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Exergetic life cycle assessment of cement production process with waste heat power generation

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Indexed by:期刊论文

Date of Publication:2014-12-01

Journal:ENERGY CONVERSION AND MANAGEMENT

Included Journals:EI、SCIE

Volume:88

Page Number:684-692

ISSN No.:0196-8904

Key Words:Cement production; Exergetic life cycle assessment (ELCA); Energy and exergy analysis; Efficiency; Waste heat power generation

Abstract:The cement industry is an industry that consumes a considerable quantity of resources and energy and has a very large influence on the efficient use of global resources and energy. In this study, exergetic life cycle assessment is performed for the cement production process, and the energy efficiency and exergy efficiency of each system before and after waste heat power generation is investigated. The study indicates that, before carrying out a waste heat power generation project, the objective energy efficiencies of the raw material preparation system, pulverized coal preparation system and rotary kiln system are 39.4%, 10.8% and 50.2%, respectively, and the objective exergy efficiencies are 4.5%, 1.4% and 33.7%, respectively; after carrying out a waste heat power generation project, the objective energy efficiencies are 45.8%, 15.5% and 55.1%, respectively, and the objective exergy efficiencies are 7.8%, 2.8% and 38.1%, respectively. The waste heat power generation project can recover 3.7% of the total input exergy of a rotary kiln system and improve the objective exergy efficiencies of the above three systems. The study can identify degree of resource and energy utilization and the energy-saving effect of a waste heat power generation project on each system, and provide technical support for managers in the implementation of energy-saving schemes. (C) 2014 Elsevier Ltd. All rights reserved.

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