Sealed and leakproof design
The reagent and culture medium bottles are made of polypropylene (PP) and are equipped with a highly sealed safety screw cap or professional sealing system to ensure the integrity of the contents of the bottle. This sealing design can effectively prevent air, moisture and contaminants from entering the bottle, thereby avoiding contamination of reagents or culture media, ensuring their long-term stability and the reliability of experimental results. At the same time, the leak-proof design of the sealing cap can prevent accidental leakage of liquids during transportation and reduce the risk of spills, especially when handling toxic, volatile or hazardous chemicals. This feature is particularly important. Whether operating in the laboratory or during transportation, the bottle can remain tightly closed to ensure the safety of operators and reduce contact with hazardous substances.
Various sizes
The reagent and culture medium bottles are available in a variety of sizes from small 50 ml to large 5 liters according to different experimental needs. Small-capacity bottles are suitable for precise measurement or small-batch storage, while large-capacity bottles can be used to store more reagents or culture media to meet large-scale experimental needs. Each bottle has clear scale markings to help users accurately measure reagents during use, reduce errors, and ensure the accuracy of the experiment. Whether it is daily storage or mixing and dispensing during experimental operations, polypropylene bottles can provide excellent functionality and convenience. In addition, the transparent design of the bottle allows users to observe the state of the liquid in the bottle at any time, which is convenient for timely replenishment or adjustment.
Sterilization compatibility
Reagent culture medium bottles made of polypropylene (PP) have good high temperature resistance and can withstand high temperature sterilization without deformation or degradation. Many bottles can withstand high temperature and high pressure sterilization processes to ensure that the bottles can remain sterile during repeated use. This is crucial for microbiology, pharmaceuticals and other fields that require aseptic operations. In these fields, sterilized bottles are key equipment to ensure the stability of experiments and samples and avoid cross contamination. In addition, the high temperature resistance of polypropylene materials allows these bottles to be used for a long time in regular laboratory environments and have a long service life.
Chemical resistance
Polypropylene (PP) is a material with extremely strong chemical resistance that can effectively resist the erosion of acids, alkalis, solvents and other chemicals. This allows these reagent culture medium bottles to ensure the stability and integrity of the contents and avoid chemical reactions when storing various chemical reagents, culture media or other active substances. Even in the case of long-term storage, the material of the polypropylene bottle will not react adversely with the reagents, ensuring the effectiveness of the reagents. This feature makes the reagent culture medium bottle an ideal storage container in chemical, pharmaceutical and biological laboratories, which can adapt to a variety of experimental conditions and ensure the safe storage of samples.
Material composition and features

Material composition: Advantages of polypropylene (PP)
The reagent culture medium bottle is made of polypropylene (PP), which is an engineering plastic with excellent performance. One of its main advantages is its excellent chemical resistance, which can withstand the erosion of a variety of acids, alkalis, solvents and other chemicals, making polypropylene bottles widely used in storing various chemical reagents, culture media and sensitive substances such as medicines. The stability of polypropylene ensures that the substances in the bottle will not react with the bottle body, thereby maintaining the purity of the reagents and the accuracy of the experimental results. Polypropylene also has a low water absorption rate, which can effectively prevent the penetration or evaporation of water, ensuring that the contents of the bottle remain stable during long-term storage. In addition, polypropylene has strong UV resistance, which can protect the reagents in the bottle from light and reduce chemical decomposition or loss of active ingredients caused by light.
Other characteristics of polypropylene (PP)
Polypropylene material not only performs well in chemical stability, but also has excellent physical properties. Its high temperature resistance enables it to maintain integrity during high-temperature disinfection or sterilization. The common high-pressure sterilization process will not cause the bottle body to deform or break, so polypropylene bottles are suitable for use in microbiology, pharmaceuticals and other fields that require sterilization operations. Compared with glass bottles, polypropylene bottles are lightweight and impact-resistant, reducing the risk of breakage during transportation and making them easy to carry and operate in the laboratory. Polypropylene also has good processing properties and can be produced into bottles of various shapes and capacities through injection molding to meet different experimental needs. In short, polypropylene's high chemical resistance, high temperature resistance, and excellent mechanical strength make it an ideal material for reagent culture medium bottles, ensuring safe and stable storage of various experimental liquids.

Application areas of reagent media bottle
Chemical Laboratory
Reagent culture medium bottles play a vital role in chemical laboratories and are widely used to store and mix various chemical reagents, solutions and reactants. These bottles are usually made of polypropylene (PP) material, which has excellent chemical resistance and can resist corrosion from strong acids, strong bases and various organic solvents. This allows them to maintain good durability and stability when handling corrosive or highly active chemicals, ensuring that the reagents are not contaminated by the external environment. Many reactions in chemical experiments require a high degree of precision control, and the precise scale and sealing design of the reagent bottle can ensure accurate measurement and long-term storage of liquids. The sealing system can prevent the evaporation of volatile solutions and ensure that the concentration of substances during the experiment remains consistent, thereby improving the accuracy and repeatability of the experiment. In addition, the lightweight design and leak-proof function of the reagent bottle provide a safe and reliable use environment in chemical experiments, especially in experiments with high pressure and large temperature changes, effectively preventing experimental errors and safety hazards caused by container damage or leakage.
Biological and microbiological research
In biological and microbiological research, reagent culture medium bottles are indispensable tools, mainly used to store culture media, culture fluids and other biological reagents. Since microbiology experiments often involve aseptic operations, the sealing and sterilization compatibility of reagent bottles are very important. These bottles are well designed to ensure the sterility of the contents during long-term storage and prevent the intrusion of external contaminants. The polypropylene (PP) material itself has high thermal stability and corrosion resistance, which enables these bottles to withstand the high-pressure sterilization process without deformation or degradation, ensuring the successful implementation of aseptic operations, especially when culturing bacteria, fungi or cells. The leak-proof design can also effectively avoid the risk of overflow or leakage during the experiment, ensuring the safety of experimental operators, especially when handling sensitive substances. In addition, the transparent design of the reagent bottle makes it easy to observe the state of the culture medium in the bottle, and promptly detect whether the culture medium is contaminated or precipitated, which greatly improves the efficiency and accuracy of laboratory operations. Overall, these bottles provide safe, reliable and efficient storage and operating conditions for biological and microbiological experiments.

Maybe you have the following questions
Q: 1: What is the material of this container?
A: The container is made of a high-grade plastic material with excellent chemical and temperature resistance. It can resist the erosion of common chemicals such as acids, bases, solvents, etc., and is very suitable for storing various chemical reagents, culture media, and other sensitive liquids. The material also has low hygroscopicity, which prevents liquid evaporation and contamination, thereby ensuring the long-term stability and accuracy of the contents.
Q: 2: How is the sealing performance of the container?
A: The container is designed with an efficient sealing system to effectively prevent liquid leakage and volatilization. The sealing design is very suitable for protecting the contents during transportation and storage to avoid contamination or loss of components. Whether in routine laboratory operations or during long-term storage, the sealing performance of the container can ensure the integrity of the liquid contents, reduce the risk of chemical leakage and spillage, and ensure the safety of the laboratory environment.
Q: 3: Is the container suitable for high-temperature sterilization?
A: Yes, this container has high heat resistance and can withstand high-temperature sterilization and high-pressure sterilization. The material used in the container will not deform or degrade during common sterilization processes, making it very suitable for common sterilization operations in microbiology, pharmaceutical and chemical laboratories. It can ensure that the container can be reused while maintaining sterility, which is very important for saving costs and improving experimental efficiency.
Q: 4: Does the container come in different sizes?
A: The container is available in a variety of different sizes, usually ranging from a small 50 ml to a large capacity of 5 liters, and you can choose the appropriate capacity according to the needs of the experiment. Whether it is used for small-scale reagent mixing or large-scale liquid storage, this container can provide a suitable solution. In addition, the design of the container also includes precise scale markings to help experimenters accurately measure the required amount of liquid.
Q: 5: How chemically resistant is the container?
A: The material of the container has excellent chemical resistance and can effectively resist a variety of common chemicals, solvents, and acids and bases. This means that it can protect the contents from chemical reactions or degradation during storage and experiments, ensuring that the stored liquid remains stable during long-term use. Whether it is used to store acidic solutions, alkaline solutions, or organic solvents, this container can provide reliable protection.
Q: 6: Is the container suitable for long-term storage?
A: Yes, this container is very suitable for long-term storage of various chemical reagents, culture media or other sensitive substances. The chemical resistance and high sealing of the container ensure that the contents will not be contaminated by the external environment during storage, preventing the evaporation or reaction of the liquid. Especially in the chemical, pharmaceutical, food industry and other occasions where reagents and culture media need to be stored for a long time, this container can ensure the stability and reliability of the material.
Q: 7: Is this container suitable for multiple uses?
A: Yes, this container is very suitable for multiple uses, especially in demanding experimental environments. The high temperature resistance and chemical resistance of the container enable it to withstand multiple autoclave processes without deformation or degradation. In addition, its rugged design ensures stable performance for a long time in laboratory operations. During use, the sealing and chemical resistance of the container can also effectively avoid cross contamination and ensure the reliability of experimental results. Therefore, as a long-term use container, it provides an efficient, safe and economical solution for laboratories.
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