Techno-economic evaluation of a process for direct conversion of methane to aromatics

被引:24
|
作者
Corredor, E. Camilo [1 ]
Chitta, Pallavi [1 ]
Deo, Milind D. [1 ]
机构
[1] Univ Utah, Dept Chem Engn, 50 S Cent Campus Dr Rm 3290, Salt Lake City, UT 84112 USA
基金
美国能源部;
关键词
Methane; Gas-to-liquids; Benzene; Economic; Membrane; Aspen Plus; AROMATIZATION;
D O I
10.1016/j.fuproc.2018.05.038
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Natural gas is widely abundant and relatively inexpensive. As such, large quantities are flared every year. This presents an opportunity to use natural gas as a chemical feedstock. Non-oxidative dehydroaromatization of methane, the major component of natural gas is proposed as an option to monetize natural gas. This study evaluates the economics of the methane to benzene process. A catalytic membrane reactor model written in MATLAB has been directly implemented in an Aspen Plus V9 process model using CAPE-OPEN interoperability. Minimum utility requirements and heat exchanger designs were identified in Aspen Energy Analyzer, and process economics for a variety of feed and product prices were assessed using Aspen Process Economic Analyzer. The results indicate that the venture is profitable (profitability index of 1.17, IRR of 35.5%, NRR of 18.2%). The capital cost was found to be $35,500 per daily standard barrel of benzene. Additionally, the process remains economically attractive so long as either the price of benzene remains above $470/ton, or the price of hydrogen remains above $0.8/kg.
引用
收藏
页码:55 / 61
页数:7
相关论文
共 50 条
  • [1] Technical and Economic Feasibility of Direct Methane Conversion for Hydrocarbon Production: Process Design and Techno-economic Analysis
    Do, Thai Ngan
    Kim, Yong Tae
    Kim, Jiyong
    [J]. 30TH EUROPEAN SYMPOSIUM ON COMPUTER AIDED PROCESS ENGINEERING, PTS A-C, 2020, 48 : 1015 - 1020
  • [2] Techno-Economic Evaluation of an Oxidative Coupling of Methane Process at Industrial Scale Production
    Salerno, D.
    Godini, H. R.
    Penteado, A.
    Esche, E.
    Wozny, G.
    [J]. 26TH EUROPEAN SYMPOSIUM ON COMPUTER AIDED PROCESS ENGINEERING (ESCAPE), PT B, 2016, 38B : 1785 - 1790
  • [3] A techno-economic evaluation of a biomass energy conversion park
    Van Dael, Miet
    Van Passel, Steven
    Pelkmans, Luc
    Guisson, Ruben
    Reumermann, Patrick
    Luzardo, Nathalie Marquez
    Witters, Nele
    Broeze, Jan
    [J]. APPLIED ENERGY, 2013, 104 : 611 - 622
  • [4] Direct methane conversion to aromatics
    Liu, Yi
    Wang, Tianyuan
    Xu, Teng
    Zhang, Yi
    [J]. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2017, 254
  • [5] Methane conversion into aromatics in a direct plasma-catalytic process
    Heintze, M
    Magureanu, M
    [J]. JOURNAL OF CATALYSIS, 2002, 206 (01) : 91 - 97
  • [6] Techno-economic evaluation of a biogas-based oxidative coupling of methane process for ethylene production
    Alberto T. Penteado
    Mijin Kim
    Hamid R. Godini
    Erik Esche
    Jens-Uwe Repke
    [J]. Frontiers of Chemical Science and Engineering, 2018, 12 : 598 - 618
  • [7] Techno-economic evaluation of a biogas-based oxidative coupling of methane process for ethylene production
    Penteado, Alberto T.
    Kim, Mijin
    Godini, Hamid R.
    Esche, Erik
    Repke, Jens-Uwe
    [J]. FRONTIERS OF CHEMICAL SCIENCE AND ENGINEERING, 2018, 12 (04) : 598 - 618
  • [8] Techno-economic analysis of biomass to fuel conversion via the MixAlco process
    Pham, Viet
    Holtzapple, Mark
    El-Halwagi, Mahmoud
    [J]. JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2010, 37 (11) : 1157 - 1168
  • [9] Techno-economic assessment of a synthetic methane production process by hydrogenation of carbon dioxide from direct air capture
    Tregambi, Claudio
    Bareschino, Piero
    Hanak, Dawid P.
    Mancusi, Erasmo
    Montagnaro, Fabio
    Pepe, Francesco
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2023, 48 (96) : 37594 - 37606
  • [10] Techno-Economic Evaluation of Phosphorous Recovery in Soybean Biodiesel Process
    Juneja, Ankita
    Kurambhatti, Chinmay
    Kumar, Deepak
    Singh, Vijay
    [J]. PROCESSES, 2022, 10 (08)