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A comparative analysis of ecosystem service values from various rice farming systems: A field experiment in China

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  • Ye, Yanqiong
  • Bai, Hui
  • Zhang, Jiaen
  • Sun, Daolin

Abstract

Integrated farming systems in paddy fields are being widely adopted for water-food-energy nexus in China. The mechanisms of these integrated farming systems and their economic and ecological benefits have been studied, however, investigation on their ecosystem service values (ESVs) remains limited in the field. To address this gap, this study comparatively analyzed the ESVs of rice monoculture, rice-fish co-culture and rice-fish-water spinach co-culture through a field experiment during the early and late rice growing seasons in 2022. Six positive ESVs including the primary product supply, CO2 fixation, O2 release, soil organic matter accumulation, flood control and water storage, soil nutrient maintenance, and one negative ESV of greenhouse gas (GHG) emissions were investigated and evaluated. The highest total positive ESV was approximately 50,200 US$/ha/yr of the rice-fish-water spinach co-culture, which was 31.4% higher than that of the rice monoculture, and the total primary products value increased by more than two folds than that of the rice monoculture. The total ESVs of the rice-fish co-culture resulted in approximately 43,700 US$/ha/yr, which was 14.4% higher than that of the rice monoculture of 38,200 US$/ha/yr, and the total primary products value increased by 63% as compared with the rice monoculture. Subtracting the negative value of GHG emissions, the net ESVs was approximately 49,400 US$/ha/yr of the rice-fish-water spinach co-culture, followed by 42,900 US$/ha/yr of the rice-fish co-culture, and 37,600 US$/ha/yr of the rice monoculture. Our findings suggested that it should be encouraged to adopt good integrated farming systems for better ecosystem services in paddy fields and to promote the decision makers’ and the public awareness on ecological farming, and field experiments are warranted to explore more practical co-culture systems and to optimize and maximize economic and ecological benefits as well as ecosystem service functions.

Suggested Citation

  • Ye, Yanqiong & Bai, Hui & Zhang, Jiaen & Sun, Daolin, 2024. "A comparative analysis of ecosystem service values from various rice farming systems: A field experiment in China," Ecosystem Services, Elsevier, vol. 70(C).
  • Handle: RePEc:eee:ecoser:v:70:y:2024:i:c:s2212041624000718
    DOI: 10.1016/j.ecoser.2024.101664
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    1. Yuan Yuan & Gangchun Xu & Nannan Shen & Zhijuan Nie & Hongxia Li & Lin Zhang & Yunchong Gong & Yanhui He & Xiaofei Ma & Hongyan Zhang & Jian Zhu & Jinrong Duan & Pao Xu, 2022. "Valuation of Ecosystem Services for the Sustainable Development of Hani Terraces: A Rice–Fish–Duck Integrated Farming Model," IJERPH, MDPI, vol. 19(14), pages 1-19, July.
    2. Ajwang’ Ondiek, Risper & Kitaka, Nzula & Omondi Oduor, Steve, 2016. "Assessment of provisioning and cultural ecosystem services in natural wetlands and rice fields in Kano floodplain, Kenya," Ecosystem Services, Elsevier, vol. 21(PA), pages 166-173.
    3. Costanza, Robert & de Groot, Rudolf & Braat, Leon & Kubiszewski, Ida & Fioramonti, Lorenzo & Sutton, Paul & Farber, Steve & Grasso, Monica, 2017. "Twenty years of ecosystem services: How far have we come and how far do we still need to go?," Ecosystem Services, Elsevier, vol. 28(PA), pages 1-16.
    4. Nur Atikah Mohidem & Norhashila Hashim & Rosnah Shamsudin & Hasfalina Che Man, 2022. "Rice for Food Security: Revisiting Its Production, Diversity, Rice Milling Process and Nutrient Content," Agriculture, MDPI, vol. 12(6), pages 1-28, May.
    5. World Bank, "undated". "State and Trends of Carbon Pricing 2022," World Bank Publications - Reports 37455, The World Bank Group.
    6. Thijs Poelma & Mucahid Mustafa Bayrak & Duong Nha & Thong Anh Tran, 2021. "Climate change and livelihood resilience capacities in the Mekong Delta: a case study on the transition to rice–shrimp farming in Vietnam’s Kien Giang Province," Climatic Change, Springer, vol. 164(1), pages 1-20, January.
    7. Wei, Yanbing & Müller, Daniel & Sun, Zhanli & Lu, Miao & Tang, Huajun & Wu, Wenbin, 2023. "Exploring the emergence and changing dynamics of a new integrated rice-crawfish farming system in China," EconStor Open Access Articles and Book Chapters, ZBW - Leibniz Information Centre for Economics, vol. 18(6), pages 1-13.
    8. Xu, Qiang & Dai, Linxiu & Gao, Pinglei & Dou, Zhi, 2022. "The environmental, nutritional, and economic benefits of rice-aquaculture animal coculture in China," Energy, Elsevier, vol. 249(C).
    9. Shen, Ge & Yu, Qiangyi & Zhou, Qingbo & Wang, Cong & Wu, Wenbin, 2023. "From multiple cropping frequency to multiple cropping system: A new perspective for the characterization of cropland use intensity," Agricultural Systems, Elsevier, vol. 204(C).
    10. Shen Yuan & Bruce A. Linquist & Lloyd T. Wilson & Kenneth G. Cassman & Alexander M. Stuart & Valerien Pede & Berta Miro & Kazuki Saito & Nurwulan Agustiani & Vina Eka Aristya & Leonardus Y. Krisnadi &, 2021. "Sustainable intensification for a larger global rice bowl," Nature Communications, Nature, vol. 12(1), pages 1-11, December.
    Full references (including those not matched with items on IDEAS)

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