利用生物工程策略在降雨频繁的热带气候中控制土壤侵蚀的自然解决方案

Gabriel Emboaba de Souza Batista , Adriano Bressane , Mariana Ferreira Benessiuti Motta , Líliam César de Castro Medeiros , Rogério Galante Negri , Rodrigo Custodio Urban
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引用次数: 0

摘要

背景面对热带气候中强降雨加剧的土壤侵蚀,寻求可持续和有效的侵蚀控制技术至关重要。采用生物工程策略的自然解决方案(NbS)已成为一种潜在的途径,但它们在这种环境条件下的有效性和适应性尚未得到充分探索。本研究试图通过评估生物工程方法的有效性来弥补研究空白,该方法涉及鸽子豆、芝麻和豇豆的战略种植,是一种在热带气候的挑战性条件下控制土壤侵蚀的自然解决方案。本研究采用随机区组实验设计,比较了鸽子豆、芝麻和豇豆与传统生物合成侵蚀控制方法在不同地块上的表现。在 25 次降雨过程中,进行了全面的数据收集,包括 150 项降水量、地表径流和土壤流失量的测量。结果研究结果表明,生物工程方案与传统技术相比,即使不是更胜一筹,也有不相上下的效果,其特点是土壤流失量最小,水分渗透能力更强。协方差分析显示了非常大的效应规模,大大突出了生物工程在控制土壤流失方面的功效。值得注意的是,生物工程的贡献不仅限于控制水土流失,还能促进含水层补给和防止水体沉积。这项研究倡导将鸽子豆、芝麻和豇豆更广泛地融入土壤保持实践中,突出了其改变水土流失控制策略,提高环境可持续性和有效性的潜力。
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Nature-based solution using a bioengineering strategy for soil erosion control in tropical climate with intense rainfall patterns

Background

In the face of escalating soil erosion exacerbated by intense rainfall in tropical climates, the quest for sustainable and effective erosion control techniques is paramount. Nature-based solutions (NbS) using bioengineering strategies have emerged as a potential avenue, yet their efficacy and adaptability in such environmental conditions are not fully explored.

Objective

This study seeks to bridge the research gap by evaluating the effectiveness of a bioengineering approach, which involved a strategic plantation of Pigeonpea, Sesame, and Cowpea, as an NbS for soil erosion control under the challenging conditions of tropical climates. It emphasizes the rhizospheric characteristics of these species and their potential to offer a sustainable and environmentally friendly solution to soil erosion.

Methods

Employing a random block experimental design, the study compared the performance of Pigeonpea, Sesame, and Cowpea against conventional biosynthetic erosion control methods across various plots. Over 25 rainfall events, comprehensive data collection was undertaken, encompassing 150 measures of precipitation, surface runoff, and soil loss mass. Results: The findings reveal bioengineering solution's comparable, if not superior, effectiveness to conventional techniques, marked by minimal soil loss and enhanced water infiltration capabilities. Analysis of Covariance showcased a very large effect size, significantly underscoring bioengineering's efficacy in soil loss control. Notably, bioengineering's contribution extends beyond erosion control, fostering aquifer recharge and preventing sedimentation in water bodies.

Conclusions

This strategic plantation of Pigeonpea, Sesame, and Cowpea stands out as a promising NbS for soil erosion control in tropical climates, characterized by its sustainable approach and minimal environmental footprint. The study advocates for the broader integration of Pigeonpea, Sesame, and Cowpea in soil conservation practices, highlighting its potential to transform erosion control strategies towards greater environmental sustainability and effectiveness.

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