Case-study-of-a-coal-gasification-based-energy-supply-system-for-China_2003_Energy-for-Sustainable-D.pdf
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Case-study of a coal gasification-based
energy supply system for China
Zheng Hongtao
Department of Thermal Engineering, Tsinghua University, 100084 Beijing, China
Tel: +86-10 fax: +86-10 e-mail: zht99@
Li Zheng and Ni Weidou
Department of Thermal Engineering, Tsinghua University, 100084 Beijing, China
Eric D. Larson
Princeton Environmental Institute, Princeton University
Guyot Hall, Washington Road, Princeton, NJ 08544-1003, USA
Ren Tingjin
Department of Thermal Engineering, Tsinghua University, 100084 Beijing, China
‘‘Syngas city’’ (SC) is a concept for a coal gasification-based energy supply system that deploys
gasification-based polygeneration technologies to meet energy needs of coal-rich areas. This paper
summarizes an assessment of the projected environmental impacts of implementing a SC strategy
for Zaozhuang, Shandong Province, China. A SC scenario and a ‘‘business-as-usual’’ (BAU) sce-
nario are developed for the Zaozhuang area considering the time-frame 2000 to 2020. A compari-
son of these scenarios is used to assess whether the SC concept for Zaozhuang could reduce air
pollution and promote further economic development while meeting projected demand for energy
services. On the basis of socio-economic assumptions, sectoral energy-demand projections are
developed. Assumptions are made about expected rates of market penetration of dimethyl ether
(DME) and methanol, two clean fuels derived via coal gasification. Emissions of air pollutants
in the SC scenario are compared with those in the BAU scenario. Policies to promote the SC
concept and technologies in China are proposed.
1. Introduction
‘‘Syngas city’’ (SC) is a concept for coal gasification-
based energy supply systems that deploy polygeneration
technologies to meet energy needs of coal-rich areas.
Polygeneration systems, based on coal gasification, can
produce a variety of energy products in an economically
affordable way, for example clean synthesis gas and elec-
tricity, high-val
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