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生物胶-黏土复合基质在边坡生态修复中的应用

Application of Biological Glue-Clay Composite Substrate in Slope Ecological Restoration.

作者信息

Zhu Xufen, Zheng Jiaqiang, Gao Yuliang, Xue Jian, Hu Guochang, Che Wenyue, Song Zezhuo, Liu Jin, Huang Tingwei, Wu Peng

机构信息

School of Earth Sciences and Engineering, Hohai University, Nanjing 210098, China.

Jiangsu Institute of Geology and Minerals Investigation, Jiangsu Geological Bureau, Nanjing 210000, China.

出版信息

Polymers (Basel). 2023 Sep 14;15(18):3763. doi: 10.3390/polym15183763.

Abstract

Given the issues of soil cracking, poor water retention during drought, and erosion damage caused by rainfall, we conducted an in-depth study on the water retention properties, cracking resistance, and scouring resistance of biogel-amended clay using evaporation cracking and scouring tests. The hydrophysical properties and cohesive aggregation mechanism of biogel-amended clay were explored, and the results showed that the incorporation of biogel improved the water retention, cracking resistance, and scour resistance of the clay samples. With an increase in the biogel content, the biogel mucous membrane inside the samples improved the cohesion between soil particles, reduced the generation and development of cracks, and improved the cracking resistance. There was no significant cracking of the samples after the biogel content reached 0.3%, which changed the migration of water in the sample, prevented water evaporation, and improved the water retention of the clay samples. Biofilm can change the migration of water in the sample, prevent some evaporation, and reduce the evaporation rate. To a certain extent, it can enhance the water retention capacity of the sample. Enhanced biofilm content significantly reduced scouring in the process of rainfall and runoff erosion of the sample, and biofilm content of 0.2% significantly reduced the surface of the specimen damaged by erosion. The hydrophysical properties of the composite-adhesive-amended clay samples were significantly improved compared with those of the single-bioadhesive-amended clay samples.

摘要

鉴于土壤开裂、干旱期间保水性差以及降雨造成侵蚀破坏等问题,我们通过蒸发开裂试验和冲刷试验,对生物凝胶改良黏土的保水性能、抗裂性和抗冲刷性进行了深入研究。探讨了生物凝胶改良黏土的水文物理性质和黏聚团聚机理,结果表明,生物凝胶的掺入改善了黏土样品的保水性能、抗裂性和抗冲刷性。随着生物凝胶含量的增加,样品内部的生物凝胶黏膜提高了土壤颗粒间的黏聚力,减少了裂缝的产生和发展,提高了抗裂性。当生物凝胶含量达到0.3%后,样品无明显开裂,这改变了样品中水分的迁移,防止了水分蒸发,提高了黏土样品的保水性能。生物膜可以改变样品中水分的迁移,防止部分水分蒸发,降低蒸发速率。在一定程度上,它可以增强样品的保水能力。生物膜含量的增加显著减少了样品在降雨和径流侵蚀过程中的冲刷,生物膜含量为0.2%时显著减少了试样表面的侵蚀破坏。与单一生物黏合剂改良黏土样品相比,复合黏合剂改良黏土样品的水文物理性质有显著改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bf6/10534411/1791dcff180f/polymers-15-03763-g001.jpg

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