1000ml Reagent Bottle

1000ml Reagent Bottle

This 1000ml reagent bottle is an indispensable storage container in the laboratory. It is made of chemical-resistant plastic to ensure durability and safety. There are clear scales on the bottle body, which is convenient for accurate measurement of liquid volume. It is designed with a screw cap to provide good sealing performance to prevent reagent leakage or contamination. It is suitable for chemical experiments, biological experiments and industrial applications, and can store various solutions, reagents and culture media. The wide or narrow mouth design meets different needs, and the bottle body has a reserved label area for convenient labeling of reagent information to ensure the accuracy and efficiency of the experimental process.

Product Introduction
1000ml reagent bottle

 

 

 

 

This 1000 ml (1 liter) reagent bottle is an essential storage and handling container for daily laboratory operations. Its design and materials have been carefully selected to ensure its reliability and safety under various experimental conditions. The bottle body is made of high-quality borosilicate glass or chemically resistant plastic (such as high-density polyethylene HDPE or polypropylene PP). Glass bottles are usually available in transparent and amber (brown) colors. Transparent glass is easy to observe the reagents in the bottle, while amber glass prevents light-sensitive reagents from being decomposed by light. Plastic bottles have the advantages of being lightweight and impact-resistant, suitable for more frequent operations and transportation.

The bottle body is printed with clear scales accurate to milliliters, allowing users to easily measure and dispense liquids. This scale design is particularly suitable for experimental operations that require precise proportions, improving the accuracy and repeatability of the experiment. The bottle mouth has two designs: wide mouth and narrow mouth. The wide mouth bottle is suitable for storing and pouring solid reagents or more viscous liquids, while the narrow mouth bottle is more suitable for storing and pouring liquids with good fluidity, reducing the risk of liquid splashing and waste.

The reagent bottle is equipped with a screw cap to ensure that the bottle mouth is well sealed. The inside of the screw cap is usually equipped with a sealing gasket to further enhance the sealing effect and prevent the reagent from volatilizing or contaminating the external environment. This design is particularly important when storing volatile or toxic reagents to protect the safety of experimenters.

The bottle body also has a reserved label area for users to mark the information of the reagent in the bottle, including the reagent name, concentration, preparation date and experimenter's name. Clear labels help avoid confusion or misuse of reagents and improve the safety and efficiency of experiments.

The bottle also has a reserved label area for users to mark the information of the reagents in the bottle, including the reagent name, concentration, preparation date and experimenter's name. Clear labels help avoid confusion or misuse of reagents and improve the safety and efficiency of experiments. In addition, the design of the label area makes reagent management more systematic and convenient, allowing experimenters to quickly identify and access required reagents, saving time and reducing the risk of errors. In an environment where multiple people share a laboratory, clear labels also facilitate traceability of responsibilities, ensuring that the use records and status of each reagent are clear at a glance, further improving the standardization and safety of experiments.

 

 

Material characteristics and advantages of this product
 
1000ml reagent bottle

Plastic reagent bottles are usually made of polypropylene (PP), which is widely used in laboratories and industrial environments for its excellent properties. Polypropylene (PP) is a crystalline thermoplastic resin known for its excellent chemical resistance and mechanical strength. PP material can effectively resist the erosion of most acids, alkalis and organic solvents, making it an ideal choice for storing various chemical reagents. Compared with other plastics, PP performs well in chemical resistance, which can ensure that the reagent bottles will not be corroded or degraded during long-term storage and use, thereby ensuring the purity and stability of the reagents.

 

 

 

Another important feature of polypropylene (PP) is its excellent heat resistance. PP material can be sterilized at a high temperature of 121°C for 30 minutes without deformation or leakage. This feature makes PP reagent bottles very suitable for laboratory environments that require high-temperature sterilization, especially in the fields of microbiology and biotechnology. High-temperature sterilization is a commonly used disinfection method in laboratories. It can effectively kill bacteria, viruses and other microorganisms by heating, ensuring the sterility of the experimental environment. The shape and performance of PP reagent bottles remain stable after high-temperature sterilization, providing a reliable sterile container for experiments.

1000ml reagent bottle
 

 

 

 

Departmental application of this product in chemical laboratories
Chemical Sciences | Bridgewater State University

Chemical reagent storage: This reagent bottle is mainly used to store various chemical reagents and solutions to ensure the purity and safety of the reagents. High-quality glass or plastic materials can effectively prevent the reagents from being contaminated or volatilized. Especially for sensitive reagents, such as strong acids, strong alkalis, organic solvents, etc., this reagent bottle can provide good sealing to prevent any external contaminants from entering, and also avoid the potential harm of reagent volatilization to the experimental environment and personnel.
Waste liquid collection: After the experiment, this reagent bottle can also be used to collect the waste liquid generated in the experiment. These waste liquids may contain toxic or corrosive chemicals and must be properly stored and handled. The sealing and chemical resistance of the reagent bottle ensure that the waste liquid will not leak or pollute the environment.

 

Solution preparation: In chemical experiments, accurate solution preparation is a very important step. This reagent bottle has clear scales printed on the bottle body, which is convenient for accurately measuring the required liquid volume. This is especially important for preparing standard solutions and buffer solutions, ensuring that every step in the experiment is highly accurate and repeatable. Experimenters can mix and dilute solutions directly in the reagent bottle, which improves work efficiency and reduces errors during operation.

Reaction vessel: In some cases, this reagent bottle can also be used as a reaction bottle for small-scale chemical reactions. The material of the reagent bottle is usually resistant to certain temperatures and chemical corrosion, and is suitable for some small-scale experiments that require controlled reaction conditions. For example, in organic synthesis experiments, the reagent bottle can be used for mixing reagents, heating reactions, or cooling crystallization. Its good sealing performance can also effectively prevent the leakage of harmful gases during the reaction process and protect the safety of experimenters.

Importance of cleanliness in laboratories - Lab-Training.com

 

Maybe you have the following questions

 

 

1. What materials is this reagent bottle made of? What are the advantages of each?
This reagent bottle is mainly made of two materials: high-quality borosilicate glass and chemically resistant plastics (such as high-density polyethylene HDPE or polypropylene PP). Borosilicate glass has excellent chemical and heat resistance, suitable for storing various chemical reagents, especially those that require high-temperature sterilization. HDPE and PP plastic bottles are lightweight and have good chemical and impact resistance, suitable for frequent operation and transportation. PP is particularly suitable for high-temperature sterilization environments and can withstand high-temperature sterilization treatment at 121°C for 30 minutes without deformation or leakage.

2. Is the scale of this bottle accurate? How to ensure the accuracy of measurement?
The bottle is printed with clear scales, accurate to milliliters, ensuring that users can make accurate liquid measurements. These scales are strictly quality controlled and calibrated during the production process to ensure the accuracy of measurement. For experimental operations that require high precision, a measuring cylinder or burette can be used in combination for more accurate measurement and preparation.

3. What types of chemicals are suitable for this reagent bottle?
This reagent bottle is suitable for storing a variety of chemicals, including acids, bases, salt solutions, organic solvents and various buffers. Due to the chemical resistance of its materials, it can effectively store highly corrosive reagents such as sulfuric acid and sodium hydroxide. For light-sensitive reagents, amber (brown) glass bottles can provide good light protection to prevent the reagents from decomposing.

4. How is the sealing performance of this reagent bottle?
The reagent bottle is equipped with a screw cap to ensure a good seal at the bottle mouth. The inner side of the screw cap is usually equipped with a sealing gasket to further enhance the sealing effect and prevent the reagent from volatilizing or contaminating the external environment. This design is particularly important when storing volatile or toxic reagents to protect the safety of experimenters. The sealing gasket is made of chemical-resistant material, which can resist the corrosion of the reagent for a long time and will not lose the sealing effect due to long-term use.

5. Can this bottle be autoclaved?
Yes, polypropylene (PP) bottles can withstand autoclaving at 121°C for 30 minutes without deformation or leakage. This makes PP bottles ideal for use in lab environments that require autoclaving, especially in microbiology and biotechnology. Glass bottles can also withstand high temperatures, but they need to be handled carefully during autoclaving to prevent cracking from thermal shock.

6. Is this bottle easy to label and identify the contents?
The bottle has a label area that allows users to mark the information of the reagents in the bottle, including the reagent name, concentration, preparation date, and experimenter's name. Clear labels help avoid reagent confusion or misuse, and improve the safety and efficiency of experiments. In an environment where multiple people share a laboratory, clear labels also facilitate traceability and ensure that the use record and status of each reagent are clear at a glance.

7. Can this bottle be used for long-term storage?
This bottle is ideal for long-term storage. Its materials (borosilicate glass, HDPE, PP) have good chemical corrosion resistance and durability, ensuring that the reagents will not react with the bottle during long-term storage. Good sealing performance prevents reagent volatilization and contamination, maintaining the purity and stability of the reagent. In addition, the heat and impact resistance properties enable the reagent bottle to maintain its integrity and functionality under various storage conditions.

 

 

 

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