Octadecylamine Production Cost Reports

Chemicals

The report provides a detailed analysis essential for establishing an Octadecylamine manufacturing plant. It encompasses all critical aspects necessary for Octadecylamine production, including the cost of Octadecylamine production, Octadecylamine plant cost, Octadecylamine production costs, and the overall Octadecylamine manufacturing plant cost. Additionally, the study covers specific expenditures associated with setting up and operating an Octadecylamine production plant. These encompass manufacturing processes, raw material requirements, utility requirements, infrastructure needs, machinery and technology requirements, manpower requirements, packaging requirements, transportation requirements, and more.

Octadecylamine is a long-chain primary amine that has many applications in textiles, pharmaceuticals, and agrochemical industries. It is used as an intermediate in the organic synthesis of octadecyl quaternary ammonium salts and cationic surfactants that are further used in the production of synthetic resins, pesticides, and asphalt. It works as a corrosion inhibitor in oil refining processes and as an antistatic agent in textiles and plastics. Octadecylamine is employed in coatings and sealants as a wetting and waterproofing agent. It is utilized in nanotechnology, which includes surface functionalization of carbon nanomaterials for enhanced properties in nanocomposites and sensors. Also, it is used in pharmaceutical research for drug delivery systems and used as a flotation agent in mineral processing.

The Octadecylamine market is driven by several key factors that contribute to its growth across various industries. Its usage as a cationic surfactant in personal care products, detergents, and industrial makes it a popular product. Its utilization in formulations of antistatic agents, emulsifiers, and corrosion inhibitors contributes to its demand. Technological advancements in manufacturing processes improve its efficiency and effectiveness, making it more appealing to manufacturers. Also, strict environmental regulations encourage industries to adopt high-quality and eco-friendly chemicals that further contribute to their demand. Thus, industrial Octadecylamine procurement is driven by its increasing demand as a cationic surfactant in various industries, along with technological advancements and stringent environmental regulations.

Raw Material for Octadecylamine Production

According to the Octadecylamine manufacturing plant project report, the key raw materials used in the production of Octadecylamine include Stearic Acid-Ammonia.

Manufacturing Process of Octadecylamine

The extensive Octadecylamine production cost report consists of the following major industrial manufacturing process:

  • From Stearic Acid and Ammonia: The manufacturing process of Octadecylamine involves a liquid-phase reaction. In this process, Stearic Acid reacts with ammonia at a high temperature of 350 °C, forming octadecane nitrile as an intermediate. This intermediate is then hydrogenated in the presence of a metal catalyst, such as nickel, forming Octadecylamine as the final product.

Octadecylamine has a molecular formula of C18H39N with a molecular weight of 269.51 g/mol. It is a white solid and has a characteristic odor. It belongs to the group of amines and is aliphatic in nature. Its melting point is in the range of 50 to 52 °C with a boiling point of around 232 °C and a flash point of 149 °C.  It has a density value of 0.86 g/cm3 at a standard temperature of 25 °C. It is insoluble in water but dissolves in chemical solvents, such as benzene and ether. Similarly, it is soluble in ethanol, methanol, and acetone and is highly soluble in chloroform. The compound is miscible in acetone as well. The compound decomposes when heated at an elevated temperature and emits toxic fumes of nitroxides in the air.

Octadecylamine Production Cost Processes with Cost Analysis

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Octadecylamine Production By Hydrogenation Reaction

This study analyzes Octadecylamine Production By Hydrogenation Reaction, covering manufacturing, process flow, operating expenses, and financial considerations.

Details: Germany - based plant   Q2 2024 From $ 2249.00 USD

Product Details

Particulars Details
Product Name Octadecylamine
Scope Manufacturing Process: Process Flow, Material Flow, Material Balance

Raw Material and Product Specifications: Raw Material Consumption, Product and Co-product Generation

Land and Site Cost: Offsites/Civil Works, Equipment Cost, Auxiliary Equipment Costs, Contingency, Engineering and Consulting Charges, Working Capital

Variable Cost: Raw Material, Utilities, Other Variable Costs

Fixed Cost: Labor Requirements and Wages, Overhead Expenses, Maintenance Charges, Other Fixed Costs

Financing Costs: Interest on Working Capital, Interest on Loans

Other Costs: Depreciation Charges, General Sales and Admin Cost
Currency US$ (Data can also be provided in the local currency)
Pricing and Purchase Options Basic: US$ 2499
Premium: US$ 3499
Enterprise: US$ 4799
Customization Scope The report can be customized as per the requirement of the customer
Post-Sale Analysts Report 10-12 weeks of post-purchase analyst support after report delivery for any queries from the deliverable
Delivery Format PDF and Excel format through email (editable version in PPT/Word format of the report can be also provided on special request)

How does our Octadecylamine Production Cost Report Provide Exhaustive Data and Extensive Insights?

At Procurement Resource, we not only focus on optimizing the should cost of production for Octadecylamine but also provide our clients with extensive intel and rigorous information on every aspect of the production process. By utilizing a comprehensive cost model, we help you break down expenses related to raw materials, labor, and technology, offering clear pathways to savings. We also assist in evaluating the capital expenditure (CAPEX) and operating expenses (OPEX), which are often measured as cost per unit of production, such as USD/MT, ensuring that your financial planning is aligned with industry benchmarks.

We offer valuable insights on the top technology providers, in-depth supplier database, and best manufacturers, helping you make informed decisions to improve efficiency. Additionally, we design the most feasible layout for your production needs, ensuring the entire process runs smoothly. By minimizing the cash cost of production, we ensure that you stay competitive while securing long-term profitability in the growing Octadecylamine market. Partnering with Procurement Resource guarantees that every aspect of your production is cost-efficient, advanced, and tailored to your specific requirements.

Key Questions Answered in This Report

  • What are the key requirements for setting up an Octadecylamine manufacturing plant?
  • How is Octadecylamine manufactured?
  • What is the process flow involved in producing Octadecylamine?
  • What are the raw material requirements and costs for producing Octadecylamine?
  • What is the total size of land required for setting up an Octadecylamine manufacturing plant?
  • What are the construction requirements for setting up an Octadecylamine manufacturing plant?
  • What are the machinery requirements for producing Octadecylamine?
  • What are the utility requirements and costs for producing Octadecylamine?
  • What are the manpower requirements for producing Octadecylamine?
  • What are the average salaries/wages of manpower working in an Octadecylamine manufacturing plant?
  • What are the packaging requirements and associated costs for Octadecylamine?
  • What are the transportation requirements and associated costs for Octadecylamine?
  • What are the capital costs for setting up an Octadecylamine manufacturing plant?
  • What are the operating costs for setting up an Octadecylamine manufacturing plant?
  • What should be the price of Octadecylamine?
  • What will be the income and expenditures for an Octadecylamine manufacturing plant?

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  • We can also provide a flexible, easy-to-use, dynamic excel-based cost-model/ dashboard where you can change the inputs to get different outputs
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