Production Cost Report
ICC - Is Bespoken: 0
ICC - Main References: ?
ICC - Issue: A
ICC - Volume: 301
ICC - Report ID: 301-A
ICC - Report Location: United States
ICC - Is Popular: 0
ICC - Is Developed: 1
ICC - Title: Carbon Monoxide Production
ICC - Show Overview: 1
ICC - Report Location ID: 1
ICC - Plant Capacity Unit ID: 14
ICC - Related Reports List: 059-D,005-B
ICC - Report Location Code: USA
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ICC - Plant Capacity Unit Name: kilo metric ton per annum
ICC - Plant Capacity Unit Short Name: kta
ICC - Process Overview Image: //cdn.intratec.us/images/icc/process-overview/301-A.jpg
ICC - Process Overview Text: <h6>Products</h6> <p><b>Carbon Monoxide</b>. Like hydrogen, carbon monoxide is produced industrially from syngas, but it is recovered via cryogenic distillation. Carbon monoxide is used in the chemical industries for the synthesis of several compounds, like acetic acid, polycarbonates, polyketones; and also in the metallurgical industry for the creation of reducing atmospheres.</p> <p><b>Hydrogen</b>. Hydrogen is a highly reactive and energy-dense gas used in refining processes, fuel cells, and as a reducing agent in chemical reactions. It plays a critical role in the production of ammonia and methanol, as well as in hydrogenation reactions. Hydrogen is produced primarily through steam methane reforming or electrolysis of water and is stored as a compressed gas or liquid.</p> <h6>Raw Materials</h6> <p><b>Chemicals</b>. </p> <b>Synthesis Gas</b>. Synthesis gas is a gas mixture mainly composed of carbon monoxide (CO) and hydrogen (H2). It is a raw material for the production of various products, such as methanol, hydrogen, carbon monoxide, dimethyl ether, oxo alcohols and many other chemicals. Syngas may be produced from both fossil sources (e.g. coal, petroleum or natural gas) and renewable materials, such as biomass or wood. Synthesis gas is produced industrially via different routes including steam methane reforming, partial oxidation, and dry reforming. Its composition can significantly vary from the production method used.</p>
ICC - Process Schematic Image: //cdn.intratec.us/images/icc/process-schematics/301-A.jpg
ICC - Process Schematic Text: <p>The process under analysis comprises three major sections: (1) partial condensation; (2) distillation; and (3) products compression.</p><p>* Partial condensation. The syngas feed is initially treated for the removal of impurities that would freeze downstream, mainly water and carbon dioxide. The treatment consists in passing the gas through molecular sieves. The treated feed gas is then cooled against products in plate fin exchangers ("cold exchanger" and "warm exchanger") and by providing heat in the reboiler of the CO-CH4 splitter. Such cooling causes the liquefaction of Carbon Monoxide and methane, which are separated from gaseous hydrogen by means of gas/liquid separation vessels and routed to the CO-CH4 splitter, downstream.</p><p>* Distillation. The condensed Carbon Monoxide and methane are fed to a distillation column, in which a methane rich stream is recovered from the bottoms and Carbon Monoxide is recovered from the top. The Carbon Monoxide stream is warmed in the cold exchanger and subsequently in the warm exchanger (not shown in the diagram), and routed to a compression step downstream. The stream containing methane and residual Carbon Monoxide from column bottom, similarly, is warmed in both plate fin exchangers and sold as fuel.</p><p>* Products compression. Carbon Monoxide and hydrogen separated in the process are compressed to be than distributed as products at required pressures. </p>
ICC - Short Description: This report presents the economics of a typical cryogenic partial condensation process for Carbon Monoxide (CO) production from synthesis gas (syngas) in the United States. In this process, CO and hydrogen from syngas are separated in heat exchangers at cryogenic temperatures.
ICC - Main Product: Carbon Monoxide
ICC - Plant Capacity: 300.00
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Carbon Monoxide Production

Carbon Monoxide Production Costs Report | Issue A | Q4 2024

Production Cost Report

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300 kta United States-based plant   |   Q4 2024   |   107 pages

This report presents a cost analysis of a 300 kta (kilo metric ton per annum) United States-based plant. You can add a customized cost analysis, assuming another location (country), when ordering a premium edition of this report.

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Production Process Information

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Production Process Information

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Production Costs Datasheet

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Production Process Information

Process Consumptions

Labor Requirements

Plant Capital Cost Summary

Operating Cost Summary

Production Costs Datasheet

Plant Capital Cost Details

Operating Cost Details

Plant Cost Breakdowns

Plant Capacity Assessment

Process Flow Diagrams

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Content Highlights

Plant Capital Cost Summary

Summary outlining the capital cost required for building the Carbon Monoxide production plant examined

Plant Capital Cost Details

Detailing of fixed capital (ISBL, OSBL & Owner’s Cost), working capital and additional capital requirements

Plant Cost Breakdowns

Breakdown of Carbon Monoxide process unit (ISBL) costs and infrastructure (OSBL) costs; plant cost breakdown per discipline

Operating Costs Summary

Summary presenting the operating variable costs and the total operating cost of the Carbon Monoxide production plant studied

Operating Cost Details

Detailing of utilities costs, operating fixed costs and depreciation

Plant Capacity Assessment

Comparative analysis of capital investment and operating costs for different Carbon Monoxide plant capacities

Production Process Information

Block Flow Diagram, descriptions of process unit (ISBL) and site infrastructure (OSBL)

Process Consumptions

Raw materials and utilities consumption figures, by-products credits, labor requirements

Process Diagrams

Process flow diagrams (PFD), equipment list and industrial site configuration

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