Cosmetics production workshop pharmaceutical cleanroom water treatment equipment
Water is the most widely used and abundant raw material in the production of cosmetics. It has good solubility and is also an important emollient substance; it is used in most cosmetics such as shampoos, shower gels, various creams and lotions. Containing a large amount of water, the quality of water used for cosmetic production is straight...
Text label: Design and construction of cosmetic production pharmaceutical cleanroom, water treatment equipment, purification plant
Water treatment equipment in cosmetic production pharmaceutical cleanroom
Water is the most widely used and abundant raw material in the production of cosmetics. It has good solubility and is also an important emollient substance; it is used in most cosmetics such as shampoos, shower gels, various creams and lotions. Contains a large amount of water, the quality of the cosmetic production water directly affects the cosmetic production process and the quality of the final product; the two requirements for the cosmetic production water, the concentration of inorganic ions and the contamination of microorganisms, the existence of inorganic ions will affect the stability of the emulsion, and Some active substances form complexes that affect the quality or appearance of products, and can also cause the growth of microorganisms. Therefore, cosmetic water needs to remove inorganic ions from the water; the typical water production process is: raw water, pretreatment system sand filtration, activated carbon filtration, post-treatment system Ion exchange, reverse osmosis, storage tanks, distribution lines.
Mechanical impurities, microorganisms, colloids, organic matter and active chlorine in water have a great impact on the efficiency of water treatment equipment, and should be pretreated. First, sand filtration and microporous filtration resin are used for pretreatment to remove crude Particulate matter, including some suspended solids and colloidal substances, is further removed by adsorbents such as activated carbon and adsorption resin to further remove remaining biological fine particles and a part of iron and manganese. Membrane separation for pure water preparation. Commonly used membrane separation methods in water treatment include electrodialysis, reverse osmosis, ultrafilter and microporous membrane filtration. The method of ion separation is the driving force, while reverse osmosis, ultrafiltration and microporous membrane filtration are membrane separation methods with pressure higher than the osmotic pressure as the driving force. Among them, reverse osmosis is the most commonly used method in the purification of cosmetic water. Methods. Zhongjing Global Purification can provide consulting, planning, design, construction, installation, transformation and other supporting services for cosmetic production workshops and purification plants.
Ion exchange water treatment system is usually used before reverse osmosis to remove calcium and magnesium ions in water to soften water. Ion exchange resin is a functional polymer with corresponding functional groups; conventional ion exchange resin With a large amount of sodium ions, when the content of calcium and magnesium ions in the water is high, the ion exchange resin can release the sodium ions, and the functional groups are combined with the calcium and magnesium ions, so that the content of calcium and magnesium ions in the water decreases, and the hardness of the water decreases; when the resin After a large number of functional groups are combined with calcium and magnesium ions, the softening ability of the resin decreases. The resin can be washed with sodium chloride solution. In the high nano-ion environment, the functional groups will release calcium and magnesium ions and combine with the nano-ions, so The resin regains its exchange capacity. Reverse osmosis can remove bacteria, colloids, organic matter and more than 98.6% of dissolved ions in water. This method has low operating cost, simple operation, high degree of automation and stable effluent quality. Compared with other traditional water treatment methods, it has obvious advantages. It is widely used in water treatment equipment related industries.
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