Lost carbon emissions: the role of non-manufacturing "other industries" and refining in industrial energy use and carbon emissions in IEA countries

被引:6
作者
Murtishaw, S
Schipper, L
Unander, F
Karbuz, S
Khrushch, M
机构
[1] Int Energy Agcy, Energy Technol Policy Div, F-75739 Paris 15, France
[2] Univ Calif Berkeley, Lawrence Berkeley Lab, Energy Anal Dept, Berkeley, CA 94720 USA
关键词
D O I
10.1016/S0301-4215(00)00103-8
中图分类号
F [经济];
学科分类号
02 ;
摘要
We present a review of trends in energy use and output in branches of industry not often studied in detail: petroleum refining and what we call the Ether industries - agriculture, mining, and construction. From a sample of IEA countries we analyze eight with the most complete data from the early 1970s to the mid-1990s. We carry out a decomposition analysis of changes in energy use and carbon emissions in the "other industries" sector. We also review briefly the impact of including refining in the evolution of manufacturing energy use, usually studied without refining. Despite many data problems, we present our results as a way of enticing others to study these important "lost" sectors more carefully. We have five basic findings. First, "other industries" tends to be a minor consumer of energy in many countries, but in some, particularly Denmark, the US? and Australia, mining or agriculture can be a major sector too large to be overlooked. Second, refining is an extremely energy intensive industry which despite a relatively low share of value added consumes as much as 20% of final energy use in manufacturing. Third, as a result of a slower decline in the carbon-intensity of these industries vis-a-vis the manufacturing industries, their share of industrial emissions has been rising. Fourth, for other industries variation in per capita output plays a relatively small role in differentiating per capita carbon emissions compared to the impact of subsectoral energy intensities. Finally, including this energy in CO2 calculations has little impact on overall trends, but does change the magnitude of emissions in most countries significantly. Clearly, these industries provide important opportunities for searching for carbon emissions reductions. (C) 2000 Elsevier Science Ltd. All rights reserved.
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页码:83 / 102
页数:20
相关论文
共 18 条
[1]  
*ADB, 1996, KEY IND DEV AS PAC C
[2]   DECOMPOSITION OF INDUSTRIAL ENERGY-CONSUMPTION - THE ENERGY INTENSITY APPROACH [J].
ANG, BW .
ENERGY ECONOMICS, 1994, 16 (03) :163-174
[3]  
[Anonymous], 1999, World Development Indicators
[4]  
GREENING L, 1996, ENERG ECON, V18, P43
[5]   Comparison of six decomposition methods: Application to aggregate energy intensity for manufacturing in 10 OECD countries [J].
Greening, LA ;
Davis, WB ;
Schipper, L ;
Khrushch, M .
ENERGY ECONOMICS, 1997, 19 (03) :375-390
[6]  
*IEA, 1998, EN STAT BAL OECD COU
[7]  
*IEA, 1994, EN PRIC TAX
[8]  
*IEA, 1997, CO2 EM FUEL COMB
[9]  
*IES, 2000, IES DAT OFF NAT EN E
[10]  
IPCC, 1996, GREENH GAS INV REF M