4.7 Article

Maximizing the value of biodiesel industry waste: Exploring recover, recycle, and reuse for sustainable environment

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ELSEVIER
DOI: 10.1016/j.eti.2023.103447

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Biofuel; Biodiesel; Glycerol; Waste utilization; Environment; Pollution

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This study systematically addresses challenges faced during the conversion of biodiesel as a sustainable alternative to conventional diesel and investigates the potential of glycerol, a byproduct of biodiesel production, through advanced conversion methodologies. It highlights cutting-edge advancements in biodiesel waste management techniques and emphasizes the critical need for sustainable approaches to mitigate environmental impact.
As the global population burgeons and economic demands escalate, the imperative to explore alternative energy sources intensifies. This study systematically addresses challenges posed by the growing demand for renewable energy and its conversion into biofuels, with a focus on biodiesel as a sustainable alternative to conventional diesel. An in-depth investigation into the glycerol byproduct, a notable consequence of biodiesel production, is conducted to unlock its latent potential through advanced conversion methodologies. The methodology entails a meticulous review of cutting-edge advancements in biodiesel industry waste management techniques, emphasizing a strategic implementation of the 'Recover, Recycle, and Reuse' paradigm. The outcomes substantiate the feasibility and importance of repositioning glycerol, elucidating its conversion into value-added products. The study delineates significant strides in biodiesel waste management, underscoring the critical need for a sustainable approach to mitigate environmental impact. This research contributes not only to the scientific elucidation of biofuel production intricacies but also champions a paradigm shift toward a more technically sound and sustainable future within the biodiesel industry.

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