Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7006969 | Chemical Engineering Research and Design | 2016 | 9 Pages |
Abstract
The biodiesel biorefinery is optimized, taking into account alternative configurations for algae cultivation and lipid extraction. Algae cultivation options are open ponds and tubular photobioreactors. Regarding lipid extraction, dewatering and subsequent n-hexane extraction, and combined ethanol/n-hexane extraction are the studied alternatives. Numerical results showed that open ponds and n-hexane extraction provide maximum net present value. However, n-hexane consumption dramatically rises, and industrial hazards have not been considered in the optimization process. To overcome this issue, a preliminary hazard analysis is carried out to identify hazardous materials and operations. Event trees are formulated to derive the frequencies of different accident scenarios, further determining the consequences. The major consequences of accidents involve toxic releases of high quantities of n-hexane. By comparing the proposed alternatives, this work aims to highlight the need to consider not only economic but also safety and environmental objectives in the development of a biodiesel production project.
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Authors
J. Pinedo, C.V. GarcÃa Prieto, A.A. D'Alessandro, R. Ibáñez, S. Tonelli, M.S. DÃaz, Á. Irabien,