An assessment of anticipated future changes in water erosion dynamics under climate and land use change scenarios in South Asia

被引:5
|
作者
Das, Subhankar [1 ]
Jain, Manoj Kumar [1 ]
Gupta, Vivek [2 ]
机构
[1] Indian Inst Technol Roorkee, Dept Hydrol, Roorkee, India
[2] Indian Inst Technol Mandi, Sch Civil & Environm Engn, Mandi, India
关键词
Water erosion; South Asia; Climate change; Land use change; USLE; RUSLE; CMIP6; SOIL-EROSION; SEDIMENT YIELD; RAINFALL EROSIVITY; RIVER-BASIN; GLOBAL APPLICABILITY; PRECIPITATION DATA; MANAGEMENT FACTOR; STEEPNESS FACTOR; CHANGE IMPACTS; LS-FACTOR;
D O I
10.1016/j.jhydrol.2024.131341
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Water erosion has emerged as a significant global environmental challenge, particularly in South Asia, recognized as one of the regions hardest to hit globally by climate change. This study aims to identify the potential erosion hotspots in South Asia and to assess areas under risk in the future due to climate and land use change scenarios. We utilized the Revised Universal Soil Loss Equation (RUSLE), an empirical erosion model, to estimate erosion for both historical and future periods, considering two distinct Shared Socio-economic Pathways (SSP126 and SSP585). The baseline model predicts a mean water erosion rate of 10.6 t. ha(-1). year(-1) in South Asia, with more than 30 t. ha(-1). year(-1) recorded for 6.3 % of the total land area. Notably, Bangladesh and Nepal exhibit significantly higher erosion rates than other South Asian countries. Further, our projection indicates an + 10 % increase in erosion rates during the near future (2021-2040) under SSP585 compared to the historical estimates. A substantial rise of approximately + 31 % and + 39 % in water erosion rates in South Asia is anticipated during the far future periods of 2061-2080 and 2081-2100 under SSP585. At the country level, Bangladesh (+42 %), Bhutan (+108 %), and Nepal (+70 %) are expected to experience substantial increases in erosion rates during the 2081-2100 period, with India projecting a + 38 % increase. Additionally, a significant + 35 % expansion in the spatial extent of high erosion areas (>30 t. ha(-1). year(-1)) is foreseen in 2081-2100 under SSP585. Furthermore, under the low climate change scenario (SSP126), the impact on the erosion rates is minimal, while under SSP585, a substantial increase in erosion rates is anticipated. Regions such as Southern India, the arid and semi-arid areas near the India-Pakistan border, and the Himalayan foothills are identified as hotspots for significant changes in erosion rates. Acknowledging a certain level of uncertainty, our study provides valuable insights into erosion risk areas in South Asia and their plausible future impacts due to climate and land use changes. This information can assist policymakers in South Asian countries in developing national-level strategies for soil conservation and climate resilience.
引用
收藏
页数:18
相关论文
共 50 条
  • [11] Global soil water erosion responses to climate and land use changes
    Xiong, Muqi
    Leng, Guoyong
    CATENA, 2024, 241
  • [12] Integrating sediment connectivity and stream power index with RUSLE for modelling soil erosion dynamics in a large Himalayan basin under modern and future climate scenarios
    Singh, Shobhit
    Swarnkar, Somil
    Sinha, Rajiv
    EARTH SURFACE PROCESSES AND LANDFORMS, 2025, 50 (03)
  • [13] Individual and Coupled Effects of Future Climate and Land Use Scenarios on Water Balance Components in an Australian Catchment
    Zhang, Hong
    Wang, Bin
    Liu, De Li
    Leslie, Lance M.
    Shi, Lijie
    Zhang, Mingxi
    Yu, Qiang
    ATMOSPHERE, 2022, 13 (09)
  • [14] Assessment of future flood inundations under climate and land use change scenarios in the Ciliwung River Basin, Jakarta
    Mishra, B. K.
    Emam, A. Rafiei
    Masago, Y.
    Kumar, P.
    Regmi, R. K.
    Fukushi, K.
    JOURNAL OF FLOOD RISK MANAGEMENT, 2018, 11 : S1105 - S1115
  • [15] Future Scenarios of Soil Erosion in the Alps under Climate Change and Land Cover Transformations Simulated with Automatic Machine Learning
    Gianinetto, Marco
    Aiello, Martina
    Vezzoli, Renata
    Polinelli, Francesco Niccolo
    Rulli, Maria Cristina
    Chiarelli, Davide Danilo
    Bocchiola, Daniele
    Ravazzani, Giovanni
    Soncini, Andrea
    CLIMATE, 2020, 8 (02)
  • [16] Assessing the effectiveness of protected areas for panda conservation under future climate and land use change scenarios
    Tang, Junfeng
    Swaisgood, Ronald R.
    Owen, Megan A.
    Zhao, Xuzhe
    Wei, Wei
    Hong, Mingsheng
    Zhou, Hong
    Zhang, Zejun
    JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2023, 342
  • [17] Integrated GIS-based RUSLE approach for quantification of potential soil erosion under future climate change scenarios
    Madhusmita Behera
    Dipaka R. Sena
    Uday Mandal
    Pradeep S. Kashyap
    Sonam S. Dash
    Environmental Monitoring and Assessment, 2020, 192
  • [18] How will future climate change and land-use change affect rates of erosion on agricultural land?
    Boardman, J
    Favis-Mortlock, DT
    SOIL EROSION RESEARCH FOR THE 21ST CENTURY, PROCEEDINGS, 2001, : 498 - 501
  • [19] Simulating the Impact of Future Land Use and Climate Change on Soil Erosion and Deposition in the Mae Nam Nan Sub-Catchment, Thailand
    Plangoen, Pheerawat
    Babel, Mukand Singh
    Clemente, Roberto S.
    Shrestha, Sangam
    Tripathi, Nitin Kumar
    SUSTAINABILITY, 2013, 5 (08) : 3244 - 3274
  • [20] Impact of the climate change and the land use/land cover change in the hydrological and water erosion response in the Quiscab River subbasin
    Gonzalez-Celada, Giovanni
    Rios, Ney
    Benegas-Negri, Laura
    Argotty-Benavides, Freddy
    TECNOLOGIA Y CIENCIAS DEL AGUA, 2021, 12 (06) : 363 - 421