Fujii, Hidemichi and Kaneko, Shinji and Managi, Shunsuke (2009): Changes in Environmentally Sensitive Productivity and Technological Modernization in China’s Iron and Steel Industry in the 1990s. Published in: Environmental and Development Economics , Vol. 15, No. 4 (2010): pp. 485-504.
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Abstract
Technological modernization is widely believed to contribute positively both to economic development and to environmental and resource conservation, through productivity improvements and strengthening of business competitiveness. However, this may not always be true, particularly in the short term, as it requires substantial investments and may impose financial burdens on firms undertaking such investments. This study empirically examines the effects of technological modernization in China’s iron and steel industry in the 1990s on conventional economic productivity (CEP) and environmentally sensitive productivities (ESPs). We employ a directional distance function that can handle multiple inputs and outputs to compute relative production efficiencies. We apply these models to the data covering 27 iron and steel firms in China between 1990 and 1999—a period when the Chinese iron and steel industry modernized rapidly. We find that ESPs have continuously improved, even in the period when the CEP declined.
Item Type: | MPRA Paper |
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Original Title: | Changes in Environmentally Sensitive Productivity and Technological Modernization in China’s Iron and Steel Industry in the 1990s |
Language: | English |
Keywords: | environmentally sensitive productivity; directional distance function; Luenberger productivity indicator; Steel; China |
Subjects: | L - Industrial Organization > L6 - Industry Studies: Manufacturing > L61 - Metals and Metal Products ; Cement ; Glass ; Ceramics O - Economic Development, Innovation, Technological Change, and Growth > O4 - Economic Growth and Aggregate Productivity Q - Agricultural and Natural Resource Economics ; Environmental and Ecological Economics > Q5 - Environmental Economics > Q53 - Air Pollution ; Water Pollution ; Noise ; Hazardous Waste ; Solid Waste ; Recycling Q - Agricultural and Natural Resource Economics ; Environmental and Ecological Economics > Q5 - Environmental Economics > Q55 - Technological Innovation Q - Agricultural and Natural Resource Economics ; Environmental and Ecological Economics > Q5 - Environmental Economics > Q56 - Environment and Development ; Environment and Trade ; Sustainability ; Environmental Accounts and Accounting ; Environmental Equity ; Population Growth |
Item ID: | 92754 |
Depositing User: | Hidemichi Fujii |
Date Deposited: | 15 Mar 2019 16:40 |
Last Modified: | 28 Sep 2019 06:12 |
References: | Asmild, M., J.C. Paradi, V. Aggarwall and C. Schaffnit (2004), Combining DEA Window Analysis with the Malmquist Index Approach in a Study of the Canadian Banking Industry, Journal of Productivity Analysis 21: 67-89. Asian Development Bank (2007), Asian Development Outlook 2007, Manila, Asian Development Bank. Chambers, R.G. (2002), Exact nonradial input, output, and productivity measurement, Economic Theory 20 (4): 751–765. Chambers, R.G. and R.D. Pope (1996), Aggregate productivity measures, American Journal of Agricultural Economics 78 (5): 1360–1365. Chambers, R.G., Y.H. Chung and R. Färe (1998), Profit, directional distance functions, and Nerlovian efficiency, Journal of Optimization Theory and Applications 98 (2): 351–364. Charnes, A., C.C. Cooper and E. Rhodes (1978), Measuring the efficiency of decision making units, European Journal of Operational Research 2(6): 429–444. China Water Power Press (2004), China Industrial Water Conservation Report, China Water Power Press, Beijing. China Environmental Yearbook Committee (eds)(2005). China Environmental Yearbook, China Environmental Yearbook Press, Beijing. Chung, Y.H., R. Färe and S. Grosskopf (1997), Productivity and undesirable output: A directional distance function approach, Journal of Environmental Management 51: 229–240. De Groot, H.L.F., C.A. Withagen and Z. Minliang (2004), Dynamics of Chinas regional development and pollution: An investigation into the Environmental Kuznets Curve, Environment and Development Economics 9: 507–537. Färe, R., S. Grosskopf and C.A. Pasurka (1986), Effects on relative efficiency in electric power generation due to environmental controls, Resources and Energy Economics 8(2): 167–184. Färe, R., S. Grosskopf, C.A.K. Lovell and C.A. Pasurka (1989), Multilateral productivity comparisons when some outputs are undesirable: A nonparametric approach, The Review of Economics and Statistics 71: 90–98. Färe, R., S. Grosskopf, M. Norris and Z. Zhang (1994), Productivity growth, technical progress and efficiency change in industrialized countries, American Economic Review 84(1): 66–83. Färe, R., and D. Primont (1995), Multi-Output Production and Duality: Theory and Applications, Kluwer Academic Publishers, Boston. Färe, R. and S. Grosskopf (1996), Intertemporal Production Frontiers: With Dynamic DEA, Kluwer Academic Publishers, Boston. Färe, R., S. Grosskopf and C.A. Pasurka (2001), Accounting for air pollution emissions in measures of state manufacturing productivity growth, Journal of Regional Science 41(3): 381–409. Färe, R., S. Grosskopf and C. Pasurka (2007), Pollution abatement activities and traditional productivity, Ecological Economics 62(3-4): 673–682. Farrell, M.J. (1957), The measurement of productive efficiency, Journal of the Royal Statistical Society. Series A (General) 120(3): 253–290. Fisher-Vanden, K., G. Jefferson, H. Liu and Q. Tao (2004), What is driving Chinas decline in energy intensity? , Resource and Energy Economics 26(1): 77–97. Hailu, A. and T.S. Veeman (2000), Environmentally sensitive productivity analysis of the Canadian pulp and paper industry, 1959–1994: An input distance function approach, Journal of Environmental Economics and Management 40: 251–274. Intergovernmental Panel on Climate Change (IPCC) (2006), 2006 IPCC Guidelines for National Greenhouse Gas Inventories: Volume 1 General Guidance and Reporting, IPCC, Japan. International Iron and Steel Institute (2005a) Steel Statistical Yearbook 2005, International Iron and Steel Institute, Brussels. International Iron and Steel Institute (2005b), World Steel in Figures 2005, International Iron and Steel Institute, Brussels. Jiang, T. and W.J. McKibbin (2002), Assessment of Chinas pollution levy system: An equilibrium pollution approach, Environment and Development Economics 7: 75–105. Kim, Y. and E. Worrell (2002), International comparison of CO2 emission trends in the iron and steel industry, Energy Policy 30: 827–838. Kaneko, S., A. Yonamine and T.Y. Jung (2006), Technology choice and CDM projects in China: Case study of a small steel company in Shandong province, Energy Policy 34(10): 1139–1151. Luenberger, D.G. (1992), Benefit function and duality, Journal of Mathematical Economics 21:461–481. Ma, J., D.G. Evans, R.J. Fuller and D.G. Stewart (2002), Technical efficiency and productivity change of Chinas iron and steel industry, International Journal of Production Economics 76: 293–312. Managi, S. and S. Kaneko (2009), Environmental performance and returns to pollution abatement in China, Ecological Economics 68(6): 1643-1651. Managi, S., J.J. Opaluch, D. Jin and T.A. Grigalunas (2005) Environmental Regulations and Technological Change in the Offshore Oil and Gas Industry, Land Economics 81(2): 303-319. Ministry of Metallurgical Industry (2003), China Iron and Steel Industry Fifty-Year Summary (Volumes 1 and 2), Metallurgical Industry Press, Beijing. Ministry of Metallurgical Industry (eds) (2003), Yearbook of Iron and Steel Industry of China, Metallurgical Industry Press, Beijing. Movshuk, O. (2004), Restructuring, productivity and technical efficiency in Chinas iron and steel industry, 1988–2000, Journal of Asian Economics 15: 135–151. Price, L., J. Sinton, E. Worrell, D. Phylipsen, H. Xiulian and L. Ji (2002), Energy use and carbon dioxide emissions from steel production in China, Energy 27: 429–449. Schmidt, P. (1986), Frontier production functions, Econometric Reviews 4: 289–328. Shao, W., D. Yang, H. Hu and K. Sanbongi (2009), Water resources allocation considering the water use flexible limit to water shortage—A case study in the Yellow River Basin of China, Water Resources Management 23(5): 869–880. Shephard, R.W. and R. Färe (1974), The law of diminishing returns, Journal of Economics 34(1): 69–90. Shestalova, V (2003),Sequential Malmquist Indices of Productivity Growth: An Application to OECD Industrial Activities, Journal of Productivity Analysis 19: 211-226. State Statistical Bureau (eds) (2005). China Energy Statistical Yearbook, China Statistical Press, Beijing. State Statistical Bureau (eds) (2006). China Statistical Yearbook, China Statistical Press, Beijing. Sugimoto, T. (1993), The Chinese steel industry, Resource Policy 19(4): 264–286. Vardanyan, M. and D.-W. Noh (2006), Approximating pollution abatement costs via alternative specifications of a multi-output production technology: A case of the US electric utility industry, Journal of Environmental Management, 80, No. 2 (July), 177–190. Wang, H. and D. Wheeler (2003), Equilibrium pollution and economic development in China, Environment and Development Economics 8: 451–466. Woo, W. T. (2007), What are the high-probability challenges to continued high growth in China? Working Paper, The Brookings Institution, Washington, DC. Wu, Y. (1995), The productive efficiency of Chinese iron and steel firms: A stochastic frontier analysis, Resource Policy 21: 215–222. World Bank (2007), Cost of Pollution in China: Economic Estimates of Physical Damages, World Bank, Washington, DC. World Bank (2008), Water Supply Pricing in China: Economic Efficiency, Environment, and Social Affordability, World Bank, Washington, DC. Worrell, E., L. Price, N. Martin, J. Farla and R. Schaeffer (1997), Energy intensity in the iron and steel industry: A comparison of physical and economic indicators, Energy Policy 25: 727–744. Ye, G. (2000), The Growth of Iron and Steel Industry in China, Yotsuya Round Publishers, Tokyo. Wei, Y.M., H. Liao and Y. Fan (2007), An empirical analysis of energy efficiency in Chinas iron and steel sector, Energy 32(12): 2262–2270. Zhang, Y. (2002), The impacts of economic reform on the efficiency of silviculture: A non-parametric approach, Environment and Development Economics 7: 107–122. Zhang, J. and Wang, G. (2008), Energy saving technology and productivity efficiency in the Chinese iron and steel sector, Energy 33(4): 525–537. Zhou, P., B.W. Ang and K.L. Poh (2008), A survey of data envelopment analysis in energy and environmental studies, European Journal of Operational Research 189(1): 1–18. |
URI: | https://mpra.ub.uni-muenchen.de/id/eprint/92754 |