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China's metabolic patterns and their potential problems

Author

Listed:
  • Xiaohui, Chen
  • Tiansong, Wang
  • Piano, Samuele Lo
  • Mayumi, Kozo

Abstract

In this paper we deal only with the demographic and energy issues associated with China's metabolic patterns and present several serious problems that China would face in the future. For this purpose we use our general multi-scale methodology, Multi-Scale Integrated Analysis of Societal and Ecosystem Metabolism (MuSIASEM for short). The second section briefly presents the basic ideas behind this methodology. MuSIASEM is shown to be a combination of (i) Georgescu-Roegen's flow-fund production theory in economics; (ii) hierarchy theory in ecology and (iii) hypercycle theory in chemical reaction cycles. The third section deals with China's population size and its structural problems associated with the metabolic patterns of the country and presents a few potential problems. A shortage of labor hours would be a serious threat to China's economic prospectus unless labor productivity per hour increases dramatically. It is shown that the hourly monetary return in 2050 must be 24.5 US dollar (for 1800 yearly working hours) and 27.6 US dollar (for 1600 yearly working hours), to maintain China's GDP levels predicted for 2050. The fourth section first presents the metabolic patterns of China by four of four quadrants-four angles figure for the secondary and tertiary sectors. This section also discusses a prospect of China's oil import depending on three plausible scenarios. Oil import “guestimates” are 1290, 2010, and 2730 (million tonnes) in the year 2050 based on the three scenarios. Since the world total oil production in 2010 is 3945 million tonnes, the import oil burden for China will be alarming in the near future. The fifth section concludes the paper.

Suggested Citation

  • Xiaohui, Chen & Tiansong, Wang & Piano, Samuele Lo & Mayumi, Kozo, 2015. "China's metabolic patterns and their potential problems," Ecological Modelling, Elsevier, vol. 318(C), pages 75-85.
  • Handle: RePEc:eee:ecomod:v:318:y:2015:i:c:p:75-85
    DOI: 10.1016/j.ecolmodel.2015.03.009
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    References listed on IDEAS

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    1. Adams, F. Gerard & Shachmurove, Yochanan, 2008. "Modeling and forecasting energy consumption in China: Implications for Chinese energy demand and imports in 2020," Energy Economics, Elsevier, vol. 30(3), pages 1263-1278, May.
    2. Mayumi, Kozo & Tanikawa, Hiroki, 2012. "Going beyond energy accounting for sustainability: Energy, fund elements and the economic process," Energy, Elsevier, vol. 37(1), pages 18-26.
    3. Ito, Toshihide & Chen, Youqing & Ito, Shoichi & Yamaguchi, Kaoru, 2010. "Prospect of the upper limit of the energy demand in China from regional aspects," Energy, Elsevier, vol. 35(12), pages 5320-5327.
    4. Nicholas Georgescu-Roegen, 1969. "Process in Farming Versus Process in Manufacturing: A Problem of Balanced Development," International Economic Association Series, in: Ugo Papi & Charles Nunn (ed.), Economic Problems of Agriculture in Industrial Societies, chapter 0, pages 497-533, Palgrave Macmillan.
    5. Giampietro, Mario & Mayumi, Kozo, 1997. "A dynamic model of socioeconomic systems based on hierarchy theory and its application to sustainability," Structural Change and Economic Dynamics, Elsevier, vol. 8(4), pages 453-469, October.
    6. Fang Cai & Meiyan Wang, 2006. "Challenge Facing China's Economic Growth in Its Aging but not Affluent Era," China & World Economy, Institute of World Economics and Politics, Chinese Academy of Social Sciences, vol. 14(5), pages 20-31, September.
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