root biomass. Besides, a model was developed on preferential flow domain (PFD, matching the root zone) and on non-preferential flow domain (NPFD, matching the remote root zone) to compute differences in soil properties between the PFD and NPFD. The results revealed that the dominant flow type in the PFD was preferential flow and the one in the NPFD was capillary flow. Dye stained area and wetting front rate negatively correlated with bulk density, while they positively correlated to non-capillary porosity and root biomass. Accordingly, PFD showed a quick response to rainfall. Indeed, during the rain, a lateral flow (driven by water gravity and pressure head gradient) predominantly carried water (0.95, 0.27, and 0.44 cm(3) cm(-3) for various rainfall events 1, 2, and 3, respectively) from PFD to NPFD. During the soil drainage stage, the lateral flow direction changed, and water (about 0.63, 0.30, and 0.39 cm(3) cm(-3) for rainfall events 1, 2, and 3, respectively) flowed from NPFD to PFD. As a result, PFD presented low storage and high flow characteristics compared with NPFD, suggesting this complementary relationship for water interaction between the two domains could be beneficial for rubber plants growth and development.
机译:优惠流动始终是土壤水流,生物活性和碳和氮动力学的研究热点。然而,两个相邻区域(带有无根系)之间的水流交换机制和橡胶的土壤供水模式仍然不明朗。在本研究中,我们考虑了一个遇到类似农业历史的两块地块:在第一个地块中,我们在降雨期间测量了土壤物理性质和土壤体积水含量(VWC),第二个图用于可视化水流动路径并测量根生物质。此外,在优先流量域(PFD,匹配根区域)和非优先流域(NPFD,匹配远程根区域)上进行模型,以计算PFD和NPFD之间的土壤性质的差异。结果表明,PFD中的显性流动类型是优先流量,NPFD中的一个是毛细血管流动。染料染色区域和润湿前速率与堆积密度呈负相关,而它们与非毛细血管孔隙率和根生物量呈正相关。因此,PFD表现出对降雨的快速反应。实际上,在雨期间,横向流动(由水重力和压力头梯度驱动),主要携带水(0.95,0.27和0.44cm(3)cm(3)cm(3)cm(-3)分别用于各种降雨事件1,2和3 )从PFD到NPFD。在土壤排水阶段期间,横向流动方向改变,水(分别为水的降雨事件1,2和3分别为水(约0.63,0.30和0.39cm(3)厘米(3)厘米(-3))。结果,与NPFD相比,PFD呈现低储存和高流量特性,表明两个域之间的水相互作用的互补关系可能是有益的橡胶植物生长和发育。

著录项

  • 来源
    《Forest Ecology and Management》 |2020年第2020期|共10页
  • 作者单位

    Chinese Acad Sci CAS Key Lab Trop Forest Ecol Xishuangbanna Trop Bot Garden Menglun 666303 Yunnan Peoples R China;

    Chinese Acad Sci CAS Key Lab Trop Forest Ecol Xishuangbanna Trop Bot Garden Menglun 666303 Yunnan Peoples R China;

    Chinese Acad Sci CAS Key Lab Trop Forest Ecol Xishuangbanna Trop Bot Garden Menglun 666303 Yunnan Peoples R China;

    Chinese Acad Sci CAS Key Lab Trop Forest Ecol Xishuangbanna Trop Bot Garden Menglun 666303 Yunnan Peoples R China;

    Chinese Acad Sci CAS Key Lab Trop Forest Ecol Xishuangbanna Trop Bot Garden Menglun 666303 Yunnan Peoples R China;

    Chinese Acad Sci CAS Key Lab Trop Forest Ecol Xishuangbanna Trop Bot Garden Menglun 666303 Yunnan Peoples R China;

    Chinese Acad Sci CAS Key Lab Trop Forest Ecol Xishuangbanna Trop Bot Garden Menglun 666303 Yunnan Peoples R China;

    Chinese Acad Sci CAS Key Lab Trop Forest Ecol Xishuangbanna Trop Bot Garden Menglun 666303 Yunnan Peoples R China;

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

    Soil matrix; Dye tracer; Wetting front; Complementary relationship; Rubber tree;

    机译:土壤基质;染料示踪剂;润湿前部;互补关系;橡胶树;

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