Arid
DOI10.3389/fenvs.2022.930519
Microtopographic reconstruction improves soil erosion resistance and vegetation characteristics on the slopes of large dump sites in semi-arid areas
Tian, Xiumin; Yin, Ruiping; Wang, Jian; Dong, Lei; Cheng, Bo; Liu, Hu; Ge, Nan
通讯作者Wang, J
来源期刊FRONTIERS IN ENVIRONMENTAL SCIENCE
EISSN2296-665X
出版年2022
卷号10
英文摘要In view of the management of slopes in large mine dumps in semi-arid regions, this study explored different methods for controlling soil erosion and improving the microenvironment of the surface of such slopes. Focusing on microtopography modifications and vegetation measures on the slopes of a large mine dump in a semi-arid region, the soil erosion resistance of the slope was continuously monitored using installed observation plots. In addition, the characteristics of plant communities that thrived on the dump were investigated. The results indicate that the soil erosion resistance, soil organic matter content, and biodiversity increased to different degrees in the large mine dump that experienced microtopography modifications and implemented vegetation measures compared with those of slopes managed only by soil cover and planting. Compared with that in the control plot, under the same vegetation restoration measures, the macroaggregate content in the four plots that implemented microtopography modifications increased by 20%, 24%, 21%, and 30%; the soil erodibility (K-factor) decreased by 7.8%, 8.5%, 10%, and 10.7%; and the soil organic matter increased by 2%, 4.5%, 3.4%, and 4.7%. Microtopography modification consisting of U-shaped blocking boards and fixed rods embedded in the slope, combined with vegetation measures, resulted in a protective effect, which in turn induced the highest diversity, evenness, and richness index values of 2.35, 0.87, and 1.94, respectively. The study results revealed that a combination of microtopography modifications and vegetation measures can be used to achieve effective vegetation restoration, prevent soil erosion, and create different microhabitats, indicating that our approach is an effective way to control critical issues affecting large mine dumps in semi-arid regions.
英文关键词semi-arid region mine dump microtopography modification soil erosion species diversity
类型Article
语种英语
开放获取类型gold
收录类别SCI-E
WOS记录号WOS:000843192000001
WOS关键词RAINFALL SIMULATION ; ORGANIC-CARBON ; LOESS PLATEAU ; LAND-USE ; RUNOFF ; WATER ; RECLAMATION ; STABILITY ; IMPACTS ; MINE
WOS类目Environmental Sciences
WOS研究方向Environmental Sciences & Ecology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/392713
推荐引用方式
GB/T 7714
Tian, Xiumin,Yin, Ruiping,Wang, Jian,et al. Microtopographic reconstruction improves soil erosion resistance and vegetation characteristics on the slopes of large dump sites in semi-arid areas[J],2022,10.
APA Tian, Xiumin.,Yin, Ruiping.,Wang, Jian.,Dong, Lei.,Cheng, Bo.,...&Ge, Nan.(2022).Microtopographic reconstruction improves soil erosion resistance and vegetation characteristics on the slopes of large dump sites in semi-arid areas.FRONTIERS IN ENVIRONMENTAL SCIENCE,10.
MLA Tian, Xiumin,et al."Microtopographic reconstruction improves soil erosion resistance and vegetation characteristics on the slopes of large dump sites in semi-arid areas".FRONTIERS IN ENVIRONMENTAL SCIENCE 10(2022).
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