Targeting heat recovery and reuse in industrial zone
Author(s) -
Milana Zaric,
Mirko Stijepović,
Patrick Linke,
Jasna Stajić-Trošić,
Branko Bugarski,
Mirjana Lj. Kijevčanin
Publication year - 2016
Publication title -
chemical industry and chemical engineering quarterly
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.189
H-Index - 26
eISSN - 2217-7434
pISSN - 1451-9372
DOI - 10.2298/ciceq150622009z
Subject(s) - reuse , process integration , fossil fuel , waste heat , process engineering , computer science , linear programming , secondary sector of the economy , system integration , environmental science , waste management , engineering , mechanical engineering , heat exchanger , archaeology , algorithm , history , operating system
In order to reduce the usage of fossil fuels in industrial sectors by meeting the requirements of production processes, new heat integration and heat recovery approaches are developed. The goal of this study is to develop an approach to increase energy efficiency of an industrial zone by recovering and reusing waste heat via indirect heat integration. Industrial zones usually consist of multiple independent plants, where each plant is supplied by an independent utility system, as a decentralized system. In this study, a new approach is developed to target minimum energy requirements where an industrial zone would be supplied by a centralized utility system instead of decentralized utility system. The approach assumes that all process plants in an industrial zone are linked through the central utility system. This method is formulated as a linear programming problem (LP). Moreover, the proposed method may be used for decision making related to energy integration strategy of an industrial zone. In addition, the proposed method was applied on a case study. The results revealed that saving of fossil fuel could be achieved. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. OI172063
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