Methacrylic Acid Production Cost Analysis Report 2022-2027: Manufacturing Process, Raw Materials Requirements and Cost Breakups

The latest report titled methacrylic acid production cost report by Procurement Resource, a global procurement research and consulting firm, provides an in-depth cost analysis of the production process of the Methacrylic Acid.

Report FeaturesDetails
Product NameMethacrylic Acid
Process IncludedMethacrylic Acid Production From Isobutyric Acid via Dehydrogenation
Methacrylic Acid Production From isobutylene or tert-Butanol via Oxidation
Methacrylic Acid Production From Isobutane
Methacrylic Acid Production From Acetone Cyanohydrin
Segments CoveredManufacturing Process: Process Flow, Material Flow, Material Balance
Raw Material and Product/s Specifications: Raw Material Consumption, Product and Co-Product Generation, Capital Investment
Land and Site Cost: Offsites/Civil Works, Equipment Cost, Auxiliary Equipment Cost, Contingency, Engineering and Consulting Charges, Working Capital
Variable Cost: Raw Material, Utilities
Fixed Cost: Labor Requirement & Wages, Overhead Expenses, Maintenance Charges
Financing Costs: Interest on Working Capital, Interest on Loans
Depreciation Charges
General Sales and Admin Costs
Production Cost Summary
CurrencyUS$ (Data can also be provided in local currency)
Pricing and purchase optionsBasic: US$ 1499
Premium: US$ 2999
Enterprise: US$ 4799
Customization ScopeThe report can be customized as per the requirements of the customer
Post-Sale Analyst Support360-degree analyst support after report delivery

Procurement Resource study is based on the latest prices and other economic data available. It also offers additional analysis of the report with detailed breakdown of all cost components (capital investment details, production cost details, economics for another plant location, dynamic cost model). In addition, the report incorporates the manufacturing process with detailed process and material flow, capital investment, operating costs along with financial expenses and depreciation charges.

Procurement Resource’s detailed report describes the stepwise consumption of material and utilities along with a detailed process flow diagram. Furthermore, the study assesses the latest developments within the industry that might influence Methacrylic Acid production cost, looking into capacity expansions, plant turnarounds, mergers, acquisitions, and investments.

Procurement Resource Assessment of Methacrylic Acid Production Process:

 1. Methacrylic Acid Production From Isobutyric Acid via Dehydrogenation: The study offers a detailed cost analysis of Methacrylic Acid production from Isobutyric Acid via Dehydrogenation. During the process, isobutyric acid undergoes dehydrogenation to make methacrylic acid.

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 2. Methacrylic Acid Production From isobutylene or tert-Butanol via Oxidation: This report provides a detailed cost analysis of Methacrylic Acid production through isobutylene or tert-Butanol via oxidation. During the process, isobutylene or tert-butanol undergo oxidation to produce methacrylic acid.

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 3. Methacrylic Acid Production From Isobutane: This report covers a detailed cost analysis of Methacrylic Acid production using isobutane. Using the catalytic dehydrogenation process, isobutane is converted into isobutylene, followed by isobutylene’s oxidation resulting in methacrylic acid.

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 4. Methacrylic Acid Production From Acetone Cyanohydrin: This report presents the economics of Methacrylic Acid production from Acetone Cyanohydrin. In this method, using sulphuric acid, acetone cyanohydrin is transformed into methacrylamide sulphate, which gets hydrolysed further to produce methacrylic acid finally.

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Product Definition:

Methacrylic Acid (MAA) is a chemical substance. It is odourless, colourless and sticky in appearance. It is miscible with the majority of organic solvents and, when warm, is soluble in water. Methacrylic acid is produced industrially on a massive scale as a precursor to its esters, particularly methyl methacrylate (MMA) and poly-MMA.

Paints and adhesives are the two most predominant industrial uses for methacrylic acid. Roman chamomile, sometimes known as the Whig plant, is one natural source of MAA. The highly prevalent technique employs acetone cyanohydrin as an initial material, which is transformed into methacrylamide sulphate in the existence of sulfuric acid. The resultant methacrylamide sulphate is then hydrolyzed to produce methacrylic acid.

Market Drivers:

The methacrylic Acid market is expanding owing to the increasing demand from the end-user industries, including construction, automobiles, and electronics. It finds employment in making products such as windows, panels, facades, TV, coatings, display panels, emulsions etc., which is furthering the market demand. Also, the many launches and product developments in the sector are driving the methacrylic acid market sales.

Key Questions Answered in the Methacrylic Acid Production Cost Report:

  • What are the key drivers propelling the Methacrylic Acid market?
  • What are the various processes used for Methacrylic Acid production?
  • What are the raw materials required to produce Methacrylic Acid?
  • What are the different operations units involved in the production of Methacrylic Acid?
  • What are the manpower and utility requirements in the production process of Methacrylic Acid?
  • What are the various costs engaged in the production of Methacrylic Acid?
  • What are the construction costs involved in setting up a Methacrylic Acid production facility?
  • What are the working capital requirements?
  • What is the process of raw material procurement for Methacrylic Acid production?
  • What is the time frame for Methacrylic Acid plant start-up?
  • What is the pricing mechanism of Methacrylic Acid?

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