Techno-economic evaluation of third-generation bioethanol production utilizing the macroalgae waste: A case study in Malaysia

Production of third-generation bioethanol from macroalgae cellulosic residue (MCR) has received increasing interest from researchers to utilize waste for valuable product creation effectively. In this study, a techno-economic assessment to produce anhydrous bioethanol from MCR in Malaysia had been c...

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Bibliographic Details
Main Authors: Chong, T.Y., Cheah, S.A., Ong, C.T., Wong, L.Y., Goh, C.R., Tan, I.S., Foo, H.C.Y., Lam, M.K., Lim, S.
Format: Article
Published: Elsevier Ltd 2020
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85089245700&doi=10.1016%2fj.energy.2020.118491&partnerID=40&md5=283218884e1fcea4c2ffe1ff8da9816a
http://eprints.utp.edu.my/23276/
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Summary:Production of third-generation bioethanol from macroalgae cellulosic residue (MCR) has received increasing interest from researchers to utilize waste for valuable product creation effectively. In this study, a techno-economic assessment to produce anhydrous bioethanol from MCR in Malaysia had been conducted by using Aspen Plus V10 and other computer-aided softwares. Kota Kinabalu Industrial Park at Sabah was identified and selected as a proper location to produce the anhydrous bioethanol based on a framework structured by the Triple Bottom Line. The overall results from the present study showed that 15833.3 kg/h of MCR was required to produce 7626 kg/h of anhydrous bioethanol. It was also found that the energy utilization could be reduced up to 32 with net energy ratio of 0.53 after implementing the Heat Exchanges Networks Synthesis and a series of process optimization. In 20 years of plant life, the pay-back period was 8 years with an internal rate of return of 23.17. The minimum selling price of anhydrous bioethanol was estimated to be 0.54/kg and able to compete with the market prices of bioethanol derived from other feedstocks. © 2020 Elsevier Ltd