Design of an integrated system that combines the steam gasification of plastic waste and a solid oxide fuel cell for sustainable power generation

被引:6
|
作者
Abouemara, Khaled [1 ]
Shahbaz, Muhammad [1 ]
Boulfrad, Samir [1 ]
McKay, Gordon [1 ]
Al-Ansari, Tareq [1 ]
机构
[1] Hamad Bin Khalifa Univ, Qatar Fdn, Coll Sci & Engn, Doha, Qatar
关键词
SOFC; Power; Plastic gasification; Volt; Electricity; BIOMASS GASIFICATION; CO-GASIFICATION; DYNAMIC-MODEL; SOFC; SIMULATION; PYROLYSIS; GAS; CAO;
D O I
10.1016/j.ecmx.2024.100524
中图分类号
O414.1 [热力学];
学科分类号
摘要
As part of sustainable development efforts, this study presents an innovative integrated system that combines the steam gasification of plastic waste with solid oxide fuel cells (SOFCs) to produce electricity. The proposed system is designed using Aspen Plus v10 (R) with two primary units. The first, a steam gasification system to produce H2 from the steam gasification of plastic waste. The second is a H2 driven SOFC system that generates electricity and is developed using Python. The study evaluates the combined system output in terms of power, current and voltage based on variation of temperature, steam/feed ratio (0.5-2), and CaO/feed ratio (0-1.5) of the gasifier. The study observes a decrease in the voltage (0.864 to 0.859 V) and power (0.852 to 0.845 W) with increasing gasification temperature (923-1173 K). Conversely, a rise in the steam/feed ratio inversely impacts the SOFC output, which is attributed to a decline in the H2 flowrate. Optimal conditions are met at gasifier temperature of 973 K, steam/feed ratio of 1.5, and CaO/feed ratio of 1. Moreover, using H2 flow rates to assess SOFC performance reveal increasing activation and ohmic losses (0.04 to 0.09 V and 0 to 0.28 V) with a temperature increase (973-1473 K), while concentration losses decreased (0-0.10 V). Nernst voltage and SOFC output voltage also decreased (1.1 to 0.52 V and 1.1 to 0.78 V) as SOFC temperature increases. Power output increased (0.0 to 1.57 W) with temperature, and the current-voltage relationship demonstrated reduced voltage (1.1 to 0.53 V) as the current is increased (0.0 to 2.8 A). This study provides an in-depth exploration into the development, modelling, and performance of both units, emphasizing their synergistic potential in the realm of sustainable electricity generation.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Modelling of a Solid Oxide Fuel Cell for Integrated Coal Gasification Hybrid Power Plant Simulation
    Krueger, M.
    INTERNATIONAL JOURNAL OF THERMODYNAMICS, 2015, 18 (02) : 95 - 109
  • [22] Modelling of a solid oxide fuel cell for integrated coal gasification hybrid power plant simulation
    DLR , Institute of Technical Thermodynamics, Pfaffenwaldring 38-40, Stuttgart
    70569, Germany
    Int. J. Thermodyn., 2 (95-109):
  • [23] Thermodynamic Analysis of a Solid Oxide Fuel Cell Based Combined Cooling, Heating, and Power System Integrated with Biomass Gasification
    Cui, Zhiheng
    Wang, Jiangjiang
    Lior, Noam
    ENTROPY, 2021, 23 (08)
  • [24] Biomass gasification integrated with a solid oxide fuel cell and Stirling engine
    Rokni, Masoud
    ENERGY, 2014, 77 : 6 - 18
  • [25] Thermodynamic analysis of solid oxide fuel cell & reheat and regenerative braysson cycle hybrid system integrated with steam generation
    Chandramouli, R.
    Sastry, G. Ravi Kiran
    Gugulothu, S. K.
    Rao, M. S. S. Srinivasa
    ENERGY CONVERSION AND MANAGEMENT, 2024, 301
  • [26] Thermal modeling and efficiency assessment of an integrated biomass gasification and solid oxide fuel cell system
    El-Emam, Rami Salah
    Dincer, Ibrahim
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2015, 40 (24) : 7694 - 7706
  • [27] Biomass reforming process for integrated solid oxide-fuel cell power generation
    Vasileiadis, S
    Ziaka-Vasileiadou, Z
    CHEMICAL ENGINEERING SCIENCE, 2004, 59 (22-23) : 4853 - 4859
  • [28] A Solid Oxide Fuel Cell Stack Integrated With a Diesel Reformer for Distributed Power Generation
    Liu, Haokun
    Wu, Yuhua
    Yue, Wancheng
    Wang, Jingyi
    Wang, Can
    Xu, Xinhai
    IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 2024, 60 (02) : 2471 - 2479
  • [29] Regulation strategies and thermodynamic analysis of combined cooling, heating, and power system integrated with biomass gasification and solid oxide fuel cell
    Wang, Jiangjiang
    Cui, Zhiheng
    Yao, Wenqi
    Huo, Shuojie
    ENERGY, 2023, 266
  • [30] Model-based evaluation of an integrated autothermal biomass gasification and solid oxide fuel cell combined heat and power system
    Borji, Mehdi
    Atashkari, Kazem
    Ghorbani, Saba
    Nariman-Zadeh, Nader
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE, 2017, 231 (04) : 672 - 694