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边坡植被恢复中微生物固化生态基材的配方优化

王浩 李流芳 严华祥 豆红强 吴志刚

水土保持通报2025,Vol.45Issue(2):159-170,12.
水土保持通报2025,Vol.45Issue(2):159-170,12.DOI:10.13961/j.cnki.stbctb.2025.02.017

边坡植被恢复中微生物固化生态基材的配方优化

Optimization of microbial-enhanced ecological substrate formulations for slope vegetation restoration

王浩 1李流芳 1严华祥 1豆红强 1吴志刚2

作者信息

  • 1. 福州大学紫金地质与矿业学院,福建 福州 350108
  • 2. 福建省高速公路养护工程有限公司,福建 福州 350005
  • 折叠

摘要

Abstract

[Objective]The effects of cementation solution concentration,plant fibers,microbial fertilizers and superabsorbent polymers on the mechanical and ecological properties of microbial-enhanced ecological substrates were analyzed.The adaptability of plants to substrates with different ratios was investigated,and the best formula of slope greening substrate was selected,in order to provide theoretical support and practical guidance for the preparation of novel ecological substrates and slope vegetation restoration.[Methods]An orthogonal test was performed to evaluate the influence of cement concentration,plant fiber,compound microbial fertilizer and superabsorbent polymers on microbial-enhanced ecological substrate.Thereafter,the shear strength of the substrate with different proportions was compared,and the micro-mechanism of the strength improvement of the microbial-enhanced ecological substrate was analyzed by a high-definition microscope.A pot experiment was conducted to study the seedling emergence characteristics and vegetation growth of tall fescue and alfalfa in different substrate ratios.Based on the characteristics of shear strength and plant growth,the optimal substrate formula was screened using the entropy method.[Results]① The microbial curing significantly improved the shear strength of the substrate,and increased cohesion and the internal friction angle by 179.78%—355.65%and 35.69%—58.97%,respectively.② The concentration of cementing solution was the most significant factor affecting the emergence time and rate of plants;as the concentration of the cementing solution increased,the time to emergence increased and the emergence rate decreased significantly.③ The growth indices of the plants in the substrate group improved significantly compared to those in the control group.The growth and development of tall fescue were best in the substrate with a cementing solution concentration of 0.2 mol/L,and the mass ratio of plant fiber,compound microbial fertilizer,and superabsorbent polymers of 1∶2∶0.09.Alfalfa had the best growth and development in the substrate with a cementing solution concentration of 0.2 mol/L,and plant fiber,compound microbial fertilizer,and superabsorbent polymers mass ratio of 3∶1∶0.06.[Conclusion]The shear strength of microbial-solidified ecological substrates was significantly higher than that of the matrix soil,and 0.2 mol/L was the best cementing solution concentration.At this concentration,the optimal ratios(plant fiber:composite microbial fertilizers:superabsorbent polymers)for tall fescue and alfalfa were 1∶2∶0.09 and 3∶1∶0.06,respectively.

关键词

微生物固化/生态基材/配比优化/植被修复

Key words

microbial-enhanced/ecological substrate/formulation optimization/vegetation restoration

分类

环境科学

引用本文复制引用

王浩,李流芳,严华祥,豆红强,吴志刚..边坡植被恢复中微生物固化生态基材的配方优化[J].水土保持通报,2025,45(2):159-170,12.

基金项目

国家自然科学基金项目"强降雨条件下阶梯状茶园边坡的水文响应及浅层失稳机制"(42477165) (42477165)

福建省科技厅产学研创新项目"复杂环境下建筑弃土场灾变机制及风险防控关键技术"(2022Y4002) (2022Y4002)

福建省交通运输科技项目"新型低碳装配式锚固结构智能建造成套技术研发与应用"(202202) (202202)

水利部重大科技项目"南方山丘区输变电工程水土流失防控及碳汇潜力评价研究"(SKS-2022085) (SKS-2022085)

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