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    Economic potential of bio-ethylene production via oxidative coupling of methane in biogas from anaerobic digestion of industrial effluents

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    Economic potential of bio-ethylene production via oxidative coupling of methane in biogas from anaerobic digestion of industrial effluents.pdf (28.21Mb)
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    Artigo de Periódico
    Date
    2021
    Author
    Penteado, Alberto Teixeira
    Lovato, Giovanna
    Ortiz, Abigail Pérez
    Esche, Erik
    Rodrigues, José Alberto Domingues
    Godini, Hamid Reza
    Orjuela, Alvaro
    Gušča, Jūlija
    Repke, Jens-Uwe
    xmlui.dri2xhtml.METS-1.0.item-sponsorship
    FAPESP/Brazil,
    Deutsche Forschungsgemeinschaft, DFG
    CAPES
    Bundesministerium für Bildung und Forschung, BMBF,
    CNPq
    State Education Development Agency Republic of Latvia, SEDA,
    Metadata
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    Abstract
    Brazil’s large biofuels industry generates significant amounts of effluents, e.g., vinasse from bioethanol, that can effectively be used as substrate for production of biogas via Anaerobic Digestion (AD). The Oxidative Coupling of Methane (OCM) is the heterogeneous catalytic oxidation of methane into ethylene, which is a main building block for the chemical industry. This work investigates the potential and competitiveness of bio-ethylene production via OCM using biogas produced by biological anaerobiosis of vinasse as a feedstock. The proposed process can add incentive to treat of vinasse via AD and replace fossil ethylene, thus potentially reducing emissions of Greenhouse Gases (GHG). A process model is developed in Aspen Plus v10 software and used to design an economic Biogas-based Oxidative Coupling of Methane (Bio-OCM) process that consumes biogas and oxygen as educts and produces ethylene, ethane, and light off-gases as products. Operating conditions in the reaction section are optimized and a reaction product yield of 16.12% is reached by applying two adiabatic Packed Bed Reactors (PBRs) in series. For the downstream CO2 removal section, a standalone amine-absorption process is simulated and compared to a hybrid membrane-absorption process on an economic basis. For the distillation section, two different configurations with and without Recycle Split Vapor (RSV) are simulated and compared. The bio-ethylene production cost for a Bio-OCM plant to be installed in Brazil is estimated considering a wide range of prices for educts, utility, side products, and equipment within a Monte Carlo simulation. The resulting average production cost of bio-ethylene is 0.53 ± 0.73 USD kg−1 C2H4 . The production cost is highly sensitive to the sales price assigned to a light off-gas side-product stream containing mostly the un-reacted methane. A sales price close to that of Brazilian pipeline natural gas has been assumed based on the characteristics of this stream. The Monte Carlo simulation shows that a bio-ethylene production cost below or equal to 0.70 USD kg−1 C2H4 is achieved with a 55.2% confidence, whereas market values for fossil ethylene typically lie between 0.70 USD kg−1 C2H4 to 1.50 USD kg−1 C2H4 . Technical and economic challenges for the industrial implementation of the proposed Bio-OCM process are identified and relevant opportunities for further research and improvement are discussed. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.
    1. Anaerobic digestion
    2. Biogas application
    3. Ethylene
    4. Methane
    5. Oxidative coupling of methane
    URI
    https://www.scopus.com/inward/record.uri?eid=2-s2.0-85114781792&doi=10.3390%2fpr9091613&partnerID=40&md5=870d5d0abca333af09a7534ee98fe904
    https://repositorio.maua.br/handle/MAUA/1392
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