Trans-regional rice supply paradigm reveals unsustainable water use in China

Author:

Wu Liang1,Wang Min2,Avishek Kirti3

Affiliation:

1. Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China

2. Policy Research Center for Environment and Economy, Ministry of Ecology and Environment, Beijing 100029, China

3. Birla Institute of Technology, Mesra, Ranchi 835215, India

Abstract

Abstract Rice is an important staple food for more than half of the global population and one of the largest water consumers on earth. Improving the efficiency of water embedded in rice production and supply could have great implications for food and water security. This study starts from Yunnan, a traditional rice producing and consuming province in southwest China, and analyses its rice supply structure and dynamics, together with embedded water footprints (WFs) of three other regions: Northeast China, South and Southwest China and Southeast Asia. The results show that Yunnan has been through drastic food change in the past decades, leading to an increasing production and supply gap. Yunnan is found to have the least WF (778.2 m3/t) for rice production across the study regions, while Northeast China consumes the highest blue WF (364.6 m3/t) and blue to total WF ratio (97.7%). The study indicates that Northeast China is at risk of groundwater deficit due to rice production and export and the current rice production and consumption pattern is inefficient. The study suggests that policies for groundwater extraction, water resource price and international trade need to be in place to ensure sustainable food supply and water use at regional and national levels.

Funder

China Academy of Chinese

Chinese Academy of Sciences

Publisher

IWA Publishing

Subject

Management, Monitoring, Policy and Law,Water Science and Technology,Geography, Planning and Development

Reference55 articles.

1. Global footprints of water and land resources through China's food trade;Ali;Global Food Security-Agriculture Policy Economics and Environment,2017

2. Anderson K. (2016). Agricultural Trade, Policy Reforms, and Global Food Security.

3. Valuing the impact of trade on local blue water;Biewald;Ecological Economics,2014

4. A conceptual framework for the improvement of crop water productivity at different spatial scales

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