2024 AIChE Annual Meeting

(529a) Invited Talk: A Commercial Demonstration of Biorefinery of Lipids -- Coproduction of Biodiesel and 1,3-Propanediol

Authors

Liu, D. - Presenter, Tsinghua University
Du, W., Tsinghua University
Chen, Z., Tsinghua University
Zhao, X., Tsinghua University
Lipase-catalyzed transesterification (also esterification) from oils or fats for biodiesel production has some advantages over chemical-catalyzed transesterification, such as environmental friendship, lower energy consumption,widely suitable for low quality vegetable oils or animal fats. However, the low stability of the lipase due to alcohol has been being regarded as the main hurdle to the industrialization of lipase-catalyzed biodiesel production. Tsinghua University has developed a novel process to eliminate the inhibition of methanol on lipase, thus the operational life of the lipase could be improved by more than 300 cycles from several (1-5) cycles while traditional process applied. The patented novel process was successfully demonstrated in several commercial plants (20-100 thousand ton/year) in China. It has also been demonstrated in Brazil and Malaysia.

As a by-product, glycerol will be produced at about 10% of biodiesel during the process of biodiesel production. More and more concerns were pay on how to utilize the crude glycerol. It could be a promising way to produce 1,3-propanediol (PDO) by fermentation with crude glycerol as feedstock. PDO is a valuable monomer to synthesize polytrimethylene terephthalate (PTT). PTT has excellent properties for textile fibre or engineering plastics, and it was found to have some better properties than other polyesters such as PET, PBT. Tsinghua University has developed a novel flexible process for PDO production by fermentation from glycerol or sugars, and it was successfully commercialized with capacity of 20,000 tons/year PDO in China.