Arid
DOI10.1016/j.advwatres.2018.09.011
Groundwater saving and quality improvement by reducing water footprints of crops to benchmarks levels
Karandish, Fatemeh1; Hoekstra, Arjen Y.2,3; Hogeboom, Rick J.2
通讯作者Karandish, Fatemeh
来源期刊ADVANCES IN WATER RESOURCES
ISSN0309-1708
EISSN1872-9657
出版年2018
卷号121页码:480-491
英文摘要

The formulation of water footprint (WF) benchmarks in crop production - i.e. identifying reference levels of reasonable amounts of water consumption and pollution per tonne of crop produced -has been suggested as a promising strategy to counter inefficient water use and pollution. The current study is the first to show how setting WF benchmarks may help alleviate groundwater scarcity and pollution, in a case study for Iran. We advance the field of WF assessment by developing WF benchmark levels for crop production, which we successively use to assess potential groundwater saving, quality improvement and economic water productivity gains. First, we calculate climate-specific WF benchmark levels for both total blue water footprints and nitrogen-related grey groundwater footprints for 26 crops, for all years in the period 1980-2010, at 5 x 5’ spatial resolution. Second, we estimate the water saving potential for total blue water resources and for groundwater resources specifically, as well as the grey groundwater footprint reduction potential. Finally, we compare mean economic water productivities of crop production in the past with productivities if WFs are reduced to benchmark levels. We find that groundwater comprises up to 83% of total blue water consumption of irrigated crops, with the highest share in arid areas and in cereals. Aquifers are under significant to severe stress, except in the dry sub-humid zone, where irrigation mainly relies on surface water. Reducing WFs of crops to 25th percentile benchmark levels can save 32% of groundwater compared to the reference year 2010, and lower the nitrogen-related grey groundwater footprint by 23%. Moreover, it would increase average economic groundwater productivity in Iran by 20% for cereals, and 59% for nuts. We conclude that reducing WFs to climate-specific benchmark levels in a water-stressed country is a promising way to alleviate overexploitation of aquifers and increase national food security.


英文关键词Water footprint assessment Groundwater scarcity Groundwater quality Nitrate pollution Benchmarking Water saving Crop production
类型Article
语种英语
国家Iran ; Netherlands ; Singapore
收录类别SCI-E
WOS记录号WOS:000447617000035
WOS关键词SIMULATE YIELD RESPONSE ; LAND SUBSIDENCE ; REDUCTION ; GREEN ; MODEL ; BLUE ; DEPLETION
WOS类目Water Resources
WOS研究方向Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/207225
作者单位1.Univ Zabol, Water Engn Dept, Zabol, Iran;
2.Univ Twente, Twente Water Ctr, POB 217, NL-7500 AE Enschede, Netherlands;
3.Natl Univ Singapore, Lee Kuan Yew Sch Publ Policy, Inst Water Policy, Singapore 259770, Singapore
推荐引用方式
GB/T 7714
Karandish, Fatemeh,Hoekstra, Arjen Y.,Hogeboom, Rick J.. Groundwater saving and quality improvement by reducing water footprints of crops to benchmarks levels[J],2018,121:480-491.
APA Karandish, Fatemeh,Hoekstra, Arjen Y.,&Hogeboom, Rick J..(2018).Groundwater saving and quality improvement by reducing water footprints of crops to benchmarks levels.ADVANCES IN WATER RESOURCES,121,480-491.
MLA Karandish, Fatemeh,et al."Groundwater saving and quality improvement by reducing water footprints of crops to benchmarks levels".ADVANCES IN WATER RESOURCES 121(2018):480-491.
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