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Microscopic mechanisms of soil moisture related to hydromulching

机译:与水分覆盖相关的土壤水分的微观机制

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摘要

Hydromulching is a new mulch product which has positive effects on soil moisture conservation and the inhibition of evaporation. However, current research on its soil moisture conservation effect has mainly adopted the field fixed-point observation method, rather than revealing the soil moisture conservation mechanism from the microstructure of the hydromulching. This paper applied spectrum analysis technology to observe the structure and micromorphological features of hydromulching, which will be able to reveal the mechanism of soil moisture conservation. Three types of hydromulching, based on laboratory preparation, were used to analyze the mechanism of soil moisture, using the infrared spectrometer (FTIR) and environmental scanning electron microscope (ESEM). The results showed that -OH generates intermolecular hydrogen bonds between carboxymethylcellulose sodium (CMC) and polyvinyl alcohol (PVA); the hydrogen bonds were formatted between the molecules of the two components, strengthening their compatibility, which increased the effectiveness of the hydromulching and created a dense mesh structure. ESEM observation results showed that preparation 1's hydromulching coverage had good effects, while preparations 2 and 3 performed poorly. Therefore, we can conclude that hydromulching effectively cements soil particles. Then it can generate the soil membrane structure to reduce evaporation and improve soil moisture conservation function.
机译:加水覆盖是一种新型的覆盖产品,对土壤水分的保持和蒸发的抑制具有积极的作用。然而,目前对其土壤水分保持效果的研究主要是采用现场定点观测方法,而不是从加水覆盖的微观结构揭示土壤水分保持机理。本文应用光谱分析技术观察了水力覆盖的结构和微观形态特征,将能够揭示土壤水分养护的机理。在实验室准备的基础上,使用红外分光计(FTIR)和环境扫描电子显微镜(ESEM),使用三种类型的水力覆盖来分析土壤水分的机理。结果表明,-OH在羧甲基纤维素钠(CMC)和聚乙烯醇(PVA)之间产生分子间氢键;氢键在这两种成分的分子之间形成了格式,从而增强了它们的相容性,从而提高了加氢覆盖的效率并形成了致密的网状结构。 ESEM观察结果表明,制剂1的加氢覆盖效果良好,而制剂2和3的效果较差。因此,我们可以得出结论,水力覆盖有效地固结了土壤颗粒。然后可以产生土壤膜结构,减少蒸发,提高土壤保水功能。

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