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High-resolution monitoring of inland water bodies across China in long time series and water resource changes

Author

Listed:
  • Xiaowei Chuai

    (Nanjing University)

  • Ye Yuan

    (Nanjing University)

  • Rongqin Zhao

    (North China University of Water Resources and Electric Power)

  • Song Song

    (Guangzhou University)

Abstract

The accurate examination of inland water body distributions, types, areas and sizes is critical for global water cycling, while water resources and the diagnosis of utilization problem are essential to sustainable water management. Therefore, there remain less well-studied in China, especially for the accurate examination of long time series. Based on high-resolution satellite imagery from the late 1970s, statistical water resource data and precipitation data, this study identifies inland rivers, lakes, reservoirs and ponds larger than 0.001 km2, examines the regularity of different water distributions; analyzes area, perimeter and water resource changes for ten basins from long time series, quantitatively and qualitatively analyzes determinants, and illustrates main characteristics and water use problems affecting each basin and presents a number of suggestions. The results show that inland water body areas increased from 1980 to 2015 and that reservoir and pond areas increased considerably, while lake and river areas changed little. Land surface water resources and precipitation declined slightly from 1997 to 2015. Climatic conditions determine basic water body and resource distributions and volumes at the macroscopic scale, and human activities have greatly altered spatial patterns. Basin with rivers in the southwest includes highly exploitable water resources. Basin with rivers in the northwest faces considerable water shortages and fragile environmental conditions. The Yellow River, the Haihe River and the Songhua and Liaohe River Basins suffer from water shortages and pollution. The other four basins are experiencing eutrophication and frequent meteorological and geological hazards. Sustainable water management must be based on basin characteristics and major problems.

Suggested Citation

  • Xiaowei Chuai & Ye Yuan & Rongqin Zhao & Song Song, 2021. "High-resolution monitoring of inland water bodies across China in long time series and water resource changes," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 23(3), pages 3673-3695, March.
  • Handle: RePEc:spr:endesu:v:23:y:2021:i:3:d:10.1007_s10668-020-00738-6
    DOI: 10.1007/s10668-020-00738-6
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    References listed on IDEAS

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    1. Qiang Zhang & Chong-Yu Xu & Tao Yang, 2009. "Variability of Water Resource in the Yellow River Basin of Past 50 Years, China," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 23(6), pages 1157-1170, April.
    2. C. J. Vörösmarty & P. B. McIntyre & M. O. Gessner & D. Dudgeon & A. Prusevich & P. Green & S. Glidden & S. E. Bunn & C. A. Sullivan & C. Reidy Liermann & P. M. Davies, 2010. "Global threats to human water security and river biodiversity," Nature, Nature, vol. 467(7315), pages 555-561, September.
    3. Jim Giles, 2006. "Methane quashes green credentials of hydropower," Nature, Nature, vol. 444(7119), pages 524-524, November.
    4. Mingguang Tu & Futao Wang & Yi Zhou & Shixin Wang, 2016. "Gridded Water Resource Distribution Simulation for China Based on Third-Order Basin Data from 2002," Sustainability, MDPI, vol. 8(12), pages 1-14, December.
    5. Hanjra, Munir A. & Qureshi, M. Ejaz, 2010. "Global water crisis and future food security in an era of climate change," Food Policy, Elsevier, vol. 35(5), pages 365-377, October.
    6. Peter A. Raymond & Jens Hartmann & Ronny Lauerwald & Sebastian Sobek & Cory McDonald & Mark Hoover & David Butman & Robert Striegl & Emilio Mayorga & Christoph Humborg & Pirkko Kortelainen & Hans Dürr, 2013. "Global carbon dioxide emissions from inland waters," Nature, Nature, vol. 503(7476), pages 355-359, November.
    7. Shilong Piao & Philippe Ciais & Yao Huang & Zehao Shen & Shushi Peng & Junsheng Li & Liping Zhou & Hongyan Liu & Yuecun Ma & Yihui Ding & Pierre Friedlingstein & Chunzhen Liu & Kun Tan & Yongqiang Yu , 2010. "The impacts of climate change on water resources and agriculture in China," Nature, Nature, vol. 467(7311), pages 43-51, September.
    8. Yuanan Hu & Hefa Cheng, 2013. "The urgency of assessing the greenhouse gas budgets of hydroelectric reservoirs in China," Nature Climate Change, Nature, vol. 3(8), pages 708-712, August.
    9. Jane Qiu, 2010. "China faces up to groundwater crisis," Nature, Nature, vol. 466(7304), pages 308-308, July.
    10. Jan Eliasson, 2015. "The rising pressure of global water shortages," Nature, Nature, vol. 517(7532), pages 6-6, January.
    11. Carole Dalin & Yoshihide Wada & Thomas Kastner & Michael J. Puma, 2017. "Groundwater depletion embedded in international food trade," Nature, Nature, vol. 543(7647), pages 700-704, March.
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