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This report analyses the economics of an integrated plant producing Polybutadiene from glucose in the United States. In this process, glucose is converted to butadiene via a direct aerobic fermentation process similar to the one proposed by Global Bioenergies. Then, the butadiene is polymerized to polybutadiene via a typical solution process.
This report analyses the economics of an integrated plant producing Polybutadiene from raw sugar in Germany. In this process, raw sugar is hydrolyzed to glucose and fructose (invert sugars), which are fermented to butadiene via a direct aerobic fermentation process similar to the one proposed by Global Bioenergies. Then, the butadiene is polymerized to polybutadiene via a typical solution process.
This report presents the economics of Polybutadiene production from butadiene in the United States, via a typical solution process. In this process, butadiene is polymerized in the presence of a Ziegler-Natta catalyst and a solvent to produce Polybutadiene.
This report presents an economic analysis of an integrated unit for producing Polybutadiene starting from n-butane located in the United States. Initially, n-butane is dehydrogenated to butadiene, using a process similar to Lummus Catadiene. Then, the butadiene is polymerized to polybutadiene via a typical solution process.