Technical, economic, and regulatory analysis of the implementation of micro-cogeneration technology in the Brazilian manufacturing sector

被引:0
|
作者
Clesio L. Landini
Paulo Henrique de Mello Sant’Ana
机构
[1] Federal University of ABC UFABC,
来源
Energy Efficiency | 2017年 / 10卷
关键词
Micro-cogeneration; Distributed generation; Regulations; Natural gas; Micro-turbine;
D O I
暂无
中图分类号
学科分类号
摘要
Small-scale distributed power generation offers environmental benefits through the improvement of global energy efficiency, in addition to increasing the reliability of the power supply. In this study, the technical and economic viability of the implementation of micro-cogeneration technology in the manufacturing sector was studied in light of the Brazilian regulatory situation. The thermal efficiency potential for the manufacturing sector is introduced for further exploration by decision-makers. This study also investigated the behavior of micro-cogeneration in distributed generation through the Brazilian Energy Compensation System. The technical viability was studied by simulating a Brayton cycle with the operation parameters of a 100 kW micro-turbine. This simulation allowed an estimation of the avoided cost of natural gas compared to an industrial process without cogeneration. Rate projections were performed by linear regression during the system’s depreciation period. The economic evaluation was performed using the following indicators: net present value (NPV), internal rate of return (IRR), and discounted payback. Finally, a sensitivity study was performed to project how the micro-cogeneration efficiency and the Brazilian regulations can address future variations of natural gas and electricity rates. Given the conditions of this study, the increase in energy prices favors micro-cogeneration; however, the economic viability is affected if the system operates below 70% of heat use in industrial processes, which reduces the effect of public policies toward the incentive to cogenerate.
引用
下载
收藏
页码:957 / 971
页数:14
相关论文
共 50 条
  • [31] Analysis of the integrated energy system in residential scale: Photovoltaics, micro-cogeneration and electrical energy storage
    Kotowicz, Janusz
    Uchman, Wojciech
    ENERGY, 2021, 227
  • [32] Technical assessment of a micro-cogeneration system based on polymer electrolyte membrane fuel cell and fluidized bed autothermal reformer
    Di Marcoberardino, Gioele
    Roses, Leonardo
    Manzolini, Giampaolo
    APPLIED ENERGY, 2016, 162 : 231 - 244
  • [33] Energy, Environmental and Economic Dynamic Simulation of a Micro-Cogeneration System Serving an Italian Multi-Family House
    Ciampi, Giovanni
    Rosato, Antonio
    Scorpio, Michelangelo
    Sibilio, Sergio
    6TH INTERNATIONAL BUILDING PHYSICS CONFERENCE (IBPC 2015), 2015, 78 : 1141 - 1146
  • [34] Energy analysis of a novel domestic scale integrated wooden pellet-fueled micro-cogeneration concept
    Alanne, K. (kari.alanne@aalto.fi), 1600, Elsevier Ltd (80):
  • [35] Innovative membrane reformer for hydrogen production applied to PEM micro-cogeneration: Simulation model and thermodynamic analysis
    Campanari, S.
    Macchi, E.
    Manzolini, G.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2008, 33 (04) : 1361 - 1373
  • [36] Performance analysis of a biomass powered micro-cogeneration system based on gasification and syngas conversion in a reciprocating engine
    La Villetta, M.
    Costa, M.
    Cirillo, D.
    Massarotti, N.
    Vanoli, L.
    ENERGY CONVERSION AND MANAGEMENT, 2018, 175 : 33 - 48
  • [37] Integration of sewage source heat pump and micro-cogeneration system based on domestic hot water demand characteristics: A feasibility study and economic analysis
    Xu, Tongyu
    Wang, Xiaoyang
    Wang, Yafei
    Li, You
    Xie, Huayue
    Yang, Haolin
    Wei, Xindong
    Gao, Weijun
    Lin, Yingzi
    Shi, Chunyan
    PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2023, 179 : 796 - 811
  • [38] Energy analysis of a novel domestic scale integrated wooden pellet-fueled micro-cogeneration concept
    Alanne, Kari
    Jokisalo, Juha
    ENERGY AND BUILDINGS, 2014, 80 : 290 - 301
  • [39] A Techno-economic comparison of micro-cogeneration systems based on polymer electrolyte membrane fuel cell for residential applications
    Di Marcoberardino, G.
    Chiarabaglio, L.
    Manzolini, G.
    Campanari, S.
    APPLIED ENERGY, 2019, 239 : 692 - 705
  • [40] Energy analysis of a novel domestic scale integrated wooden pellet-fueled micro-cogeneration concept
    Alanne, Kari
    Jokisalo, Juha
    Energy and Buildings, 2014, 80 : 290 - 301