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Regional differentiation of biogas industrial development in China

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  • Yang, Yanli
  • Zhang, Peidong
  • Li, Guangquan

Abstract

The regional distribution of household biogas and large & medium-scale farm biogas project was analyzed by the index of popularization rate. The results showed that Chinese household biogas has an obvious geographical difference in popularization rate, and can be divided into five zones: high popularity in Southwest areas, steady development in Central areas, rapid growth in Western areas, and low popularity in Northeast and Eastern coastal areas. The emphasis of household biogas development was shifted from east to west, which was mainly caused by combined effects of climatic conditions and economic level. The popularization rate of large & medium-scale biogas project in livestock farms was low, but developed rapidly with average annual increasing rate of 13.94%. And great differentiation existed in popularization rate and growth trends, of which 98.63% of running biogas project and 94.5% of digester capacity were located in southern areas to demarcation line constituted by boundaries of Liaoning, Hebei, Shanxi, Shaanxi, Gansu and Sichuan. Two-way growth in amount and growth trend was shown in southeast coast and southwest regions, while unidirectional growth of amount in inland areas.

Suggested Citation

  • Yang, Yanli & Zhang, Peidong & Li, Guangquan, 2012. "Regional differentiation of biogas industrial development in China," Renewable and Sustainable Energy Reviews, Elsevier, vol. 16(9), pages 6686-6693.
  • Handle: RePEc:eee:rensus:v:16:y:2012:i:9:p:6686-6693
    DOI: 10.1016/j.rser.2012.07.016
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    2. Grzegorz Ślusarz & Barbara Gołębiewska & Marek Cierpiał-Wolan & Jarosław Gołębiewski & Dariusz Twaróg & Sebastian Wójcik, 2021. "Regional Diversification of Potential, Production and Efficiency of Use of Biogas and Biomass in Poland," Energies, MDPI, vol. 14(3), pages 1-20, January.
    3. Deng, Yanfei & Xu, Jiuping & Liu, Ying & Mancl, Karen, 2014. "Biogas as a sustainable energy source in China: Regional development strategy application and decision making," Renewable and Sustainable Energy Reviews, Elsevier, vol. 35(C), pages 294-303.
    4. Zheng, Lei & Cheng, Shikun & Han, Yanzhao & Wang, Min & Xiang, Yue & Guo, Jiali & Cai, Di & Mang, Heinz-Peter & Dong, Taili & Li, Zifu & Yan, Zhengxu & Men, Yu, 2020. "Bio-natural gas industry in China: Current status and development," Renewable and Sustainable Energy Reviews, Elsevier, vol. 128(C).
    5. Yin, Dongxue & Liu, Wei & Zhai, Ningning & Wang, Yandong & Ren, Chengjie & Yang, Gaihe, 2017. "Regional differentiation of rural household biogas development and related driving factors in China," Renewable and Sustainable Energy Reviews, Elsevier, vol. 67(C), pages 1008-1018.
    6. Daniela Szymańska & Aleksandra Lewandowska, 2015. "Biogas Power Plants in Poland—Structure, Capacity, and Spatial Distribution," Sustainability, MDPI, vol. 7(12), pages 1-19, December.
    7. Gao, Mingxue & Wang, Danmeng & Wang, Hui & Wang, Xiaojiao & Feng, Yongzhong, 2019. "Biogas potential, utilization and countermeasures in agricultural provinces: A case study of biogas development in Henan Province, China," Renewable and Sustainable Energy Reviews, Elsevier, vol. 99(C), pages 191-200.
    8. Maghanaki, M. Mohammadi & Ghobadian, B. & Najafi, G. & Galogah, R. Janzadeh, 2013. "Potential of biogas production in Iran," Renewable and Sustainable Energy Reviews, Elsevier, vol. 28(C), pages 702-714.
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