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Drying Technology
An International Journal
Volume 22, 2004 - Issue 7
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Original Articles

Heat Recovery from Dryer Exhaust Air

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Pages 1661-1674 | Published online: 06 Feb 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (23)

Sanjay Kumar Patel & Mukund Haribhau Bade. (2022) Parametric analysis of industrial spray dryer for performance enhancement applicable in effluent management. Drying Technology 40:14, pages 2880-2903.
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Bachir El Fil & Srinivas Garimella. (2022) The state of the art in energy saving techniques for garment/textile drying. Drying Technology 40:11, pages 2235-2250.
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Mohamad Djaeni, Hadiyanto Hadiyanto, Andri Cahyo Kumoro, Febiani Dwi Utari & Ching-Lik Hii. (2021) Improvements in thermal efficiency of onion slice drying by exhaust air recycling. Cogent Engineering 8:1.
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Hicham El Hage, Mohamad Ramadan, Hassan Jaber, Mahmoud Khaled & Abdul Ghani Olabi. (2020) A short review on the techniques of waste heat recovery from domestic applications. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 42:24, pages 3019-3034.
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Saman Zohrabi, Seyed Sadegh Seiiedlou, Mortaza Aghbashlo, Holger Scaar & Jochen Mellmann. (2020) Enhancing the exergetic performance of a pilot-scale convective dryer by exhaust air recirculation. Drying Technology 38:4, pages 518-533.
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Yuhui Wei, Zhaowei Su, Zongqian Wang, Huifen Yuan & Changlong Li. (2020) Development of an efficient and environmental-friendly drying model for domestic dryer. The Journal of The Textile Institute 111:2, pages 214-225.
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Yuhui Wei, R. Hugh Gong, Lin Ning & Xuemei Ding. (2018) Enhancing the Energy Efficiency of Domestic Dryer by Drying Process Optimization. Drying Technology 36:7, pages 790-803.
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Yuanzhi Qin, Hao Fu, Jinshi Wang, Ming Liu & Junjie Yan. (2018) Waste heat and water recovery characteristics of heat exchangers for dryer exhaust. Drying Technology 36:6, pages 709-722.
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Tapani Jokiniemi, Mikko Hautala, Timo Oksanen & Jukka Ahokas. (2016) Parallel plate heat exchanger for heat energy recovery in a farm grain dryer. Drying Technology 34:5, pages 547-556.
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Muhammad Aziz, Takuya Oda & Takao Kashiwagi. (2014) Energy-Efficient Low Rank Coal Drying Based on Enhanced Vapor Recompression Technology. Drying Technology 32:13, pages 1621-1631.
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Amel Dhahri & Nejib Hajji. (2014) Heat Recovery of a Diammonium Phosphates Drying Unit. Drying Technology 32:10, pages 1179-1187.
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Chihiro Fushimi & Keisuke Fukui. (2014) Simplification and Energy Saving of Drying Process Based on Self-Heat Recuperation Technology. Drying Technology 32:6, pages 667-678.
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Xiaoke Guo, Ming Liu, Fen Lai, Daotong Chong, Junjie Yan & Feng Xiao. (2012) Theoretical Study and Case Analysis of a Predried Lignite–Fired Power Plant with the Waste Heat Recovery System. Drying Technology 30:4, pages 425-434.
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J.C. Atuonwu, G. van Straten, H.C. van Deventer & A.J. B. van Boxtel. (2011) Improving Adsorption Dryer Energy Efficiency by Simultaneous Optimization and Heat Integration. Drying Technology 29:12, pages 1459-1471.
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Chihiro Fushimi, Yasuki Kansha, Muhammad Aziz, Kazuhiro Mochidzuki, Shozo Kaneko, Atsushi Tsutsumi, Keigo Matsumoto, Katsuhiko Yokohama, Kenichiro Kosaka, Noboru Kawamoto, Koji Oura, Yoshiki Yamaguchi & Masaaki Kinoshita. (2010) Novel Drying Process Based on Self-Heat Recuperation Technology. Drying Technology 29:1, pages 105-110.
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M. Ståhl & J. Berghel. (2008) Validation of a Mathematical Model by Studying the Effects of Recirculation of Drying Gases. Drying Technology 26:6, pages 786-792.
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M. Djaeni, P. V. Bartels, J. P. M. Sanders, G. van Straten & A. J. B. van Boxtel. (2008) Computational Fluid Dynamics for Multistage Adsorption Dryer Design. Drying Technology 26:4, pages 487-502.
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M. Djaeni, P. Bartels, J. Sanders, G. van Straten & A. J. B. van Boxtel. (2007) Multistage Zeolite Drying for Energy-Efficient Drying. Drying Technology 25:6, pages 1053-1067.
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Haizhen Xian, Dengying Liu, Fumin Shang, Yongping Yang, Xiaoze Du, ArunS. Mujumdar & Lixin Huang. (2007) Study on Heat Transfer Enhancement of Oscillating-Flow Heat Pipe for Drying. Drying Technology 25:4, pages 723-729.
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IanC. Kemp. (2005) Reducing Dryer Energy Use by Process Integration and Pinch Analysis. Drying Technology 23:9-11, pages 2089-2104.
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Articles from other publishers (21)

Süleyman Sapmaz & İbrahim Kılıçaslan. (2022) Study on increasing the energy efficiency of a dryer used for the conversion of sewage sludge to biofuel. Biomass Conversion and Biorefinery 13:3, pages 2459-2468.
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Bachir El Fil & Srinivas Garimella. (2022) Heat recovery, adsorption thermal storage, and heat pumping to augment gas-fired tumble dryer efficiency. Journal of Energy Storage 48, pages 103949.
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Heidi H. Nafady, Moustapha Salem Mansour, Dina El-Gayar & Ashraf Morsy. 2022. Innovations in Green Urbanization and Alternative Renewable Energy. Innovations in Green Urbanization and Alternative Renewable Energy 161 169 .
Bachir El Fil & Srinivas Garimella. (2021) Experimental investigation of input parameters on the performance of a commercial Gas-fired tumbler dryer. Applied Thermal Engineering 197, pages 117352.
Crossref
Masoud Ahmadi, Kyle R. Gluesenkamp & Sajjad Bigham. (2021) Energy-efficient sorption-based gas clothes dryer systems. Energy Conversion and Management 230, pages 113763.
Crossref
Sanjay Kumar Patel & Mukund Haribhau Bade. (2019) Energy analysis and heat recovery opportunities in spray dryers applied for effluent management. Energy Conversion and Management 186, pages 597-609.
Crossref
Timothy G. Walmsley, Martin J. Atkins, Michael R.W. Walmsley, Matthias Philipp & Ron-Hendrik Peesel. (2018) Process and utility systems integration and optimisation for ultra-low energy milk powder production. Energy 146, pages 67-81.
Crossref
J.F. Wang, C. Brown & D.J. Cleland. (2018) Heat pump heat recovery options for food industry dryers. International Journal of Refrigeration 86, pages 48-55.
Crossref
Yuhui Wei, Xu Wang, Zhaowei Su & Xuemei Ding. (2017) Research on micro-damage behavior of wool fabrics drying in domestic dryer. Microscopy Research and Technique 80:8, pages 904-916.
Crossref
J. Nastaj & B. Ambrożek. (2015) Analysis of gas dehydration in TSA system with multi-layered bed of solid adsorbents. Chemical Engineering and Processing: Process Intensification 96, pages 44-53.
Crossref
Ian C. Kemp. 2014. Modern Drying Technology. Modern Drying Technology 1 45 .
Muhammad Aziz, Takuya Oda & Takao Kashiwagi. (2013) Enhanced high energy efficient steam drying of algae. Applied Energy 109, pages 163-170.
Crossref
A.I. Papadopoulos & P. Seferlis. 2013. Robotics and Automation in the Food Industry. Robotics and Automation in the Food Industry 441 485 .
Kazuo Matsuda, Yasuki Kansha, Chihiro Fushimi, Atsushi Tsutsumi & Akira KishimotoKazuo Matsuda, Yasuki Kansha, Chihiro Fushimi, Atsushi Tsutsumi & Akira Kishimoto. 2013. Advanced Energy Saving and its Applications in Industry. Advanced Energy Saving and its Applications in Industry 37 48 .
Muhammad Aziz, Yasuki Kansha, Akira Kishimoto, Yui Kotani, Yuping Liu & Atsushi Tsutsumi. (2012) Advanced energy saving in low rank coal drying based on self-heat recuperation technology. Fuel Processing Technology 104, pages 16-22.
Crossref
Hong Li, Lianying Wu, Xianli Wu & Yangdong Hu. (2012) Simulation of Countercurrent Multi-Effect Drying System. Advances in Materials Physics and Chemistry 02:04, pages 206-211.
Crossref
Ian C. Kemp. 2011. Modern Drying Technology. Modern Drying Technology 1 45 .
Martin J. Atkins, Michael R.W. Walmsley & James R. Neale. (2011) Integrating heat recovery from milk powder spray dryer exhausts in the dairy industry. Applied Thermal Engineering 31:13, pages 2101-2106.
Crossref
M. Aziz, C. Fushimi, Y. Kansha, K. Mochidzuki, S. Kaneko, A. Tsutsumi, K. Matsumoto, T. Hashimoto, N. Kawamoto, K. Oura, K. Yokohama, Y. Yamaguchi & M. Kinoshita. (2011) Innovative Energy‐Efficient Biomass Drying Based on Self‐Heat Recuperation Technology. Chemical Engineering & Technology 34:7, pages 1095-1103.
Crossref
V. Yadav & C.G. Moon. (2008) Modelling and experimentation for the fabric-drying process in domestic dryers. Applied Energy 85:5, pages 404-419.
Crossref
V. Yadav & C.G. Moon. (2008) Fabric-drying process in domestic dryers. Applied Energy 85:2-3, pages 143-158.
Crossref

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