Glass Reactor Laboratory
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Glass Reactor Laboratory

1. Specification:
(1)1L/2L/3L/5L---Standard/Liftable
(2)10L/20L/30L/50L/100L/150L/200L---Standard/EX-Proof
***Price List for whole above, inquire us to get
2. Customization:
(1)Design support
(2)Directly supply the Senior R&D organic intermediate, shorten your R&D time and cost.
(3)Share the advanced purifying technology with you
(4)Supply the high quality chemicals and analysis reagent
(5)We want to assist you on Chemical Engineering (Auto CAD, Aspen plus etc.)
3. Assurance:
(1)CE and ISO certification Registered
(2)Trademark: ACHIEVE CHEM(since 2008)
(3)Replacement parts within 1-year for free
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Description

Technical Parameters

The glass reactor laboratory is an equipment used for chemical reactions and synthesis in the laboratory. It is usually made of acid and alkali resistant glass materials and has the functions of carrying reactants, providing reaction environment, and controlling reaction conditions. The feed inlet design shows a high degree of flexibility and progressiveness in terms of location, size, interface form, sealing performance and connection interface, which provides strong support for laboratory research. Widely used in experimental research and industrial production in fields such as chemistry, pharmaceuticals, and materials science. By conducting various chemical reactions and synthesis processes in a reaction vessel, reaction mechanisms can be studied, reaction conditions can be optimized, new materials or compounds can be synthesized, and products can be developed and produced. It is one of the commonly used and important experimental equipment in laboratories. Visually, the entire device is cleverly placed on a silver bracket, which is both stable and easy to operate in experiments. The white design of the background makes the various parts of the device clearer and easier to distinguish, making it easier for experimenters to observe and record experimental phenomena. This glass reactor is a highly integrated and customized experimental equipment that can meet the needs of different chemical reactions or analytical tasks.

 

 

product-750-200

 

reactor | Shaanxi Achieve chem-tech


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Jacket Glass R | Shaanxi Achieve chem-tech


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Product Introduction

 

The glass reactor laboratory adopts a cylindrical design, but also has the following significant features and convenience:

01/

Observation convenience: The cylindrical design combined with transparent glass material allows experimenters to observe the experimental process inside the reactor from all angles and clearly, including subtle phenomena such as changes in the state and color of reactants, as well as the generation of bubbles. This is crucial for monitoring reaction progress, adjusting experimental conditions, and detecting abnormalities in a timely manner.

02/

Temperature control uniformity: The uniform wall thickness design of cylindrical reaction vessels helps achieve temperature control uniformity. During the heating or cooling process, heat or cold can be uniformly transferred along the kettle wall, reducing local overheating or undercooling caused by temperature gradients, thereby ensuring the consistency of reaction conditions and improving the accuracy and reproducibility of experimental results.

03/

High space utilization efficiency: Within the same volume, cylindrical shapes can more effectively utilize space compared to other shapes such as squares and rectangles, reducing unnecessary space waste. This is particularly important for environments with limited laboratory space, as it can accommodate more experimental equipment or increase the flexibility of other experimental operations.

04/

Reduce stress concentration: The cylindrical design avoids sharp edges and reduces the presence of stress concentration points. When subjected to internal pressure or external impact, the stress distribution is more uniform, reducing the risk of container rupture caused by stress concentration and improving the safety and service life of the equipment.

05/

Wide compatibility: Due to its standardized design and wide applicability, cylindrical reaction vessels can be compatible with various accessories such as stirrers, thermometers, pressure gauges, etc., meeting different experimental needs. At the same time, it is also easy to connect and integrate with other laboratory equipment, improving the overall performance and flexibility of the experimental system.

06/

Cost effectiveness: From a manufacturing perspective, the manufacturing process of cylindrical reactors is relatively simple, with high material utilization, resulting in relatively low production costs. Meanwhile, its longer lifespan and lower maintenance costs further enhance its cost-effectiveness.

Product Features

 

The transparency of glass reactor laboratory means that it can penetrate visible light, and external observers can clearly see the inside of the container.

glass reactor laboratory details | Shaanxi Achieve chem-tech

single layer glass reactor1 | Shaanxi Achieve chem-tech

 

There are essential high-end equipment in chemical laboratories, designed specifically for precise control of chemical reaction conditions and optimization of experimental processes. Every detail of it reflects the engineer's pursuit of scientific rigor in experiments and consideration of the ease of operation for experimenters.

 

Transparent glass bottle (component 1):

As the core part of the reactor, this glass bottle is made of high borosilicate glass material, which has excellent high temperature resistance and corrosion resistance, and can withstand various violent chemical reactions without breaking. The scale lines on the bottle help experimenters accurately measure the volume of reactants, ensuring the reproducibility of the experiment. The combination of blue lid and white bracket not only enhances the sealing, but also makes the bottle more stable during operation and less prone to tipping.

 

Metal tube and blue dome container (component 2):

The metal tube is made of stainless steel material, which is corrosion-resistant and easy to clean, ensuring the purity of the fluid during the reaction process. The blue dome container may be a condensation reflux device, which cools the steam generated by the reaction to re condense it into liquid and reflux it back to the reaction bottle, thereby improving the utilization rate of reactants and the purity of products. In addition, the device may also be equipped with a temperature controller to accurately adjust the condensation temperature to meet the needs of different experiments.

 

Transparent plastic bottle (component 3):

This plastic bottle may be used to store reactants, solvents, or intermediate products. Its transparency allows experimenters to observe changes in the state of substances inside the bottle at any time, while the presence of labels ensures the accuracy of substance identification during the experimental process. The choice of plastic material may be based on its stability to certain chemicals or cost considerations.

 

White knob (component 4):

This knob may be connected to a key component in the reaction system, such as a gas flow meter, pressure valve, or temperature controller. By rotating the knob, the experimenter can fine tune the working state of these components, thereby achieving precise control over the reaction conditions. This design makes the experimental process more flexible and adaptable to the complex requirements of different chemical reactions.

 

Grey circular object (component 5):

This grey circular object may be a multifunctional filter or separation device. Its internal structure may include various materials such as filters, adsorbents, or ion exchange resins, which are used to remove impurities from the reaction solution, separate products, or perform other forms of substance purification. The existence of this device greatly improves the accuracy and reliability of experimental results.

 

Black plastic bottle (component 6):

As a collection device, this black plastic bottle may be used to receive processed or reacted products. The black bottle body can effectively prevent the destructive effect of light on photosensitive substances, protecting the stability and activity of the product. At the same time, the labeling also ensures the traceability of product information and the completeness of experimental records.

The entire is cleverly installed on a silver bracket, which is designed to be stable and easy to adjust in height and angle to meet the needs of different experimental scenarios. The white design of the background not only enhances the cleanliness and aesthetics of the laboratory, but also makes various parts of the experimental equipment more prominent and easy for experimenters to observe and operate. This is a precision instrument in the chemistry laboratory, and its efficient operation and precise control provide strong support for the in-depth development of scientific research.

 

Applications

 

Glass reactor laboratory is used to synthesize and characterize various materials in materials science, such as nanoparticles, nanocomposites, ceramic materials and so on. The reaction conditions and stirring methods can be controlled, and the morphology, structure and properties of the materials can be adjusted.

Preparation of nanocomposites usually involves the following steps:
 

Dispersing nanoparticles: Adding the required nanoparticles into the reaction kettle. These nanoparticles can be metal nanoparticles, oxide nanoparticles, carbon nanotubes, etc. Using appropriate dispersion methods (such as ultrasonic treatment, mechanical stirring, etc.), the nanoparticles are uniformly dispersed in the solvent.

 

Reaction and treatment: According to the required preparation method of nanocomposites, appropriate reaction treatment is carried out. This includes the adjustment of temperature control, stirring speed and reaction time. Crosslinking agents, surface treatment agents or other additives may also be needed to improve the properties of the materials.

Our lab workshop | Shaanxi Achieve chem-tech

01

Preparation of reaction kettle:

Select a lab glass reaction kettle with appropriate size and ensure that it is clean and free from damage. If necessary, coat a layer of special material or surface treatment in the reaction kettle to prevent material adhesion or other interference in the reaction.

02

Adding base material solvent:

According to the required composition of nano composite material, add appropriate solvent into the reaction kettle. The solvent should be compatible with the base material and can provide a suitable dispersion and reaction environment.

03

Adding basic materials:

Adding the basic materials needed to prepare nano-composite materials into the reaction kettle. This may be a polymer, ceramic, or other suitable base material.

04

Separation and collection of nanocomposites:

According to the needs, the prepared nanocomposites can be separated from the reaction system by centrifuge, filter or precipitation. After separation, the obtained materials can be dried, washed and crushed.

 

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