Polyethylene Furanoate Production - Cost Analysis - PEF E11A

Polyethylene Furanoate Production - Cost Analysis - PEF E11A PDF Author: Intratec
Publisher: Intratec Solutions
ISBN: 1945324392
Category : Business & Economics
Languages : en
Pages : 53

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Book Description
This report presents a cost analysis of Polyethylene Furanoate (PEF) production from monoethylene glycol (MEG) and 2,5-furandicarboxylic acid (FDCA). In this process, FDCA and MEG are polymerized to PEF in two polymerization steps in order to obtain Bottle-Grade PEF: melt-phase polymerization and solid-state polymerization. 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) WO Patent 2015137807, issued to Furanix Technologies in 2015; (2) US Patent 6749821 issued to UOP in 2004 Keywords: Polyethylene Furanoate, Polyethylene 2,5-Furandicarboxylate, PEF, Green PEF, FDCA, MEG

Polyethylene Furanoate Production - Cost Analysis - PEF E11A

Polyethylene Furanoate Production - Cost Analysis - PEF E11A PDF Author: Intratec
Publisher: Intratec Solutions
ISBN: 1945324392
Category : Business & Economics
Languages : en
Pages : 53

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Book Description
This report presents a cost analysis of Polyethylene Furanoate (PEF) production from monoethylene glycol (MEG) and 2,5-furandicarboxylic acid (FDCA). In this process, FDCA and MEG are polymerized to PEF in two polymerization steps in order to obtain Bottle-Grade PEF: melt-phase polymerization and solid-state polymerization. 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) WO Patent 2015137807, issued to Furanix Technologies in 2015; (2) US Patent 6749821 issued to UOP in 2004 Keywords: Polyethylene Furanoate, Polyethylene 2,5-Furandicarboxylate, PEF, Green PEF, FDCA, MEG

Polyethylene Furanoate Production from Glucose - Cost Analysis - PEF E21A

Polyethylene Furanoate Production from Glucose - Cost Analysis - PEF E21A PDF Author: Intratec
Publisher: Intratec
ISBN:
Category : Business & Economics
Languages : en
Pages : 103

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Book Description
This report presents a cost analysis of Polyethylene Furanoate (PEF) production starting from glucose and monoethylene glycol (MEG). The process examined is similar to the Avantium YXY process, followed by a process that copolymerizes FDCA and MEG. In this process, a 70 wt% glucose-water syrup feed is isomerized to fructose. Then, fructose is converted to methoxy methyl furan (MMF) intermediate, which is oxidized to FDCA. This process generates methyl acetate and methyl levulinate as by-products. The FDCA generated and MEG are polymerized to PEF in two polymerization steps in order to obtain Bottle-Grade PEF. This report was developed based essentially on the following reference(s): (1) US Patent 8519167, issued to Furanix Technologies B.V. in 2013 (2) US Patent 20160024039, issued to Furanix Technologies B.V. in 2016 (3) WO Patent 2015137807, issued to Furanix Technologies in 2015 Keywords: Polyethylene Furanoate, PEF, Green FDCA, Hydroxyl Methyl Furfural, HMF, Purified Terephthalic Acid, Polyethylene 2,5-Furandicarboxylate, MEG

Polyethylene Terephthalate Production Process - Cost Analysis - PET E11A

Polyethylene Terephthalate Production Process - Cost Analysis - PET E11A PDF Author: Intratec
Publisher: Intratec Solutions
ISBN:
Category : Business & Economics
Languages : en
Pages : 101

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Book Description
This report presents a cost analysis of Polyethylene Terephthalate (PET) production from ethylene glycol and purified terephthalic acid (PTA). The process examined is a typical melt-phase polymerization followed by solid-state polymerization. In this process, initially an oligomer intermediate is produced by the esterification of PTA with ethylene glycol. The oligomer then undergoes a melt-polymerization and a solid-state polymerization, leading to a bottle grade PET. This report was developed based essentially on the following reference(s): (1) "Polyesters, Thermoplastic", Kirk-Othmer Encyclopedia of Chemical Technology, 5th edition (2) "Polyesters", Ullmann's Encyclopedia of Industrial Chemistry, 7th edition Keywords: Thermoplastic Polymer, Polyester, High Intrinsic Viscosity, Melt-Phase Polycondensation

Polypropylene Carbonate Production - Cost Analysis - PPC E11A

Polypropylene Carbonate Production - Cost Analysis - PPC E11A PDF Author: Intratec
Publisher: Intratec
ISBN:
Category : Business & Economics
Languages : en
Pages : 102

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Book Description
This report presents a cost analysis of Polypropylene Carbonate (PPC) production from propylene oxide (PO) and carbon dioxide. The process examined is based on patents issued to SK Energy. In this process, polymerization reaction is carried out in full-liquid phase, under pressurized atmosphere. This report was developed based essentially on the following reference(s): Keywords: Polypropylene Carbonate, PPC, SK Energy

Polyethylene Furanoate Production from Raw Sugar - Cost Analysis - PEF E31B

Polyethylene Furanoate Production from Raw Sugar - Cost Analysis - PEF E31B PDF Author: Intratec
Publisher: Intratec
ISBN:
Category : Business & Economics
Languages : en
Pages : 103

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Book Description
This report presents a cost analysis of Polyethylene Furanoate (PEF) production starting from raw sugar and monoethylene glycol (MEG). The process examined is similar to the Avantium YXY process, followed by a process that copolymerizes FDCA and MEG. In this process, a raw sugar (sucrose) is inverted to glucose and fructose. The glucose is isomerized to fructose. Then, fructose is converted to methoxy methyl furan (MMF) intermediate, which is oxidized to FDCA. This process generates methyl acetate and methyl levulinate as by-products. The FDCA generated and MEG are polymerized to PEF in two polymerization steps in order to obtain Bottle-Grade PEF. This report was developed based essentially on the following reference(s): (1) US Patent 8519167, issued to Furanix Technologies B.V. in 2013 (2) US Patent 20160024039, issued to Furanix Technologies B.V. in 2016 (3) WO Patent 2015137807, issued to Furanix Technologies in 2015 Keywords: Polyethylene Furanoate, PEF, Green FDCA, Hydroxyl Methyl Furfural, HMF, Purified Terephthalic Acid, Polyethylene 2,5-Furandicarboxylate, MEG

FDCA Production from Glucose - Cost Analysis - FDCA E11A

FDCA Production from Glucose - Cost Analysis - FDCA E11A PDF Author: Intratec
Publisher: Intratec Solutions
ISBN: 1945324406
Category : Business & Economics
Languages : en
Pages : 57

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Book Description
This report presents a cost analysis of 2,5-Furandicarboxylic Acid (FDCA) production from glucose syrup via the furan pathway. The process examined is similar to the Avantium YXY process, which is being scaled up to become a commercial process. In this process, glucose is isomerized to fructose. Then, fructose is converted to methoxy methyl furan (MMF) intermediate, which is oxidized to FDCA. The process uses a 70 wt% glucose-water syrup as raw material and generates methyl acetate and methyl levulinate as by-products. 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 20100299991, issued to Furanix Technologies B.V. in 2010; (2) US Patent 8519167, issued to Furanix Technologies B.V. in 2013; (3) US Patent 20160024039, issued to Furanix Technologies B.V. in 2016 Keywords: Polyethylene Furanoate, PEF, Green FDCA, Hydroxyl Methyl Furfural, HMF, Purified Terephthalic Acid

HDPE Production via Slurry Process - Cost Analysis - HDPE E11A

HDPE Production via Slurry Process - Cost Analysis - HDPE E11A PDF Author: Intratec
Publisher: Intratec Solutions
ISBN: 1945324686
Category : Business & Economics
Languages : en
Pages : 52

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Book Description
This report presents a cost analysis of High Density Polyethylene (HDPE) bimodal production from polymer grade (PG) ethylene and 1-butene using a slurry process. The process examined is similar to LyondellBasell Hostalen process. 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): LyondellBasell, "Licensed Polyolefin Technologies and Services - Hostalen" Keywords: Ethene, Bimodal, Multimodal, CSTR, Advanced Cascade Process, ACP, Butylene

Allyl Polyethylene Glycol Production - Cost Analysis - Allyl PEG E11A

Allyl Polyethylene Glycol Production - Cost Analysis - Allyl PEG E11A PDF Author: Intratec
Publisher: Intratec
ISBN:
Category : Business & Economics
Languages : en
Pages : 100

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Book Description
This report presents a cost analysis of Allyl Polyethylene Glycol (APEG) production starting from polyethylene glycol ether and allyl chloride. The process examined is known as polymer capping. In this process, a methyl-terminated polyethylene glycol is reacted with allyl chloride to generate Allyloxy- methyl terminated Polyethylene Glycol ether with molecular weight ranging from 380 to 400. This report was developed based essentially on the following reference(s): Chinese Patent 105457074, issued to South China University of Technology in 2015 Keywords: Silicone copolymer, MEG, PEG, silicone surfactant

LDPE via High-Pressure Tubular Process - Cost Analysis - LDPE E11A

LDPE via High-Pressure Tubular Process - Cost Analysis - LDPE E11A PDF Author: Intratec
Publisher: Intratec
ISBN:
Category : Business & Economics
Languages : en
Pages : 102

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Book Description
This report presents a cost analysis of Low Density Polyethylene (LDPE) production from polymer grade (PG) ethylene. The process examined is a typical high-pressure tubular polymerization process. This report was developed based essentially on the following reference(s): (1) US Patent 6899852, issued to ExxonMobil in 2005 (2) US Patent 20130333832, issued to LyondellBasell in 2013 Keywords: Ethene, PE, BASF, Tubular Reactor, ExxonMobil, LyondellBasell, Lupotech

Polyester Thermoplastic Polyurethane Production - Cost Analysis - PU E11A

Polyester Thermoplastic Polyurethane Production - Cost Analysis - PU E11A PDF Author: Intratec
Publisher: Intratec
ISBN:
Category : Business & Economics
Languages : en
Pages : 102

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Book Description
This report presents a cost analysis of Polyester Thermoplastic Polyurethane (TPU) production from methylene diphenyl diisocyanate (MDI) and poly(1,4-butanediol adipate). In this process, the polymerization reaction occurs in a twin screw extruder. This report was developed based essentially on the following reference(s): Keywords: Reactive Extruder, Extrusion, One-Shot Polymerization, Ester-Based TPU