DME (Dimethoxyethane) Production Cost Reports
Chemicals
The report provides a detailed analysis essential for establishing a DME (Dimethoxyethane) manufacturing plant. It encompasses all critical aspects necessary for DME (Dimethoxyethane) production, including the cost of DME (Dimethoxyethane) production, DME (Dimethoxyethane) plant cost, DME (Dimethoxyethane) production costs, and the overall DME (Dimethoxyethane) manufacturing plant cost. Additionally, the study covers specific expenditures associated with setting up and operating a DME (Dimethoxyethane) 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.
DME (Dimethoxyethane) is an ether that has a primary application as a substitute for diethyl ether and THF since it has a higher boiling point. As it can create chelate complexes with cations, it finds application as a bidentate ligand, which is used in organometallic chemistry, for instance, in Grignard reactions and hydride reductions. It is also used to carry out palladium-catalyzed reactions such as Stille coupling and Suzuki reactions. In addition, as a solvent, it is used in electrolytes of lithium batteries paired with a high-permittivity chemical (like propylene carbonate), as the low-viscosity component of the solvent, and as a solvent for oligo- and polysaccharides.
The market for DME (Dimethoxyethane) is driven by its usage as a cleaner alternative to traditional fossil fuels in transportation and power generation. Its function as a substitute for diesel fuel in buses, trucks, and ships due to its compatibility with existing diesel engines and infrastructure amplifies its market appeal. Its utilization as a solvent in electrolytes of lithium batteries fuels its demand in the electronic industry. Its incorporation into liquefied petroleum gas (LPG) blends to enhance fuel properties, contributes to its demand even more. Overall, industrial DME (Dimethoxyethane) procurement is influenced by its application in various industries such as fuel, automotive, electronic, and chemical industries, the availability of its raw material (ethylene glycol), the cost of its raw material, the growing demand for cleaner fuels, its rising use in LPG blending, technological advancements, and increased awareness of environmental benefits.
Raw Material for DME (Dimethoxyethane) Production
According to the DME (Dimethoxyethane) manufacturing plant project report, the key raw material used in the production of DME (Dimethoxyethane) includes ethylene glycol.
Manufacturing Process of DME (Dimethoxyethane)
The extensive DME (Dimethoxyethane) production cost report consists of the following major industrial manufacturing process:
- Production via etherification of ethylene glycol: The manufacturing process of DME (Dimethoxyethane) involves the etherification of ethylene glycol with methanol in the presence of a silicoaluminophosphate zeolite (SAPO-34 zeolite) as the catalyst via a continuous flow experiment to produce DME (Dimethoxyethane).
DME (Dimethoxyethane) is a liquid ether that is used as a solvent in many applications. It is a diether that is the 1,2-dimethyl ether of ethane-1,2-diol. It functions like a non-polar solvent and is functionally linked to ethylene glycol. Dimethoxyethane looks like a clear, aprotic, and liquid ether, with its main use being that of a solvent. It has a solubility in water with vapors heavier than air. It has a density of 0.8683 g/cm3. Its respective melting, boiling, and flash points are -58 °C, 85 °C, and 34°F. It is toxic and flammable in nature.
DME (Dimethoxyethane) Production Cost Processes with Cost Analysis
DME (Dimethoxyethane) Production via Etherification of Ethylene Glycol
The study offers a detailed cost analysis of DME (Dimethoxyethane) Production via Etherification of Ethylene Glycol. In addition, the report incorporates the manufacturing process with detailed process and material flow, operating costs along with financial expenses and depreciation charges.
Details: Germany - based plant Q1 2024 From $ 2249.00 USD
Product Details
Particulars | Details |
---|---|
Product Name | DME (Dimethoxyethane) |
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 DME (Dimethoxyethane) Production Cost Report Provide Exhaustive Data and Extensive Insights?
At Procurement Resource, we not only focus on optimizing the should cost of production for DME (Dimethoxyethane) 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 DME (Dimethoxyethane) 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 a DME (Dimethoxyethane) manufacturing plant?
- How is DME (Dimethoxyethane) manufactured?
- What is the process flow involved in producing DME (Dimethoxyethane)?
- What are the raw material requirements and costs for producing DME (Dimethoxyethane)?
- What is the total size of land required for setting up a DME (Dimethoxyethane) manufacturing plant?
- What are the construction requirements for setting up a DME (Dimethoxyethane) manufacturing plant?
- What are the machinery requirements for producing DME (Dimethoxyethane)?
- What are the utility requirements and costs for producing DME (Dimethoxyethane)?
- What are the manpower requirements for producing DME (Dimethoxyethane)?
- What are the average salaries/wages of manpower working in a DME (Dimethoxyethane) manufacturing plant?
- What are the packaging requirements and associated costs for DME (Dimethoxyethane)?
- What are the transportation requirements and associated costs for DME (Dimethoxyethane)?
- What are the capital costs for setting up a DME (Dimethoxyethane) manufacturing plant?
- What are the operating costs for setting up a DME (Dimethoxyethane) manufacturing plant?
- What should be the price of DME (Dimethoxyethane)?
- What will be the income and expenditures for a DME (Dimethoxyethane) manufacturing plant?
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