| Literature DB >> 35954899 |
Zhiyuan Zhu1,2, Zhikun Mei1,2, Xiyang Xu1,2, Yongzhong Feng1,2, Guangxin Ren1,2.
Abstract
The Yellow River Basin in Shaanxi (YRBS) has a relatively fragile ecological environment, with severe soil erosion and a high incidence of natural and geological disasters. In this study, a river basin landscape ecological risk assessment model was constructed using landscape ecology principles to investigate the temporal and spatial evolution, as well as the spatial autocorrelation characteristics of landscape ecological risks in the YRBS over a 20-year period. The main findings from the YRBS were that the land use types changed significantly over the span of 20 years, there was spatial heterogeneity of the landscape pattern, and the ecological risk value was positively correlated. The threat of landscape ecological risks in YRBS is easing, but the pressure on the ecological environment is considerable. This study provides theoretical support administrative policies for future ecological risk assessment and protection, restoration measures, and control in the Yellow River Basin of Shaanxi Province.Entities:
Keywords: Shaanxi Province; Yellow River Basin; ecological risk assessment; land use
Mesh:
Year: 2022 PMID: 35954899 PMCID: PMC9368170 DOI: 10.3390/ijerph19159547
Source DB: PubMed Journal: Int J Environ Res Public Health ISSN: 1660-4601 Impact factor: 4.614
Figure 1The location of the Yellow River Basin in Shaanxi Province, China.
Figure 2The workflow of the research.
Figure 3The ecological risk evaluation cells.
Calculation formula of landscape index and ecological significance.
| Index | Calculation Formula | Ecological Significance |
|---|---|---|
| Landscape loss degree index ( |
| |
| Landscape disturbance index ( |
| |
| Landscape fragmentation index ( |
| Describes the degree of fragmentation of a landscape type in the region at a given time; such that, the higher its value, the lower the stability within the landscape unit and the greater the heterogeneity and discontinuity among patches [ |
| Landscape dominance index ( |
| The higher the value, the greater the influence of the landscape type on the overall landscape pattern [ |
| landscape separateness index ( |
| The greater the degree of separation between different patches in a landscape type, the more discrete the distribution of the landscape type in the region for a correspondingly higher degree of fragmentation [ |
| Landscape vulnerability index ( | Based on the previous studies | The higher the value, the more vulnerable and unstable the landscape type is and the more likely it will suffer ecological losses and physical changes due to external disturbances [ |
Landscape ecological risk classification in the Yellow River Basin, Shaanxi Province, China.
| Ecological Risk | Risk Level | ||||
|---|---|---|---|---|---|
| Low | Low-Medium | Medium | Medium-High | High | |
| rank | I | II | III | IV | V |
| value | 0.0135 < ERI | 0.0135 ≤ ERI < 0.030 | 0.030 ≤ ERI < 0.060 | 0.060 ≤ ERI < 0.099 | ERI ≥ 0.099 |
Change in the area and single dynamic degree of land types in the Yellow River Basin, Shaanxi Province, China.
| Land Type | 2000–2010 | 2010–2020 | 2000–2020 | |||
|---|---|---|---|---|---|---|
| Area Change (km2) | Single Dynamics (%) | Area Change (km2) | Single Dynamics (%) | Area Change (km2) | Single Dynamics (%) | |
| Cultivated Land | −1000.56 | −0.17 | −197.86 | −0.03 | −1198.41 | −0.11 |
| Forest Land | 351.25 | 0.09 | −118.57 | −0.03 | 232.68 | 0.03 |
| Grassland | −502.24 | −0.11 | −1232.16 | −0.28 | −1734.4 | −0.2 |
| Shrubland | 159.93 | 3.14 | −28.45 | −0.41 | 131.48 | 1.36 |
| Wetland | −54.8 | −2.03 | −10.77 | −0.51 | −65.56 | −1.28 |
| Water Body | −40.31 | −0.69 | 30.08 | 0.56 | −10.23 | −0.09 |
| Artificial Surface | 1072.16 | 3.11 | 1665.78 | 3.59 | 2737.94 | 4.21 |
| Bare Ground | 14.47 | 0.09 | −103.61 | −0.64 | −89.13 | −0.29 |
| Comprehensive Dynamics (%) | 0.108 | 0.114 | 0.111 | |||
Figure 4Land use type transfer area (km2) matrix of the YRBS from 2000 to 2010 (A) and 2010 to 2020 (B).
Figure 5Spatial distribution changes in landscape ecological risk areas in the Yellow River Basin, Shaanxi Province from 2000 to 2020.
Figure 6Area (km2) change of landscape ecological risk area of the Yellow River Basin, Shaanxi Province from 2000 to 2020.
Figure 7Moran’s I index scatter distribution of the landscape ecological risk values in the Shaanxi Yellow River Basin from 2000 to 2020.
Figure 8Local spatial autocorrelation distribution map of landscape ecological risks in the Yellow River Basin in Shaanxi Province from 2000 to 2020.