Heat Integration and Batch Scheduling of Optimal Bioethanol Production

被引:0
|
作者
Sungpichai, Pattarawadee [1 ]
Srinophakun, Thongchai R. [1 ]
机构
[1] Kasetsart Univ, Fac Engn, Interdisciplinary Sustainable Energy & Resources, Bangkok 10900, Thailand
来源
INTERNATIONAL JOURNAL OF RENEWABLE ENERGY RESEARCH | 2020年 / 10卷 / 03期
基金
中国国家自然科学基金;
关键词
Bioethanol production; Oil palm empty fruit bunches; Pinch analysis; Gantt chart; Process dynamics; Control; SIMULTANEOUS SACCHARIFICATION; OPTIMIZATION; DESIGN; FERMENTATION; OIL; GLYCEROL;
D O I
暂无
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This paper examines bioethanol production from oil palm empty fruit bunches, 47,208 kgs of which could potentially produce 13,950 liters of ethanol per day, using the Aspen Plus Suite commercial software. Continuous ethanol production with efficiency, optimum plant design, process dynamics, and control were studied in a continuous process to minimize the loss of plant utility and prevent possible ethanol production failure, which can sometimes occur in real life. A Gantt chart was used for continuous production to obtain ethanol every 24.5 hours. The Gantt chart also increases equipment efficiency by up to 73.90%. Pinch analysis was conducted for minimal energy consumption at the plant. The proposed production without/with the heat exchanger network shows that the total costs per year are 1,343,861$/year and 886,253$/year, respectively. The implementation of a heat exchanger network can reduce costs by around 34.05% per year. The purification process is guaranteed by the controller of the column system due to its dynamic failure sensitivity. Details of the controller and the results in the dynamic mode are presented.
引用
收藏
页码:1376 / 1384
页数:9
相关论文
共 50 条
  • [21] HEAT INTEGRATION IN BATCH PROCESSING
    VASELENAK, JA
    GROSSMANN, IE
    WESTERBERG, AW
    INDUSTRIAL & ENGINEERING CHEMISTRY PROCESS DESIGN AND DEVELOPMENT, 1986, 25 (02): : 357 - 366
  • [22] Heat integration for batch processes
    Cui, Mingzhu
    Feng, Xiao
    Zhang, Wenling
    Zhang, Zaoxiao
    Huaxue Gongcheng/Chemical Engineering, 1999, 27 (05): : 48 - 51
  • [23] Heat integration of batch processes
    Uhlenbruck, S
    Vogel, R
    Lucas, K
    CHEMICAL ENGINEERING & TECHNOLOGY, 2000, 23 (03) : 226 - 229
  • [24] Optimal scheduling of batch industrial facilities
    Barbosa-Póvoa, AP
    Vieira, CMC
    JOURNAL OF THE OPERATIONAL RESEARCH SOCIETY, 2004, 55 (02) : 116 - 122
  • [25] Heat integration for batch processes - Part 1: Process scheduling based on cascade analysis
    Zhao, XG
    O'Neill, BK
    Roach, JR
    Wood, RM
    CHEMICAL ENGINEERING RESEARCH & DESIGN, 1998, 76 (A6): : 685 - 699
  • [26] Exploiting diluted bioethanol solutions for the production of ethylene: Preliminary process design and heat integration
    Rossetti I.
    Tripodi A.
    Bahadori E.
    Ramis G.
    Rossetti, Ilenia (ilenia.rossetti@unimi.it), 2018, Italian Association of Chemical Engineering - AIDIC (65): : 73 - 78
  • [27] Heat integration for the production process of 2G bioethanol from wheat straw
    Gonzalez-Contreras, Moises
    Sanchez, Arturo
    Lopez-Arenas, Teresa
    27TH EUROPEAN SYMPOSIUM ON COMPUTER AIDED PROCESS ENGINEERING, PT C, 2017, 40C : 2917 - 2922
  • [28] Integration of finished goods batch delivery into production scheduling via total tardiness minimization
    Liu, Hsu-San
    Chen, Jen-Shiang
    JOURNAL OF INFORMATION & OPTIMIZATION SCIENCES, 2007, 28 (05): : 805 - 818
  • [29] Automated batch scheduling and MES integration...
    Pettus, N
    CONTROL SOLUTIONS INTERNATIONAL, 2004, 77 (03): : 12 - +
  • [30] Optimal Scheduling of Combined Heat and Power Units with Heat Storage for the Improvement of Wind Power Integration
    Chen, Hongkun
    Yu, Yanjuan
    Jiang, Xin
    2016 IEEE PES ASIA-PACIFIC POWER AND ENERGY ENGINEERING CONFERENCE (APPEEC), 2016, : 1508 - 1512