The new report by Procurement Resource, a global procurement research and consulting firm, looks in-depth into the costs involved in the production of butadiene. The comprehensive report analyses the production cost of the material, covering the raw material costs and co-product credit, equipment costs, land and site costs, labour wages, maintenance costs, financing charges, and the depreciation costs. The extensive study describes the step wise consumption of material and utilities along with a detailed process flow diagram. The report also assesses the latest developments within the butadiene industry that might influence the costs of production, looking into the capacity expansions, plant turnarounds, and mergers, acquisitions, and investments.
Download a free sample of the production cost of butadiene from aliphatic-hydrocarbons-via-steam-cracking-process and many more@ https://www.procurementresource.com/cost-analysis/butadiene-production-from-aliphatic-hydrocarbons-via-steam-cracking-process
With a molecular weight of 54.092 g/mol, butadiene is a colourless gas, which can be easily condensed into a liquid. It is important industrially as a monomer in the production of synthetic rubber. Butadiene is one of the most versatile raw material to be used in the production of a wide variety of synthetic rubber and polymeric resins. It is used in the manufacturing of styrene butadiene rubber (SBR), which is principally used in the manufacturing of automobile tyres. Other downstream products of butadiene are adhesives, sealants, foam mattresses, and articles like shoe soles.
The global butadiene market growth was expected to deteriorate slightly in the key C4 markets of the United States, West Europe and China, as the past year was defined by weak demand growth and planned maintenance outages. Despite the strength of butadiene in the Chinese markets in the field of automobile, the demand was not that remarkable. In the third quarter of 2020, the supply is expected to outpace the demand in China. The U.S markets too remain oversupplied, and producers may continue eyeing export opportunities to Asia. The global demand is expected to begin recovering in the third quarter of 2020, but the recovery will be slow. Downstream tyre producers indicated that they would begin to buy raw materials again in Q3. These factors are expected to influence the production cost for butadiene.
Read the full production cost analysis report of butadiene@ https://www.procurementresource.com/production-cost-report-store/butadiene
The production cost report by Procurement Resource assesses the production of butadiene from aliphatic hydrocarbons via the steam cracking process, from n-butane via the Houdry Catadiene process, from butene via oxidative dehydrogenation Process, from ethanol, and from carbon monoxide. In the steam cracking process, a mixture of aliphatic hydrocarbons and steam are heated at a high temperature, which produces many unsaturated hydrocarbons as by-products. One of the unsaturated hydrocarbons is butadiene. This process is followed by extractive distillation using a polar aprotic solvent to separate butadiene from other hydrocarbons. Using distillation, butadiene and solvent are further separated. Hence, butadiene is obtained.
Butene Production from Raffinate Streams: https://www.procurementresource.com/cost-analysis/butene-production-from-raffinate-streams
1,3- Butadiene Production from C4 hydrocarbons: https://www.procurementresource.com/cost-analysis/1-3-butadiene-production-from-c4-hydrocarbons
2-Methyl-1,3-Butadiene Production from Naphtha (or oil) via Thermal Cracking: https://www.procurementresource.com/cost-analysis/2-methyl-1-3-butadiene-production-from-naphtha-or-oil-via-thermal-cracking
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