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Biochemical soil treatment for erosion control against desertification

机译:生化土壤处理可防治荒漠化

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Erosion of soil and subsequent soil degradation (i.e. desertification) is becoming more serious due to global warming and concurrent abnormal climate. Although anti-desertification efforts have been performed on desert fronts (e.g. afforestation), most undertakings have shown poor performance due to the lack of consideration of soil and geotechnical aspects. Soil erosion accompanies soil cohesion and water retention reduction due to fine particle transfer from the original ground. Thus, soil internal adhesion recovery must be preceded for effective and reliable anti-desertification attempts. In this study, biochemical soil treatment using biopolymers is suggested as an alternative for soil recovery taking into consideration engineering and environmental aspects. Biopolymer treated soil shows significant enhancements in both soil erosion resistance and vegetation growth. Moreover, it improves soil water retention characteristics (e.g. marric suction, hydraulic conductivity) against evaporation, rendering a proper environment for plants and crops in arid or semi-arid regions where annual precipitation is limited.
机译:由于全球变暖和同时出现的异常气候,土壤侵蚀和随后的土壤退化(即沙漠化)变得越来越严重。尽管已经在沙漠地区(例如造林)上进行了荒漠化工作,但是由于缺乏对土壤和岩土方面的考虑,大多数企业的表现都较差。由于从原始地面转移细颗粒,土壤侵蚀伴随着土壤凝聚力和保水性的降低。因此,必须先进行土壤内部附着力的恢复,才能进行有效而可靠的抗沙漠化工作。在这项研究中,考虑到工程和环境方面,建议使用生物聚合物进行生化土壤处理作为土壤恢复的替代方法。生物聚合物处理过的土壤在抗土壤侵蚀和植被生长方面均表现出显着增强。此外,它还改善了土壤保水特性(例如,马力吸力,水力传导性)以防止蒸发,从而为年降水量有限的干旱或半干旱地区的植物和农作物提供了合适的环境。

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