Epichlorohydrin Production From Propylene Cost Analysis Ech E21a PDF Download

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Epichlorohydrin Production from Propylene - Cost Analysis - ECH E21A

Epichlorohydrin Production from Propylene - Cost Analysis - ECH E21A
Author: Intratec
Publisher: Intratec
Total Pages: 102
Release: 2019-09-17
Genre: Business & Economics
ISBN:

Download Epichlorohydrin Production from Propylene - Cost Analysis - ECH E21A Book in PDF, ePub and Kindle

This report presents a cost analysis of Epichlorohydrin production from propylene and chlorine. The process examined is a typical dehydrochlorination process. This process involves three main steps: (i) chlorination of propylene to allyl chloride; (ii) addition of hypochlorous acid to the allyl chloride formed yielding glycerol dichlorohydrins, and (iii) treatment of the glycerol – dichlorohydrin mixture with a base, yielding Epichlorohydrin product. 99.9 wt.% Epichlorohydrin is obtained. This report was developed based essentially on the following reference(s): Rowe, C.E., 'Chlorohydrins', Chemical Processing Handbook, 1993 Keywords: 3-Chloropropene, Hypochlorous Acid, HOCl, Chlorination


Epichlorohydrin Production from Propylene - Cost Analysis - ECH E22A

Epichlorohydrin Production from Propylene - Cost Analysis - ECH E22A
Author: Intratec
Publisher: Intratec
Total Pages: 102
Release: 2019-09-17
Genre: Business & Economics
ISBN:

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This report presents a cost analysis of Epichlorohydrin production from propylene and chlorine. The process examined is similar to Daiso's Allyl Alcohol route. In this process, propylene is subjected to direct oxidation and further hydrolysis to obtain allyl alcohol. This intermediate undergoes chlorination and, after a final step of alkaline epoxidation, Epichlorohydrin is obtained. This report was developed based essentially on the following reference(s): Keywords: Allyl alcohol route, Daiso, alkaline epoxidation


Ethylene Production Cost Analysis - Overview - Ethylene AA01

Ethylene Production Cost Analysis - Overview - Ethylene AA01
Author: Intratec
Publisher: Intratec
Total Pages: 58
Release: 2016-03-01
Genre: Business & Economics
ISBN:

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This report presents alternatives for producing Ethylene from different feedstocks and a cost comparison of these alternatives, across different countries. More specifically, the report compares the costs of Ethylene production through the following pathways: * Pathway 1: Ethylene Production from Ethane * Pathway 2: Ethylene Production from Ethane and Propane * Pathway 3: Green Ethylene Production from Ethanol In Pathways 1 and 2, Ethylene is produced via steam cracking of different feedstocks: ethane and a mixture of ethane and propane. In Pathway 3, Ethylene is produced from ethanol, which is a renewable feedstock. The analysis presented in this report includes: * A comparison of the economic potential of the pathways listed above in several countries, comprising: - Comparative analysis of capital costs - Comparative analysis of production costs - Comparison between product price and raw materials costs of each pathway * An overview of each production pathway, including: - Raw material(s) consumption figures and product(s) generated - Related technology licensors and block flow diagram of representative industrial processes Keywords: Hydrocarbon Pyrolysis, Cracking Furnace, Ethene, Propene, Shale Gas, CB&I Lummus, Technip, Shaw Stone & Webster, Kellogg-Braun & Root, KBR, Linde, Green Ethylene, Braskem, Chematur Technologies, Petron Scientech, Scientific Design, Dow Chemical, BP, Ethanol Dehydration


Propylene Production from Ethylene - Cost Analysis - Propylene E21A

Propylene Production from Ethylene - Cost Analysis - Propylene E21A
Author: Intratec
Publisher: Intratec Solutions
Total Pages: 106
Release: 2019-09-17
Genre: Business & Economics
ISBN:

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This report presents a cost analysis of Polymer Grade (PG) Propylene production from ethylene using two integrated processes: dimerization and metathesis. The processes examined are similar to CB&I Lummus technologies: Ethylene Dimerization Technology and Olefins Conversion Technology (OCT). In these processes, ethylene is first dimerized into butenes, and then, Propylene is produced through a metathesis reaction of 2-butene and ethylene. This report was developed based essentially on the following reference(s): (1) US Patent 8440874, issued to Lummus Technology and BASF in 2013 (2) US Patent 4242531, issued to Phillips Petroleum Company in 1980 Keywords: PG Propylene, Olefins Dimerization, Olefins Disproportionation, Lummus OCT, Olefins Metathesis, Phillips Triolefin, Propene, Ethene, On-Purpose Propylene Production


Propylene Production from Methanol via MTP Process - Cost Analysis - Propylene E41A

Propylene Production from Methanol via MTP Process - Cost Analysis - Propylene E41A
Author: Intratec
Publisher: Intratec
Total Pages: 102
Release: 2019-09-17
Genre: Business & Economics
ISBN:

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This report presents a cost analysis of Polymer Grade (PG) Propylene production from methanol using a methanol-to-propylene (MTP) process. The process examined is similar to Lurgi MTP process. This process is carried out in two steps: first, methanol is converted to dimethyl ether (DME), and then DME is converted to Propylene. Gasoline is also generated as by-product in the process. This report was developed based essentially on the following reference(s): US Patent 20100063337, issued to Lurgi in 2010 Keywords: PG Propylene, Methyl Alcohol, Propene, On-Purpose Propylene Production


Propylene Production Cost Analysis - Overview - Propylene AA01

Propylene Production Cost Analysis - Overview - Propylene AA01
Author: Intratec Solutions
Publisher:
Total Pages: 54
Release: 2016-03
Genre:
ISBN: 9781945324215

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This report presents alternatives for producing PG Propylene from different feedstocks and a cost comparison of these alternatives, across different countries. More specifically, the report compares the costs of PG Propylene production through the following pathways:* Pathway 1: Propylene Production from Light Naphtha* Pathway 2: Propylene Production from Ethylene and Butenes* Pathway 3: Propylene Production from Propane (with Hydrogen Generation)Pathway 1 corresponds to a steam cracker for Propylene production (ethylene as co-product). In Pathway 2, Propylene is produced via metathesis reaction of ethylene with 2-butene (present in raffinate-2 feedstock). In Pathway 3, propane is dehydrogenated to Propylene with hydrogen generated being valued as fuel. The analysis presented in this report includes:* A comparison of the economic potential of the pathways listed above in several countries, comprising: * Comparative analysis of capital costs * Comparative analysis of production costs * Comparison between product price and raw materials costs of each pathway * An overview of each production pathway, including: * Raw material(s) consumption figures and product(s) generated * Related technology licensors and block flow diagram of representative industrial processes Keywords: Propene, Ethene, Steam Cracking, PDH, Propane Dehydrogenation, Olefins Conversion Technology, OCT


Propylene Production via Metathesis - Cost Analysis - Propylene E11A

Propylene Production via Metathesis - Cost Analysis - Propylene E11A
Author: Intratec
Publisher: Intratec Solutions
Total Pages: 104
Release: 2019-09-17
Genre: Business & Economics
ISBN:

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This report presents a cost analysis of Polymer Grade (PG) Propylene production from ethylene and raffinate-2 using a metathesis process. The process examined is similar to CB&I Lummus Technology's Olefins Conversion Technology (OCT). In this process, Polymer Grade Propylene is produced through a metathesis reaction of ethylene with 2-butene, present in raffinate-2 feedstock. This report examines one-time costs associated with the construction of a 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 process unit (ISBL); infrastructure (OSBL), contingency and owner's cost - Total fixed capital required, divided in process unit (ISBL); infrastructure (OSBL), contingency and owner's cost - Working capital and costs incurred during industrial plant commissioning and start-up * Operating cost, broken down by: - Variable operating costs (raw materials, utilities) - Fixed operating costs (maintenance, operating charges, plant overhead, local taxes and insurance) - Depreciation This report was developed based essentially on the following reference(s): (1) US Patent 8440874, issued to Lummus Technology and BASF in 2013 (2) US Patent 20050124839, issued to Lummus Technology in 2005 Keywords: PG Propylene, Olefins Disproportionation, Lummus OCT, Olefins Metathesis, Phillips Triolefin, Propene, Ethene, Butylene, On-Purpose Propylene Production


Ethylene Production via Cracking of Ethane/Propane - Cost Analysis - Ethylene E21A

Ethylene Production via Cracking of Ethane/Propane - Cost Analysis - Ethylene E21A
Author: Intratec
Publisher: Intratec Solutions
Total Pages: 102
Release: 2019-09-17
Genre: Business & Economics
ISBN:

Download Ethylene Production via Cracking of Ethane/Propane - Cost Analysis - Ethylene E21A Book in PDF, ePub and Kindle

This report presents a cost analysis of polymer grade (PG) Ethylene production starting from an ethane/propane mixture at a volume ratio of 4:1. A typical steam cracking process with front-end demethanization is employed. In this process, a mix of 80 vol% ethane and 20 vol% propane is thermally cracked in pyrolysis furnaces. In addition to polymer grade Ethylene, the process also generates polymer grade propylene and hydrogen-rich gas. This report was developed based essentially on the following reference(s): "Ethylene", Ullmann's Encyclopedia of Industrial Chemistry, 7th edition Keywords: Ethene, Propene, Hydrocarbon Pyrolysis, Cracking Furnace, Lummus, KBR, Technip, Linde, S&W


Impact Polypropylene via Gas Process - Cost Analysis - PP E21A

Impact Polypropylene via Gas Process - Cost Analysis - PP E21A
Author: Intratec
Publisher: Intratec
Total Pages: 103
Release: 2019-09-17
Genre: Business & Economics
ISBN:

Download Impact Polypropylene via Gas Process - Cost Analysis - PP E21A Book in PDF, ePub and Kindle

This report presents a cost analysis of Polypropylene (PP) impact copolymer production from polymer grade (PG) propylene and ethylene using a gas phase polymerization process. The process examined is similar to LyondellBasell Spherizone process. This process is based on the polymerization of PG propylene and ethylene in a multi-zone circulating reactor. This report was developed based essentially on the following reference(s): Keywords: PG Propylene, Propene, Ethene, MZCR, Gas-Phase Reactor, Bimodal


Ethylene Production Cost Analysis - Overview - Ethylene AA01

Ethylene Production Cost Analysis - Overview - Ethylene AA01
Author: Intratec Solutions
Publisher:
Total Pages: 58
Release: 2016-03
Genre:
ISBN: 9781945324222

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This report presents alternatives for producing Ethylene from different feedstocks and a cost comparison of these alternatives, across different countries. More specifically, the report compares the costs of Ethylene production through the following pathways:* Pathway 1: Ethylene Production from Ethane* Pathway 2: Ethylene Production from Ethane and Propane* Pathway 3: Green Ethylene Production from EthanolIn Pathways 1 and 2, Ethylene is produced via steam cracking of different feedstocks: ethane and a mixture of ethane and propane. In Pathway 3, Ethylene is produced from ethanol, which is a renewable feedstock.The analysis presented in this report includes:* A comparison of the economic potential of the pathways listed above in several countries, comprising: * Comparative analysis of capital costs * Comparative analysis of production costs * Comparison between product price and raw materials costs of each pathway * An overview of each production pathway, including: * Raw material(s) consumption figures and product(s) generated * Related technology licensors and block flow diagram of representative industrial processes Keywords: Hydrocarbon Pyrolysis, Cracking Furnace, Ethene, Propene, Shale Gas, CB&I Lummus, Technip, Shaw Stone & Webster, Kellogg-Braun & Root, KBR, Linde, Green Ethylene, Braskem, Chematur Technologies, Petron Scientech, Scientific Design, Dow Chemical, BP, Ethanol Dehydration