Ecological Protection Technology of Spraying Vegetation Concrete on Carbonaceous Rock Slope Experimental Research and Application

Author:

Chang Zhenchao1ORCID,Luo Junhui1,Tang Qiongzhen2,Zeng Ling3ORCID,Zhang Hongri4,Li Youjun4,Yang Gexiao5,Zhang Liming5

Affiliation:

1. Guangxi Beitou Transportation Maintenance Technology Group Co., Ltd., Nanning 530029, Guangxi, China

2. Liuzhou Institute of Technology, Liuzhou 545000, Guangxi, China

3. School of Civil Engineering, Changsha University of Science & Technology, Changsha, Hunan 410114, China

4. Guangxi Transportation Science and Technology Group Co., Ltd., Nanning 530007, Guangxi, China

5. Guangxi Xinfazhan Communications Group Co., LTD, Nanning 530029, Guangxi, China

Abstract

To solve the environmental protection issue of carbonaceous rock slope, the failure mechanism of carbonaceous rock slope and the protection mechanism of vegetation concrete are analyzed based on the engineering characteristics of carbonaceous rock and vegetation concrete. Therefore, the field test of vegetation concrete was carried out to obtain the optimal dosage of vegetation concrete greening additive. The application of environmental protection technology of vegetation concrete on carbonaceous rock slope is applied in slope engineering of Hebai highway, and the change law of soil fertility was analyzed to verify the effect of ecological protection. The results show that the protection mechanism of vegetation concrete slope protection technology is mainly categorized into two groups, namely, the surface sealing effect of vegetation concrete substrate in the early stage and the plant ecological protection effect in the later stage. The experiment results show that the optimum dosage of green additive for vegetation concrete is ranging from 30 kg/m3 to 40 kg/m3. According to the field application, within one year after the construction of vegetation concrete, the contents of available phosphorus, potassium, and organic matter increased by 70.2%, 24.9%, and 76.8%, respectively. Moreover, the content of alkali hydrolyzed nitrogen decreased by 44.8% and bulk density by 17.4%; the content of total phosphorus changed little. After 60 days of construction, the vegetation coverage rate of the slope can reach more than 95% and there is no obvious soil erosion phenomenon after three times of heavy rainfall.

Funder

Science And Technology Project of Guangxi

Publisher

Hindawi Limited

Subject

Civil and Structural Engineering

Reference14 articles.

1. Advances in biological protection of rock slopes in China;J. M. Zhang;Journal of Soil and Water Conservation,2019

2. Application and study on technique of ecological slope-protection with preventing erosion basismaterial;C. Sun;Water conservancy and hydropower technology,2009

3. Reinforcement mechanism of soil slope surface with polymer soil stabilizer and its application;J. Liu;Journal of Earth Sciences and Environment,2016

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