Improving Adsorption Dryer Energy Efficiency by Simultaneous Optimization and Heat Integration

被引:12
作者
Atuonwu, J. C. [1 ]
van Straten, G. [1 ]
van Deventer, H. C. [2 ]
van Boxtel, A. J. B. [1 ]
机构
[1] Wageningen Univ, Syst & Control Grp, NL-6708 WG Wageningen, Netherlands
[2] TNO, NL-3700 AJ Zeist, Netherlands
关键词
Adsorption drying; Energy efficiency; Heat recovery; Pinch location; Simultaneous optimization; EXHAUST AIR; RECOVERY; PLANTS;
D O I
10.1080/07373937.2011.591516
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Conventionally, energy-saving techniques in drying technology are sequential in nature. First, the dryer is optimized without heat recovery and then, based on the obtained process conditions, heat recovery possibilities are explored. This work presents a methodology for energy-efficient adsorption dryer design that considers sensible and latent heat recovery as an integral part of drying system design. A one-step pinch-based optimization problem is formulated to determine the operating conditions for optimal energy performance of such an integrated system subject to product quality. Because the inlet and target stream properties of the heat recovery network are determined by the adsorption drying conditions, they are unknown a priori and thus are determined simultaneously within the overall optimization using the pinch location method. Energy balances are written above and below the various pinch point possibilities and the optimal pinch point is that which minimizes the amount of external heating utility required while satisfying drying and thermodynamic constraints. Results for a single-stage zeolite adsorption drying process with simultaneous heat recovery optimization show a 15% improvement in efficiency compared to a sequentially optimized system. The improvement is traceable to alterations in enthalpy-related variables like temperatures and flow rates. The discrepancy in optimal operating conditions between the sequential and simultaneous cases underscores the need to change system operating conditions when retrofitting for heat recovery because previous optimal conditions become suboptimal when heat recovery is introduced. Also, compared to a conventional dryer (without an adsorption process) operating under similar conditions, energy consumption is reduced by about 55%.
引用
收藏
页码:1459 / 1471
页数:13
相关论文
共 24 条
[1]  
[Anonymous], INT J ENERGY RES
[2]   Integration Potential of Milk Powder Plants using Conventional Heat Recovery Options [J].
Atkins, Martin J. ;
Walmsley, Michael R. W. ;
Neale, James R. .
PRES 2010: 13TH INTERNATIONAL CONFERENCE ON PROCESS INTEGRATION, MODELLING AND OPTIMISATION FOR ENERGY SAVING AND POLLUTION REDUCTION, 2010, 21 :997-1002
[3]  
Atuonwu J.C., 2010, Proceedings of the International Drying Symposium, Magdeburg, Germany, October 3 - 6, 2010, P423
[4]   Optimization framework for the simultaneous process synthesis, heat and power integration of a thermochemical hybrid biomass, coal, and natural gas facility [J].
Baliban, Richard C. ;
Elia, Josephine A. ;
Floudas, Christodoulos A. .
COMPUTERS & CHEMICAL ENGINEERING, 2011, 35 (09) :1647-1690
[5]   Computational fluid dynamics for multistage adsorption dryer design [J].
Djaeni, M. ;
Bartels, P. V. ;
Sanders, J. P. M. ;
van Straten, G. ;
van Boxtel, A. J. B. .
DRYING TECHNOLOGY, 2008, 26 (04) :487-502
[6]   Multistage zeolite drying for energy-efficient drying [J].
Djaeni, M. ;
Bartels, P. ;
Sanders, J. ;
van Straten, G. ;
van Boxtel, A. J. B. .
DRYING TECHNOLOGY, 2007, 25 (4-6) :1053-1067
[7]   Process integration for food drying with air dehumidified by zeolites [J].
Djaeni, M. ;
Bartels, P. ;
Sanders, J. ;
van Straten, G. ;
van Boxtel, A. J. B. .
DRYING TECHNOLOGY, 2007, 25 (1-3) :225-239
[8]   Assessment of a Two-Stage Zeolite Dryer for Energy-Efficient Drying [J].
Djaeni, M. ;
Bartels, P. V. ;
van Asselt, C. J. ;
Sanders, J. P. M. ;
van Straten, G. ;
van Boxtel, A. J. B. .
DRYING TECHNOLOGY, 2009, 27 (11) :1205-1216
[9]   Simultaneous optimization approach for integrated water-allocation and heat-exchange networks [J].
Dong, Hong-Guang ;
Lin, Chih-Yao ;
Chang, Chuei-Tin .
CHEMICAL ENGINEERING SCIENCE, 2008, 63 (14) :3664-3678
[10]   SIMULTANEOUS-OPTIMIZATION AND HEAT INTEGRATION OF CHEMICAL PROCESSES [J].
DURAN, MA ;
GROSSMANN, IE .
AICHE JOURNAL, 1986, 32 (01) :123-138