Recovery and utilisation of waste heat for sponge iron process through combined preheating and power generation

被引:2
|
作者
Gaurav, Gajendra Kumar [1 ,2 ]
Khanam, Shabina [2 ]
Zhang, Fuchun [1 ]
Liu, Xinghui [3 ,4 ,5 ]
机构
[1] Yanan Univ, Sch Phys & Elect Informat, Yanan 716000, Peoples R China
[2] Indian Inst Technol Roorkee, Dept Chem Engn, Roorkee 247667, India
[3] Saveetha Inst Med & Tech Sci SIMTS, Saveetha Sch Engn, Dept Mat Phys, Thandalam, Chennai 602105, Tamilnadu, India
[4] Hubei Inst Aerosp Chemotechnol, Sci & Technol Aerosp Chem Power Lab, Xiangyang 441003, Peoples R China
[5] Lovely Profess Univ, Div Res & Dev, Phagwara, India
基金
中国国家自然科学基金;
关键词
Preheating; Power generation; Economic analysis; Boiler-turbine system; Duct temperature profile; ROTARY KILN; ENERGY;
D O I
10.1016/j.energy.2024.131512
中图分类号
O414.1 [热力学];
学科分类号
摘要
This paper deals with an option accounted for total waste gas heat recovered through combined preheating as well as power generation of feed material, kiln air, as well as slinger coal when it reaches 250 degrees C from 994 degrees C. The heat recovery is obtained through GCC Profile is plotted using HINT software. The power produced is 2.757 MW with an optimal condition having a temperature of 280 degrees C saturated, 600 degrees C superheated, as well as superheated pressure of 350 bar. The heat required around the superheater, boiler and preheater is 5066.9 kW, 12,669.93 kW and 6873.6 kW. The air requirement for this option is 52.588 t/h after iteration. Also, the iterative waste gas flow rate is 22.31 kg/s. Three new heat exchangers are required to achieve possible heat recovery by designing HEN through Pinch Analysis. The water requirement around EC is 14.88 t/h and 7.8 t/h as in the case of actual and modified HEN. The calculated pressure drops of different ducts having lengths 25 m and pressure 0.034 atm, 80 and 105 m are obtained pressure as 0.034, 0.12 and 0.16 atm. 3 FD fans are required for maintenance of required pressures in the duct. The TAC is INR 8068.8/y; payback period is 2.62 y.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] A novel mechanism for exhaust steam waste heat recovery in combined heat and power unit
    Zhao, Shifei
    Ge, Zhihua
    He, Jie
    Wang, Chunlan
    Yang, Yongping
    Li, Peifeng
    APPLIED ENERGY, 2017, 204 : 596 - 606
  • [32] Prospects of waste heat recovery and power generation using thermoelectric generators
    Orr, Bradley
    Akbarzadeh, Aliakbar
    1ST INTERNATIONAL CONFERENCE ON ENERGY AND POWER, ICEP2016, 2017, 110 : 250 - 255
  • [33] Loop thermosiphon thermal collector for waste heat recovery power generation
    Matsubara, Koji
    Nakakura, Mitsuho
    Bellan, Selvan
    Maezawa, Kazuo
    EXPERIMENTAL HEAT TRANSFER, 2019, 32 (03) : 201 - 218
  • [34] HOT WATER TURBINE FOR WASTE HEAT RECOVERY POWER GENERATION.
    Ikeda, Tyuji
    Fukuda, Seiji
    Energy developments in Japan, 1981, 4 (02): : 129 - 152
  • [35] A NEW APPLICATION OF WASTE HEAT RECOVERY POWER GENERATION IN CLINKER KILN
    Zhang Gaozuo
    Zhu Guozhen
    Wang Chunli
    2009 IEEE-IAS/PCA CEMENT INDUSTRY CONFERENCE, 2009, : 229 - 235
  • [36] Heat Pipe-Assisted Thermoelectric Power Generation Technology for Waste Heat Recovery
    Jang, Ju-Chan
    Chi, Ri-Guang
    Rhi, Seok-Ho
    Lee, Kye-Bock
    Hwang, Hyun-Chang
    Lee, Ji-Su
    Lee, Wook-Hyun
    JOURNAL OF ELECTRONIC MATERIALS, 2015, 44 (06) : 2039 - 2047
  • [37] Heat Pipe-Assisted Thermoelectric Power Generation Technology for Waste Heat Recovery
    Ju-Chan Jang
    Ri-Guang Chi
    Seok-Ho Rhi
    Kye-Bock Lee
    Hyun-Chang Hwang
    Ji-Su Lee
    Wook-Hyun Lee
    Journal of Electronic Materials, 2015, 44 : 2039 - 2047
  • [38] Analysis of waste heat recovery to steel scrap preheating in an enclosure vessel
    Wang, T
    Kawakami, M
    Mori, K
    Shahidan, SH
    DESIGNING, PROCESSING AND PROPERTIES OF ADVANCED ENGINEERING MATERIALS, PTS 1 AND 2, 2004, 449-4 : 329 - 332
  • [39] Targeting and design of industrial zone waste heat reuse for combined heat and power generation
    Stijepovic, Vladimir Z.
    Linke, Patrick
    Stijepovic, Mirko Z.
    Kijevcanin, Mirjana Lj
    Serbanovic, Slobodan
    ENERGY, 2012, 47 (01) : 302 - 313
  • [40] WASTE HEAT RECOVERY AT THE GLASS INDUSTRY WITH THE INTERVENTION OF BATCH AND CULLET PREHEATING
    Dolianitis, Ioannis
    Giannakopoulos, Dionysios
    Hatzilau, Christina-Stavrula
    Karellas, Sotirios
    Kakaras, Emmanuil
    Nikolova, Evelina
    Skarpetis, Georgios
    Christodoulou, Nikolaos
    Giannoulas, Nikolaos
    Zitounis, Theodoros
    THERMAL SCIENCE, 2016, 20 (04): : 1245 - 1258