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A bibliometric analysis of the water-energy-food nexus based on the SCIE and SSCI database of the Web of Science

Author

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  • Jing-Li Fan

    (State Key Laboratory of Coal Resources and Safe Mining (China University of Mining and Technology)
    China University of Mining & Technology, Beijing (CUMTB))

  • Qian Wang

    (China University of Mining & Technology, Beijing (CUMTB))

  • Xian Zhang

    (The Administrative Centre for China’s Agenda 21 (ACCA21), Ministry of Science and Technology (MOST))

Abstract

In the context of climate change mitigation and adaptation, the concept of the water-energy-food nexus (WEF nexus) has resulted in an increased focus on the long-neglected potential trade-offs between the water, energy, and food sector. In this study, we obtained 3077 publications from the Science Citation Index Expanded (SCIE) and the Social Sciences Citation Index (SSCI) in the Web of Science. A bibliometric method was used to characterize the publications, the participating countries, and the research trends in the field of the WEF nexus. The results show (i) the number of scientific publications increased exponentially from 2011 to June 2019, with an average annual growth rate of 27.87%. (ii) The Journal of Geophysical Research: Atmospheres had the most publications related to WEF nexus research. (iii) Environmental Sciences Ecology was the subject category with the most publications. (iv) WEF nexus research was led by the USA, which produced 40.14% of the publications in this field, and five of the ten most influential institutions are American institutions. (v) China ranked in second place regarding publication volume and exceeded the UK in 2016 in annual publications. The Chinese Academy of Sciences was the most productive research institution. (vi) Academic collaboration between countries was widespread in the WEF nexus field; the top 10 most productive countries all had high proportions of collaborative publications (> 40%), and Austria had the highest percentage (91.49%). (vi) Co-word analysis indicated that the term map had three clusters in 1988–2011 focusing on biological production, climate and meteorology, and land surface research. In 2012–2019, the term map also had three clusters, including experimental research on recyclables, resource management, and land-atmosphere interactions. Frequency analysis of the keywords in different countries showed different research emphases in the top 10 most productive countries. The analyses of frequently used keywords also revealed the research hotspots and trends. “Climate change” was the second most frequently used keyword in these countries. The interpretation of climate change mitigation and adoption strategies from the WEF nexus perspective is an important research direction.

Suggested Citation

  • Jing-Li Fan & Qian Wang & Xian Zhang, 2021. "A bibliometric analysis of the water-energy-food nexus based on the SCIE and SSCI database of the Web of Science," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 26(2), pages 1-26, February.
  • Handle: RePEc:spr:masfgc:v:26:y:2021:i:2:d:10.1007_s11027-021-09938-5
    DOI: 10.1007/s11027-021-09938-5
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    1. Dafni Despoina Avgoustaki & George Xydis, 2020. "Plant factories in the water-food-energy Nexus era: a systematic bibliographical review," Food Security: The Science, Sociology and Economics of Food Production and Access to Food, Springer;The International Society for Plant Pathology, vol. 12(2), pages 253-268, April.
    2. Adenike K. Opejin & Rimjhim M. Aggarwal & Dave D. White & J. Leah Jones & Ross Maciejewski & Giuseppe Mascaro & Hessam S. Sarjoughian, 2020. "A Bibliometric Analysis of Food-Energy-Water Nexus Literature," Sustainability, MDPI, vol. 12(3), pages 1-18, February.
    3. Hosseini, Seyedmohsen & Barker, Kash & Ramirez-Marquez, Jose E., 2016. "A review of definitions and measures of system resilience," Reliability Engineering and System Safety, Elsevier, vol. 145(C), pages 47-61.
    4. Christopher McCarty & James W. Jawitz & Allison Hopkins & Alex Goldman, 2013. "Predicting author h-index using characteristics of the co-author network," Scientometrics, Springer;Akadémiai Kiadó, vol. 96(2), pages 467-483, August.
    5. Junfei Chen & Xiaoya Yu & Lei Qiu & Menghua Deng & Ran Dong, 2018. "Study on Vulnerability and Coordination of Water-Energy-Food System in Northwest China," Sustainability, MDPI, vol. 10(10), pages 1-25, October.
    6. Brennan, Liam & Owende, Philip, 2010. "Biofuels from microalgae--A review of technologies for production, processing, and extractions of biofuels and co-products," Renewable and Sustainable Energy Reviews, Elsevier, vol. 14(2), pages 557-577, February.
    7. Jianxin Mu & Shahbaz Khan, 2009. "The effect of climate change on the water and food nexus in China," Food Security: The Science, Sociology and Economics of Food Production and Access to Food, Springer;The International Society for Plant Pathology, vol. 1(4), pages 413-430, December.
    8. Searchinger, Timothy & Heimlich, Ralph & Houghton, R. A. & Dong, Fengxia & Elobeid, Amani & Fabiosa, Jacinto F. & Tokgoz, Simla & Hayes, Dermot J. & Yu, Hun-Hsiang, 2008. "Use of U.S. Croplands for Biofuels Increases Greenhouse Gases Through Emissions from Land-Use Change," Staff General Research Papers Archive 12881, Iowa State University, Department of Economics.
    9. Golam Rasul & Bikash Sharma, 2016. "The nexus approach to water–energy–food security: an option for adaptation to climate change," Climate Policy, Taylor & Francis Journals, vol. 16(6), pages 682-702, August.
    10. Xiaoxi Yan & Dong Jiang & Jingying Fu & Mengmeng Hao, 2018. "Assessment of Sweet Sorghum-Based Ethanol Potential in China within the Water–Energy–Food Nexus Framework," Sustainability, MDPI, vol. 10(4), pages 1-17, April.
    11. Dai, Jiangyu & Wu, Shiqiang & Han, Guoyi & Weinberg, Josh & Xie, Xinghua & Wu, Xiufeng & Song, Xingqiang & Jia, Benyou & Xue, Wanyun & Yang, Qianqian, 2018. "Water-energy nexus: A review of methods and tools for macro-assessment," Applied Energy, Elsevier, vol. 210(C), pages 393-408.
    12. Zhang, Tong & Tan, Qian & Yu, Xiaoning & Zhang, Shan, 2020. "Synergy assessment and optimization for water-energy-food nexus: Modeling and application," Renewable and Sustainable Energy Reviews, Elsevier, vol. 134(C).
    13. Ai Leon & Kazunori Kohyama & Kazuyuki Yagi & Yusuke Takata & Hiroshi Obara, 2017. "The effects of current water management practices on methane emissions in Japanese rice cultivation," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 22(1), pages 85-98, January.
    14. Bazilian, Morgan & Rogner, Holger & Howells, Mark & Hermann, Sebastian & Arent, Douglas & Gielen, Dolf & Steduto, Pasquale & Mueller, Alexander & Komor, Paul & Tol, Richard S.J. & Yumkella, Kandeh K., 2011. "Considering the energy, water and food nexus: Towards an integrated modelling approach," Energy Policy, Elsevier, vol. 39(12), pages 7896-7906.
    15. Govindan, Rajesh & Al-Ansari, Tareq, 2019. "Computational decision framework for enhancing resilience of the energy, water and food nexus in risky environments," Renewable and Sustainable Energy Reviews, Elsevier, vol. 112(C), pages 653-668.
    16. Kathleen Miller & Valerie Belton, 2014. "Water resource management and climate change adaptation: a holistic and multiple criteria perspective," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 19(3), pages 289-308, March.
    17. Dong Jiang & Shuai Chen & Mengmeng Hao & Jingying Fu & Fangyu Ding, 2018. "Assessing the Sustainable Development of Bioenergy from Cassava within “Water-Energy-Food” Nexus Framework in China," Sustainability, MDPI, vol. 10(7), pages 1-17, June.
    18. Bao U. Nguyen, 2014. "Assessment of a Ballistic Missile Defense System," Defense & Security Analysis, Taylor & Francis Journals, vol. 30(1), pages 4-16, March.
    19. Steven Rose & Elmar Kriegler & Ruben Bibas & Katherine Calvin & Alexander Popp & Detlef Vuuren & John Weyant, 2014. "Bioenergy in energy transformation and climate management," Climatic Change, Springer, vol. 123(3), pages 477-493, April.
    20. Mukherji, Aditi, 2007. "The energy-irrigation nexus and its impact on groundwater markets in eastern Indo-Gangetic basin: Evidence from West Bengal, India," Energy Policy, Elsevier, vol. 35(12), pages 6413-6430, December.
    21. J. Sun & Y. P. Li & X. W. Zhuang & S.W. Jin & G. H. Huang & R. F. Feng, 2018. "Identifying water resources management strategies in adaptation to climate change under uncertainty," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 23(4), pages 553-578, April.
    22. Hernandez, R.R. & Easter, S.B. & Murphy-Mariscal, M.L. & Maestre, F.T. & Tavassoli, M. & Allen, E.B. & Barrows, C.W. & Belnap, J. & Ochoa-Hueso, R. & Ravi, S. & Allen, M.F., 2014. "Environmental impacts of utility-scale solar energy," Renewable and Sustainable Energy Reviews, Elsevier, vol. 29(C), pages 766-779.
    23. Sebastian Hermann & Manuel Welsch & Rebecka Ericsdotter Segerstrom & Mark I. Howells & Charles Young & Thomas Alfstad & Hans‐Holger Rogner & Pasquale Steduto, 2012. "Climate, land, energy and water (CLEW) interlinkages in Burkina Faso: An analysis of agricultural intensification and bioenergy production," Natural Resources Forum, Blackwell Publishing, vol. 36(4), pages 245-262, November.
    24. Wichelns, Dennis, 2017. "The water-energy-food nexus: Is the increasing attention warranted, from either a research or policy perspective?," Environmental Science & Policy, Elsevier, vol. 69(C), pages 113-123.
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