Production Cost Report
ICC - Is Bespoken: 0
ICC - Main References: ?
ICC - Issue: A
ICC - Volume: 68
ICC - Report ID: 068-A
ICC - Report Location: United States
ICC - Is Popular: 0
ICC - Is Developed: 1
ICC - Title: Nitrogen Production
ICC - Show Overview: 1
ICC - Report Location ID: 1
ICC - Plant Capacity Unit ID: 15
ICC - Volume Reports List: 068-A
ICC - Related Reports List: 081-C
ICC - Report Location Code: USA
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ICC - Plant Capacity Unit Name: MM Nm3 per year
ICC - Plant Capacity Unit Short Name: MM Nm3/y
ICC - Process Overview Image: //cdn.intratec.us/images/icc/process-overview/068-A.jpg
ICC - Process Overview Text: <h6>Products</h6> <p><b>Nitrogen</b>. Nitrogen (also known as N2) is an inert gas widely applied as a carrier gas and in ammonia production. In addition, its liquid form is commonly applied as a freezing agent in the food industry. </p> <p><b>Oxygen</b>. Commercially, high purity oxygen is produced by cryogenic distillation in air separation plants. It is also produced on a commercial scale from air by vacuum swing adsorption (VSA) processes, at about 90-93% purity. Oxygen is mainly used in fuels combustion to supply heat, light, and power, as well as in oxygenation processes.</p> <h6>Raw Material</h6> <p><b>Compressed Air</b>. Compressed air is widely used in industrial sites for many purposes (e.g., aerating equipment, pneumatic conveying of solids, actuation of pneumatic controls), being regarded as a major utility after electricity, natural gas and water. In this context, almost all industrial plants rely on compressed air systems, varying in size from 5 horsepower small units to huge systems with 50,000 horsepower. Many times, in fact, air compressors use more electricity than any other equipment in industrial plants.</p>
ICC - Process Schematic Image: //cdn.intratec.us/images/icc/process-schematics/068-A.jpg
ICC - Process Schematic Text: <p>The process under analysis comprises three major sections: (1) Purification; (2) Refrigeration; and (3) Rectification.</p><p>Purification. Initially, the air is purified from dust particles, carbon dioxide and water. This is accomplished by compressing the air, passing it through a heat exchanger (causing water condensation) and then through an adsorbent bed of molecular sieve for the removal of water, carbon dioxide and traces of other impurities</p><p>Refrigeration. At this point the purified air is cooled down/liquefied, as required for rectification steps downstream. This step is conducted in a plate-fin heat exchanger, using refrigeration values contained in the products (oxygen, nitrogen) and waste (nitrogen) streams.</p><p>Rectification. The last step consists in submitting the cooled/liquified air to a fractional distillation carried out in two columns for nitrogen-oxygen separation, operating at different pressures, in such a way that nitrogen is distilled as a vapor and Oxygen is obtained as a liquid. In addition, while Oxygen and argon have close boiling points, a third column is used exclusively for the removal of that contaminant, vented to the atmosphere.</p>
ICC - Short Description: This report provides an economic analysis of a typical cryogenic distillation process for Nitrogen production in the United States, using atmospheric air as the starting material. Nitrogen main product and oxygen by-product are produced as high-pressure gases.
ICC - Main Product: Nitrogen Gas
ICC - Plant Capacity: 800.00
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Nitrogen Production

Nitrogen Gas Production Costs Report | Issue A | Q3 2024

Production Cost Report

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800 MM Nm3/y United States-based plant   |   Q3 2024   |   107 pages

This report presents a cost analysis of a 800 MM Nm3/y (MM Nm3 per year) 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 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 Nitrogen Gas 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 Nitrogen Gas 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 Nitrogen Gas 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 Nitrogen Gas 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

Other Nitrogen Gas Production Cost Reports

Nitrogen Production

This report provides an economic analysis of a typical cryogenic distillation process for Nitrogen production in the United States, using atmospheric air as the starting material. Nitrogen main product and oxygen by-product are produced as high-pressure gases.

Details: 800 MM Nm3/y United States-based plant   |   Q3 2024   |   107 pages   |   Issue A   From $799 USD

The cost analyses presented in this report target a 800 MM Nm3/y (MM Nm3 per year per annum) United States-based plant. For those interested in cost analyses considering other plant capacities and/or locations, Intratec offers a customized analysis as an optional feature.

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Other Related Production Cost Reports

Gaseous Oxygen from Air (Vacuum Swing Adsorption Process)

This report presents a feasibility analysis of Oxygen production in the United States, using atmospheric air as the starting material. In this case, a typical vacuum swing adsorption process is applied for the production of low purity Oxygen. In this process, switching beds, each containing two strata, absorb water, carbon dioxide and nitrogen from the air, yielding low purity oxygen.

Details: 40 MM Nm3/y United States-based plant   |   Q3 2024   |   107 pages   |   Issue C   From $799 USD

The cost analyses presented in this report target a 40 MM Nm3/y (MM Nm3 per year per annum) United States-based plant. For those interested in cost analyses considering other plant capacities and/or locations, Intratec offers a customized analysis as an optional feature.

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