Research on the composition and properties of soil substrates for ecological restoration of rocky slopes
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摘要: 【目的】随着我国经济的高速发展,矿产资源开发、道路电力等基础设施的建设产生了大量岩质边坡,对区域生态系统产生了严重影响。由于工艺简单,经济高效的特点,客土喷播技术广泛应用于岩质边坡的生态修复工作。但传统喷播基材粘结性及稳定性较差,导致高陡岩质边坡的修复效果不可持续。因此,亟需开发针对性的生态修复基材。【方法】本研究通过盆栽实验和正交实验,探索了不同配比的基材性质的优劣,包括基材保水性、水平收缩率、容重、植物发芽株数、植物生长高度,并筛选出性能优良的土壤基材。在此研究基础上,通过抗冲刷试验,分析筛选出的土壤基材的抗冲刷性能,并进一步筛选适用于高陡岩质边坡生态修复的最优配比基材。【结果】结果表明,适量的保水剂可提高植物的发芽率与生长高度,而稍高含量的粘结剂(大于0.15%)不仅使植物的生长高度减小,还会降低植物的生长速率;不同配比基材的性能具有明显差异,但各指标几乎都优于空白对照组的自然土壤;经过筛选,P6、P10、P16、P1、P15组基材的植物生长状况、物理结构及保水性良好;随着坡度和降雨强度的升高,基材流失量明显增加,并且P15组基材具有优越的抗冲刷性能。【结论】因此,当边坡坡度较小(60°以下)或者偶发大雨时,基材可直接应用于边坡生态修复;当边坡坡度较大(60°以上)或者频发大到暴雨时,基材应用时应搭配防护网等工程。该研究对于岩质边坡的生态修复具有重要的指导意义。Abstract: [Objective]With the rapid development of the economy in China, the exploration of mineral resources, construction of roads, electricity and other infrastructure have produced a massive number of rocky slopes, which have a serious impact on the regional ecosystem. Because of the simple process, economy and high efficiency, the external-soil spray seeding is widely used in the ecological restoration of rocky slopes. However, the poor adhesion and stability of traditional spraying soil substrates lead to unsustainable restoration of rocky slopes. Therefore, there is an urgent need to develop targeted ecological restoration soil substrates. [Methods]In this study, we analyzed the properties of soil substrates with different compositional components, including substrate water retention, horizontal shrinkage, weight capacity, plant germination number, and plant height through pot experiments and orthogonal experiments, and screened the soil substrate with excellent performance. On the basis of the above study, the erosion resistance of the screened soil substrates was analyzed through the erosion resistance test, and the optimal soil substrate suitable for ecological restoration of high steep rocky slopes was further screened. [Results]The results showed that moderate content of water retaining agent increased the germination rate and height of plants, while slightly higher content of binder (greater than 0.15%) not only decreased the height of plants, but also reduced its growth rate. The properties of the soil substrates with different compositions differed significantly, but almost all indicators were better than those of the natural soil in the blank control group. After screening, the soil substrates in groups P6, P10, P16, P1 and P15 showed good plant growth, physical structure and water retention. Substrate loss increased significantly with increasing slope and rainfall intensity, and soil substrates in groups P15 had superior erosion resistance. [Conclusions]Therefore, the soil substrate can be directly applied to the ecological restoration of rocky slopes when the slope gradient is small (up to 60°) or when there are occasional heavy rainfalls. When the slope gradient is large (60° or more) or when there are frequent heavy rainfalls, the soil substrate should be paired with engineering applications such as protective netting.
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