A Comparative Operating Cost Analysis For The Plastics Industry PDF Download

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A Comparative Operating Cost Analysis for the Plastic Industry

A Comparative Operating Cost Analysis for the Plastic Industry
Author:
Publisher:
Total Pages: 37
Release: 1997
Genre:
ISBN:

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Presents and analyzes major operating costs scaled to a representative moulded plastics products plant in New Brunswick, with comparisons to selected manufacturing sites in the United States. Costs not varying significantly with geography were not considered. The analysis focuses on those key geographically-variable cost elements considered to be fundamental to the plastics industry competitiveness, such as labour, utilities, amortization, property taxes, and transportation. Overall costs are scaled to a hypothetical 100,000-square-foot plant having 300 employees and shipping over the road to key market cities in the United States and Canada.


Plastic Industry Study

Plastic Industry Study
Author:
Publisher:
Total Pages: 15
Release: 1997
Genre:
ISBN:

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Summarizes a study of the major operating costs scaled to a representative moulded plastics products plant in New Brunswick, with comparisons to selected manufacturing sites in the United States. Costs not varying significantly with geography were not considered. The analysis focuses on those key geographically-variable cost elements considered to be fundamental to the plastics industry competitiveness. Overall costs are scaled to a hypothetical plant having 300 employees and shipping over the road to key market cities in the United States and Canada.


Polycarbonate Production from BPA - Cost Analysis - PC E11A

Polycarbonate Production from BPA - Cost Analysis - PC E11A
Author: Intratec
Publisher: Intratec Solutions
Total Pages: 52
Release: 2016-05-01
Genre: Business & Economics
ISBN: 1945324805

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This report presents a cost analysis of Polycarbonate (PC) production from bisphenol A (BPA) and phosgene. The process examined is a typical interfacial process. In this process, BPA, dissolved in an aqueous solution, is reacted with phosgene, in an organic solution, at the interface of the two-phase mixture. The carbonate oligomers produced are then polycondensed to Polycarbonate resin. 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): "Polycarbonates", Ullmann's Encyclopedia of Industrial Chemistry, 7th edition Keywords: Thermoplastic Polymer, Interfacial Polymerization, Polycondensation


Propylene Production Cost Analysis - Overview - Propylene AA01

Propylene Production Cost Analysis - Overview - Propylene AA01
Author: Intratec
Publisher: Intratec Solutions
Total Pages: 52
Release: 2016-03-01
Genre: Business & Economics
ISBN:

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This is a free full sample report offered by Intratec Solutions to demonstrate, in advance, the type of information you will get when you buy one of our reports, offering the same standard and structure (types of graphs, tables and descriptions) that you will find in all of our Cost Analysis Overview reports. 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


Polycarbonate Production from BPA and DPC - Cost Analysis - PC E21A

Polycarbonate Production from BPA and DPC - Cost Analysis - PC E21A
Author: Intratec
Publisher: Intratec Solutions
Total Pages: 103
Release: 2019-09-17
Genre: Business & Economics
ISBN:

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This report presents a cost analysis of Polycarbonate (PC) production from bisphenol A (BPA) and diphenyl carbonate. The process examined is a typical melt process. This process is based on the transesterification reaction of BPA with diphenyl carbonate to produce Polycarbonate. During the reaction, phenol is removed and obtained as a by-product. This report was developed based essentially on the following reference(s): "Polycarbonates", Ullmann's Encyclopedia of Industrial Chemistry, 7th edition Keywords: Thermoplastic Polymer, Polycondensation, SABIC, Mitsubishi, Asahi