Energy-Efficient Low Rank Coal Drying Based on Enhanced Vapor Recompression Technology

被引:29
作者
Aziz, Muhammad [1 ]
Oda, Takuya [1 ]
Kashiwagi, Takao [1 ]
机构
[1] Tokyo Inst Technol, Solut Res Lab, Tokyo 1528550, Japan
关键词
Drying; Energy efficiency; Enhanced vapor recompression; Low rank coal; BROWN-COAL/WATER SYSTEM; SUPERHEATED-STEAM; FLUIDIZED-BED; ROTARY DRYERS; HEAT-TRANSFER; AIR; DESIGN; CONDENSATION; PERFORMANCE; COMBUSTION;
D O I
10.1080/07373937.2014.915219
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Vapor recompression is considered a highly energy-efficient technology to recover the heat involved in a process. Unfortunately, in conventional vapor recompression technology, not all of the heat can be recovered effectively. In this study, an enhanced vapor recompression technology enabling more effective heat recovery is proposed, and its ability to dry low rank coal (LRC) is evaluated. We consider the factors of exergy recovery and heat coupling. In addition to conventional vapor recompression, enhanced vapor recompression technology used to dry LRC can recover effectively the sensible heat of dried solid LRC through water recirculation. Moreover, we show that there is an optimum amount of recirculated water for each initial and target moisture content. A temperature-enthalpy diagram reveals that the proposed enhanced vapor recompression technology shows effective heat coupling for each type of heat, which results in less exergy loss so that a marked reduction in energy consumption can be achieved.
引用
收藏
页码:1621 / 1631
页数:11
相关论文
共 40 条
  • [11] Effect of lifter design on drying performance in rotary dryers
    Driver, J
    Hardin, MT
    Howes, T
    Palmer, G
    [J]. DRYING TECHNOLOGY, 2003, 21 (02) : 369 - 381
  • [12] ESTIMATING THERMODYNAMIC PROPERTIES OF COAL, CHAR, TAR AND ASH
    EISERMANN, W
    JOHNSON, P
    CONGER, WL
    [J]. FUEL PROCESSING TECHNOLOGY, 1980, 3 (01) : 39 - 53
  • [13] BROWN-COAL/WATER SYSTEM .4. SHRINKAGE ON DRYING
    EVANS, DG
    [J]. FUEL, 1973, 52 (03) : 186 - 190
  • [14] Fehlau M, 2000, CHEM ENG TECHNOL, V23, P901, DOI 10.1002/1521-4125(200010)23:10<901::AID-CEAT901>3.3.CO
  • [15] 2-H
  • [16] Hino T., 2005, J JAPAN I ENERGY, V84, P353
  • [17] Energy Analysis of Low-Rank Coal Pre-Drying Power Generation Systems
    Hu, Shangjian
    Man, Chengbo
    Gao, Xuezhong
    Zhang, Jianwen
    Xu, Xueyuan
    Che, Defu
    [J]. DRYING TECHNOLOGY, 2013, 31 (11) : 1194 - 1205
  • [18] Influence of air recycling on the performance of a continuous rotary dryer for vegetable wholesale by-products
    Iguaz, A
    López, A
    Vírseda, P
    [J]. JOURNAL OF FOOD ENGINEERING, 2002, 54 (04) : 289 - 297
  • [19] Simulation of superheated steam drying considering initial steam condensation
    Iyota, H
    Nishimura, N
    Yoshida, M
    Nomura, T
    [J]. DRYING TECHNOLOGY, 2001, 19 (07) : 1425 - 1440
  • [20] The effect of moisture content and air-drying on spontaneous combustion characteristics of two Turkish lignites
    Kadioglu, Y
    Varamaz, M
    [J]. FUEL, 2003, 82 (13) : 1685 - 1693