Optimization of Wetland Plant Selection and Configuration in Urban Water Environment Ecological Restoration Projects
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Keywords

Wetland plants
Water environment restoration
Plant configuration optimization
Pollutant removal
Ecological restoration

DOI

10.26689/jard.v8i6.8966

Submitted : 2024-10-29
Accepted : 2024-11-13
Published : 2024-11-28

Abstract

In urban water ecological restoration projects, the selection and configuration of wetland plants are crucial for water quality improvement, ecological diversity enhancement, and landscape beautification. Different plants have different characteristics, and a scientific and rational selection and optimization of plant species is needed. This paper proposes an optimized plant selection and configuration scheme for urban water ecological restoration based on the ecological characteristics and pollutant removal performance of wetland plants. It analyzes the diversity, removal mechanisms, and configuration modes of wetland plants, taking into account ecology, aesthetics, and cost-effectiveness, to provide scientific evidence for wetland plant configuration and support water environment management decision-making.

References

Han J, 2024, Research on Urban Water Environmental Ecology Monitoring and Spatial-Temporal Evolution Patterns. Cleaning World, 40(10): 90–92.

Li G, Cui G, Zhu Y, et al., 2024, Restoration and Comprehensive Treatment of Urban Water Environment. Residence & Industry, 2024(10): 61–63.

Yang Z, 2024, Study on the Ecological Carrying Capacity of Urban River Water Environment for Wastewater Absorption. Environmental Science and Management, 49(10): 159–163.

Wang Q, 2024, Key Points and Strategies for Ecological Restoration of Urban River Water Environment. Heilongjiang Environmental Bulletin, 37(09): 117–119.

Yan L, Han X, Fan Y, 2024, Research on Integrated Technology for Urban River Ecological Construction and Water Environment Safety Assurance. Leather Making and Environmental Protection Technology, 5(17): 58–60.

Song W, Zhao Z, Han L, et al., 2024, Analysis of Ecological Water Environment Treatment Scheme for Urban Rivers. Leather Making and Environmental Science and Technology, 5(16): 67–69.

Chen X, Zhu H, Jia D, et al., 2024, Study on the Calculation Method of Ecological Restoration Water Threshold for Typical Urban Rivers. Water Resources and Hydropower Technology (Chinese and English), 2024: 1–13.

Wang Z, Sun G, 2024, Application Research on Multi-dimensional Ecological Restoration Technology in Urban Water Environment Governance. China Strategic Emerging Industries, 2024(14): 147–149.

Wang D, 2024, Application Research on Multi-dimensional Ecological Restoration Technology in Urban Water Environment Governance. Future Urban Design and Operation, 2024(01): 44–46.

Ding X, Zhao S, Wang Z, 2024, Research Progress on Urban Water Environmental Ecological Restoration Technology. Guangdong Chemical Industry, 51(2): 90–91 + 115.

Shi H, Wang Y, Chen C, 2023, Research on Ecological Safety Evaluation of Urban Water Environment. Water Resources Planning and Design, 2023(5): 34–40.

Wang Y, 2022, Water Environmental Ecological Restoration and Analysis of Environmental Flow Requirements in a City. Hunan Water Resources and Hydropower, 2022(2): 48–50.

Wang Z, 2021, Urban Water Environmental Ecological Restoration Issues and Solutions. Shanxi Water Conservancy, 37(01): 11–12.

Shi L, 2020, Urban Water Environmental Ecological Restoration Issues and Solutions. Engineering Technology Research, 5(13): 242–243.

Sun C, 2019, Research on Urban Water Environmental Restoration. Smart City, 5(23): 145–146.