3-Hydroxypropionic Acid from Glucose - Cost Analysis - 3-HP E11A

3-Hydroxypropionic Acid from Glucose - Cost Analysis - 3-HP E11A
Author :
Publisher : Intratec Solutions
Total Pages : 52
Release :
ISBN-10 : 9781945324437
ISBN-13 : 1945324430
Rating : 4/5 (37 Downloads)

Book Synopsis 3-Hydroxypropionic Acid from Glucose - Cost Analysis - 3-HP E11A by : Intratec

Download or read book 3-Hydroxypropionic Acid from Glucose - Cost Analysis - 3-HP E11A written by Intratec and published by Intratec Solutions. This book was released on 2016-05-01 with total page 52 pages. Available in PDF, EPUB and Kindle. Book excerpt: This report presents a cost analysis of 3-Hydroxypropionic Acid (3-HP) production from glucose syrup using a fermentation process. The process examined is similar to Cargill process. In this process, a 70 wt% glucose-water syrup is used as raw material. This report examines one-time costs associated with the construction of a United States-based plant and the continuing costs associated with the daily operation of such a plant. More specifically, it discusses: * Capital Investment, broken down by: - Total fixed capital required, divided in production unit (ISBL); infrastructure (OSBL) and contingency - Alternative perspective on the total fixed capital, divided in direct costs, indirect costs and contingency - Working capital and costs incurred during industrial plant commissioning and start-up * Production cost, broken down by: - Manufacturing variable costs (raw materials, utilities) - Manufacturing fixed costs (maintenance costs, operating charges, plant overhead, local taxes and insurance) - Depreciation and corporate overhead costs * Raw materials consumption, products generation and labor requirements * Process block flow diagram and description of industrial site installations (production unit and infrastructure) This report was developed based essentially on the following reference(s): (1) US Patent 7186856, issued to Cargill in 2007; (2) US Patent 8883464, issued to Opx Biotechnologies in 2014 Keywords: Dextrose, Anaerobic Fermentation, Salt-Splitting, Acrylic Acid, Tridecylamine


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