The Application of Stainless Steel Towers in the Pharmaceutical Industry
Information summary:Stainless steel towers are widely used in the pharmaceutical industry, including:
1. Separation and purification of drugs
Distillation tower: It can be used to separate and purify the active ingredients in drugs, remove impurities, isomers, and other unwanted substances, improve the purity and quality of drugs, and ensure the effectiveness and safety of drugs. For example, in the productio
Stainless steel towers are widely used in the pharmaceutical industry, including:
1. Separation and purification of drugs
Distillation tower: It can be used to separate and purify the active ingredients in drugs, remove impurities, isomers, and other unwanted substances, improve the purity and quality of drugs, and ensure the effectiveness and safety of drugs. For example, in the production of antibiotics, vitamins and other drugs, distillation towers can correctly separate various components in the synthesis process to obtain high-purity finished drugs
Extraction tower: Utilizing the difference in solubility of different substances in two immiscible solvents to achieve the extraction and separation of drug components. The stainless steel extraction tower has good corrosion resistance and sealing performance, and can adapt to various organic solvents and acid-base solutions, ensuring stable extraction process and helping to extract target drug components from complex mixtures.
2. Drying of drug crystals
Crystallization tower: provides a stable environment for the drug crystallization process. By controlling conditions such as temperature, concentration, and stirring speed, the drug slowly crystallizes in the solution, forming uniform and pure crystals. The inner wall of the stainless steel tower is smooth and not easy to hang, which is conducive to the growth and collection of crystals, and easy to clean and disinfect, meeting the hygiene requirements of the pharmaceutical industry
Drying tower: used to remove water or organic solvents from drugs, so that the drugs can reach the specified drying degree and quality standards. The stainless steel drying tower can withstand a certain temperature and pressure, and adopts appropriate heating methods and ventilation systems to achieve efficient and uniform drying effects, ensuring the stability and storage life of drugs.
3. Waste gas treatment
Spray tower: During the pharmaceutical process, harmful substances such as volatile organic compounds (VOCs), acidic gases, and dust are generated in the exhaust gas. The stainless steel spray tower achieves the purpose of purifying exhaust gas by fully contacting the spray liquid with the exhaust gas, allowing pollutants in the exhaust gas to be absorbed, dissolved, or reacted, thereby ensuring that exhaust emissions meet environmental requirements and reducing pollution to the environment and harm to human health
4. Preparation of pharmaceutical water
Distillation tower: used for preparing high-purity pharmaceutical water, such as injection water. By heating and evaporating, impurities such as ions, organic matter, and microorganisms in water are removed to obtain sterile, pyrogen free, and particle free distilled water. Stainless steel distillation towers have good corrosion resistance and hygiene, which can ensure the quality and safety of pharmaceutical water
5. Material storage and reaction
Storage Tower: Used for storing various pharmaceutical raw materials, intermediates, or finished drugs. Stainless steel storage towers have good sealing and corrosion resistance, which can prevent materials from being contaminated and deteriorated by the external environment, ensuring the stability of material quality.
Reaction tower: As a site for certain drug synthesis reactions, it can withstand certain temperature, pressure, and chemical reaction conditions. The material of stainless steel reaction tower is stable, will not undergo chemical reactions with reactants or products, and is easy to control reaction conditions, which is conducive to improving the conversion rate and selectivity of the reaction, ensuring the quality and efficiency of drug synthesis.