Procurement Resource Analyses the Production Cost of Silicates in its New Report
Analyses Overview of The New Production Cost Report of Silicates
The new report by Procurement Resource, a global procurement research, and consulting firm, looks in-depth into the costs involved in the production of Silicates. 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 depreciation costs. The extensive study describes the stepwise consumption of material and utilities along with a detailed process flow diagram. The report also assesses the latest developments within the industry that might influence Silicates production cost, looking into the capacity expansions, plant turnarounds, mergers, looking into the capacity expansions, plant turnarounds, mergers, acquisitions, and investments.
Product Definition:
A silicic acid salt or ester is called a silicate. Solid silicates are generally well-characterised and stable. The greatest family of minerals are insoluble and complex metal salts that retain silicon and oxygen in the anion. They are also used in construction products such as cement, bricks, and glass.
Factors Impacting the Silicates Production Cost:
Pulp and paper, construction, water treatment, and cosmetics sectors are driving the worldwide silicates market. The need for purified water is increasing as a result of rising urbanisation, which is boosting the water treatment application segment. The booming real estate business in the Asia Pacific is also driving up demand for building materials. Silicon, oxygen, and magnesium make up magnesium silicate. Cosmetics, medicines, pulp and paper, and catalysts are among the sectors that employ it. In cosmetics like talcum powder, magnesium silicate functions as an adsorbent. It is also utilised in the pharmaceutical business for tablet compression, and it is employed as a filler in the pulp and paper, glass, and ceramics industries. In comparison to sodium silicate and potassium silicate, lithium silicate is simpler to work with. It is used to increase the mechanical wear resistance of building materials.
Lithium silicate functions as a concrete hardening agent and extends the shelf life of floor coatings. Because of the presence of iron-containing impurities, commercial sodium silicate is greenish or blue in hue. Detergents, water treatment, construction materials, automobiles, chemicals, and adhesives are among the applications for sodium silicate. To minimise the porosity of building materials like concrete and plasters, sodium silicate is utilised. To boost the potassium content of the soil, potassium silicate is utilised as a potassium source in agriculture. It also aids in the neutralisation of acidic soils, emulsification of fats and oils, and dispersion of proteins. Due to its ability to soften water by sequestering calcium and magnesium ions, potassium silicate is also used in the production of detergents. Potassium silicate is largely utilised in drilling applications in building materials, with minimal use in concrete hardening. All these factors are anticipated to impact the production cost of Silicates.
Procurement Resource Assessment of Silicates Production:
The production cost report by Procurement Resource assesses the production of Silicates via the Furnace Process. In this process, silica sand is fused with soda ash at about 1,100oC to form water glass, that is, glass-like sodium silicate, which is then crushed and dissolved in water and digested under pressure with steam to finally produce neutral silicate.
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