Thermoeconomic modeling of new energy system based on biogas upgrading to multigenerational purpose

被引:1
|
作者
Wu, Yuwen [1 ]
机构
[1] Fujian Normal Univ, Coll Math & Stat, Fuzhou, Fujian, Peoples R China
关键词
Multigeneration; Exergy; Energy; Cost of exergy unit; Desalination; Biogas upgrading; LNG regasification; GEOTHERMAL HEAT-SOURCE; GAS-TURBINE; MULTICRITERIA OPTIMIZATION; HYDROGEN-PRODUCTION; SUPERCRITICAL CO2; EXERGY ANALYSIS; POWER-PLANT; FRESH-WATER; DRIVEN; CYCLE;
D O I
10.1016/j.desal.2024.118215
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The following article outlines an integrated approach toward the valorization of biogas for energy, chilled water, hot water, freshwater, and liquid carbon dioxide production. The suggested system includes a biogas upgrading unit with a biomethane-fueled burner, a Kalian cycle, an LNG regasification process, and a multi-effect desalination unit that can provide CO2, electricity, cooling, and heating. The new ideas in the proposed system include a cryogenic biogas upgrading process that can be used in many industrial settings, the production of liquid carbon dioxide through biogas upgrading, and the use of biomethane in the integrated combustion process. Furthermore, the grey wolf optimization technique is applied in various multi-objective optimization contexts to achieve optimal operating conditions and preferred performance outcomes. In this simulation, the generation of electricity reaches a value of 755 kW. Attached to it is a cooling load of about 5102 kW, with a heating load of 4725 kW, freshwater capacity about 1.33 kg/s, production rate of liquid CO2 at 0.58 kg/s, and natural gas at 3.1 kg/s. Thermodynamic results reveal that the proposed multigeneration performance scheme providently enhances energy and exergy efficiencies up to 59.82 % and 5.74 %, respectively, compared to the condition of a single product. The performed exergy analysis shows that the overall irreversibility of the suggested configuration is equal to 18,047 kW while about 42.6 % of this value is contributed from the heat exchanger E-104. Moreover, the CO2 emission intensity of the process can be kept as 0.35 kg/kWh. Cryogenic separation can obtain about 88 % of CO2 in biogas and turn it into its liquid phase. The performed economic assessment has resulted in the following total cost rate as well as cost per unit exergy: 321.38 $/h and 83.06 $/GJ, respectively. Under optimal conditions, an exergy efficiency of 13.40 % and a net power output of 2034.39 kW are attained.
引用
收藏
页数:24
相关论文
共 50 条
  • [41] DESIGN, ENERGY MODELING AND PERFORMANCE OF AN INTEGRATED INDUSTRIAL SIZE BIOGAS SOFC SYSTEM IN A WASTEWATER TREATMENT PLANT
    Gandiglio, Marta
    Mehr, Ali Saberi
    Lanzini, Andrea
    Santarelli, Massimo
    PROCEEDINGS OF THE ASME 14TH FUEL CELL SCIENCE, ENGINEERING, AND TECHNOLOGY CONFERENCE, 2016, 2016,
  • [42] Modeling, Simulation, and Experimental Analysis of a Photovoltaic and Biogas Hybrid Renewable Energy System for Electrification of Rural Community
    Habib, Salman
    Jia, Youwei
    Tamoor, Muhammad
    Zaka, Muhammad Ans
    Shi, Mengge
    Dong, Qianyu
    ENERGY TECHNOLOGY, 2023, 11 (10)
  • [43] Techno-economical evaluation of membrane based biogas upgrading system: A comparison between polymeric membrane and carbon membrane technology
    Haider, Shamim
    Lindbrathen, Arne
    Hagg, May-Britt
    GREEN ENERGY & ENVIRONMENT, 2016, 1 (03) : 222 - 234
  • [44] Techno-economical evaluation of membrane based biogas upgrading system:A comparison between polymeric membrane and carbon membrane technology
    Shamim Haider
    Arne Lindbrthen
    May-Britt H?gg
    Green Energy & Environment, 2016, 1 (03) : 222 - 234
  • [45] New Energy Services Based on Distributed Energy System
    Nakamura, Yoshimichi
    Kamitsukasa, Yutaka
    Nakamura, Yoshimichi
    2015 IEEE INTERNATIONAL TELECOMMUNICATIONS ENERGY CONFERENCE (INTELEC), 2015,
  • [46] Fuzzy regression-based modeling of single-phase energy meter for calibration purpose
    Purnomo, MH
    Purnomo, W
    Shimizu, E
    IMTC/97 - IEEE INSTRUMENTATION & MEASUREMENT TECHNOLOGY CONFERENCE: SENSING, PROCESSING, NETWORKING, PROCEEDINGS VOLS 1 AND 2, 1997, : 311 - 313
  • [47] Modeling and Optimization of Integrated Energy System Based on Energy Circuit Theory
    Li, Ming
    Wang, Zhe
    IEEJ TRANSACTIONS ON ELECTRICAL AND ELECTRONIC ENGINEERING, 2021, 16 (05) : 704 - 714
  • [48] AN AGENT BASED SIMULATION FOR BUILDING ENERGY SYSTEM MODELING
    Hu, Mengqi
    Wen, Jin
    Li, Fan
    Haghnevis, Moeed
    Khodadadegan, Yasaman
    Sanchez, Luis Mejia
    Wang, Shanshan
    Zhuang, Xiaotian
    Wu, Teresa
    PROCEEDINGS OF THE ASME DYNAMIC SYSTEMS AND CONTROL CONFERENCE 2010, VOL 2, 2010, : 247 - 254
  • [49] Modeling and thermo-economic analysis of a novel multigeneration system based on partial oxidation of biogas
    Wu, Buchen
    Li, Yue
    DESALINATION, 2025, 604
  • [50] FUZZY LOGIC-BASED ELEVATOR GROUP CONTROL SYSTEM FOR ENERGY OPTIMIZATION PURPOSE
    Fernandez, Joaquin R., V
    Cortes, Pablo
    Aparicio, Pablo
    IMCIC 2010: INTERNATIONAL MULTI-CONFERENCE ON COMPLEXITY, INFORMATICS AND CYBERNETICS, VOL II, 2010, : 143 - 148