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136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 [16] Duscha RA, Masica WJ. The role of thermal energy storage in industrial energy conservation. Proceedings from the First Industrial Energy Technology Conference, 1979. [17] Katter LB, Peterson DJ. Application of thermal energy storage to process and waste heat recovery in the iron and steel industry, 1978. [18] Beshore DG, Jaeger FA, Gartner EM. Thermal energy storage/waste heat recovery applications in the cement industry. Proceedings from the First Industrial Energy Technology Conference, 1979. [19] Carr JH, Hurley PJ, Martin PJ. Applications of thermal energy storage to process heat storage and recovery in the paper and pulp industry, 1978. [20] Wojnar F, Lundberg WL. Applications of thermal energy storage to waste heat recovery in the food processing industry. Proceedings from the Fifth Industrial Energy Conservation Technology Conference, 1983 [21] Lundberg WL, Christenson JA, Wojnar F. Waste heat recovery in the food processing industry. http://infohouse.p2ric.org/ref/13/12915.pdf [accessed 13.05.16] [22] Hoffman HW, Kedl RJ, Duscha RA. Thermal Energy Storage for Industrial Waste Heat Recovery. Thirteenth Intersociety Energy Conversion Engineering Conference, 1978. [23] Andersson O, Rydell L, Algotsson T. Efficient usage of waste heat by applying a seasonal energy storage (BTES) at ITT Water & Wastewater AB, Emmaboda, Sweden. Effstock Conference, 2009. [24] Energie Speicher Forschungsinitiative der Bundesregierung. Foundry using waste heat of the furnace, 2014. http://forschung-energiespeicher.info/en/storing-heat/project- list/project-details/108/Giesserei_nutzt_Abwaerme_des_Schmelzofens/ [accessed 13.05.16] [25] Selvaraj J, Thenarasu M, Aravind S, Ashok P. Waste heat recovery from castings and scrap preheating by recovered heat using an intermediate heat transfer medium. Appl Mech Mat 2015;813-814:776-781. [26] Akiyama T, Shimada T, Kasai E, Yagi J. Feasibility of waste heat recovery from molten slag. China-Japan International Academic Symposium Environmental Problem in Chinese Iron-Steelmaking Industries and Effective Technology Transfer, 2000. [27] Maruoka N, Sato K, Yagi J, Akiyama T. Development of PCM for recovering high temperature waste heat and utilization for producing hydrogen by reforming reaction of methane. ISIJ Int 2002;42:215-219. [28] Maruoka N, Akiyama T. Exergy recovery from steelmaking off-gas by latent heat storage for methanol production. Energy 2006;31:1632-1642. [29] Zhang L, Akiyama T. How to recuperate industrial waste heat beyond time and space. Int J Exergy 2009;6:214-227. 38PDF Image | Thermal Energy Storage TES Industrial Waste Heat Recovery
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