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Pressure Hydrothermal Autoclave Reactor 500ml 22Mpa 380
MWK 9132170
Price Details
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High performance with good sealing, corrosion resistance, and temperature resilience.
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What Stands Out
Product Details
| Item Weight | 5 lbs (2.27 kg) |
Who Should Buy?
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Researchers
Ideal for academic and industrial research requiring high-pressure synthesis of materials in controlled environments.
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Material Scientists
Perfect for experiments related to hydrothermal synthesis and characterizing materials under varied pressure conditions.
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Laboratory Technicians
Beneficial for technicians performing routine synthesis requiring precise temperature and pressure control in their experiments.
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Casual Users
Not suitable for non-professionals without understanding of high-pressure equipment and safety protocols.
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Small-scale Projects
Inappropriate for projects with minimal requirements as the reactor has a relatively large 500ml capacity.
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Budget-Conscious Buyers
Not ideal for users seeking cost-effective solutions, as this equipment represents a higher investment.
Product Description
Pressure Hydrothermal Autoclave Reactor 500ml 22Mpa 380
Customer Questions & Answers
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Question:
What is a Pressure Hydrothermal Autoclave Reactor used for?
Answer: A Pressure Hydrothermal Autoclave Reactor is primarily used in laboratory settings for conducting high-pressure chemical reactions and synthesis. These reactors facilitate experiments involving hydrothermal synthesis, where reactions occur under elevated temperatures and pressures. They are ideal for applications such as the creation of nanoparticles, catalysts, and even drug synthesis. For example, researchers in material science may utilize the reactor to develop innovative materials, while chemists can explore reaction pathways of complex compounds. -
Question:
What safety features are included in this autoclave reactor?
Answer: Safety is a top priority with the Pressure Hydrothermal Autoclave Reactor. Key safety features typically include a pressure relief valve, high-quality materials designed to withstand intense conditions, and an automatic shutdown mechanism to prevent overheating. These features ensure that users can conduct experiments securely, minimizing the risk of leaks or explosions. For instance, if the internal pressure exceeds safe limits, the pressure relief valve activates, allowing for controlled release without jeopardizing safety. -
Question:
How do you operate a Pressure Hydrothermal Autoclave Reactor?
Answer: Operating a Pressure Hydrothermal Autoclave Reactor involves several important steps. First, you should select appropriate reagents and solvents based on your experimental goals. Once the materials are loaded, securely seal the reactor and set the desired temperature and pressure parameters. It’s crucial to monitor these settings throughout the reaction. For example, a researcher may use this reactor to synthesize silica nanoparticles by carefully controlling the temperature and pressure, ensuring optimal product yield and quality. -
Question:
What materials can be processed in this reactor?
Answer: The Pressure Hydrothermal Autoclave Reactor is versatile and can accommodate a wide range of materials, including organic and inorganic compounds, metal oxides, and polymers. These reactors are particularly effective for synthesizing crystals, catalysts, or complex compounds that require high pressure and temperature. For instance, chemists can explore new pharmaceutical compounds or create advanced materials for electronics within this reactor, making it invaluable across multiple scientific disciplines. -
Question:
What is the maximum temperature and pressure of this reactor?
Answer: This Pressure Hydrothermal Autoclave Reactor supports maximum pressures of up to 22 MPa and temperatures reaching around 380°C. Such high limits enable a variety of experiments that would be impossible under standard atmospheric conditions. For example, researchers investigating high-temperature superconductors may take advantage of these capabilities to explore phase changes and chemical reactions critical to material development. -
Question:
Is this reactor suitable for educational use?
Answer: Yes, this Pressure Hydrothermal Autoclave Reactor is suitable for educational purposes, particularly in advanced chemistry, materials science, and engineering courses. Institutions can use it to showcase experimental techniques involving high-pressure chemistry, providing students with hands-on learning opportunities. For example, university labs may incorporate this reactor into coursework to demonstrate hydrothermal synthesis concepts, enabling students to grasp complex chemical processes practically. -
Question:
What cleaning protocols should be followed after use?
Answer: Post-experimental cleaning of the Pressure Hydrothermal Autoclave Reactor is critical for ensuring its longevity and performance. After use, always allow the reactor to return to room temperature before disassembling. Thoroughly clean all components with appropriate solvents and brushes, ensuring no residue remains. For example, a researcher who used the reactor for synthesizing zinc oxide nanoparticles might clean the internal surfaces to prevent contamination in subsequent experiments. -
Question:
Can this autoclave reactor be used for batch processing?
Answer: Yes, the Pressure Hydrothermal Autoclave Reactor is designed for batch processing, which means multiple reactions can be conducted sequentially or simultaneously within the same setup. This is particularly beneficial for applications such as multipart synthesis or when testing different variables in a controlled environment. For instance, researchers can experiment with various reagent concentrations in separate batches, optimizing reaction conditions efficiently. -
Question:
What is the volume capacity of the reactor?
Answer: The Pressure Hydrothermal Autoclave Reactor has a volume capacity of 500ml, making it ideal for small to medium scale experiments. This capacity allows researchers to conduct significant studies without wasting materials, providing adequate sample sizes for analysis. For example, if a scientist is exploring catalyst efficiency, they can synthesize enough product within this volume for thorough characterization and testing. -
Question:
Where can I buy the Pressure Hydrothermal Autoclave Reactor 500ml 22Mpa 380?
Answer: You can purchase the Pressure Hydrothermal Autoclave Reactor 500ml 22Mpa 380 from Ubuy. This platform offers an assortment of laboratory equipment, ensuring you receive a reliable product suitable for your experimental needs. By exploring Ubuy, you can find this reactor along with comprehensive information, helping you decide on your purchase effectively.
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Important information
- Limitations : For products shipped internationally, please note that any manufacturer warranty may not be valid; manufacturer service options may not be available; product manuals, instructions, and safety warnings may not be in destination country languages; the products (and accompanying materials) may not be designed in accordance with destination country standards, specifications, and labeling requirements; and the products may not conform to destination country voltage and other electrical standards (requiring use of an adapter or converter if appropriate). The recipient is responsible for assuring that the product can be lawfully imported to the destination country. When ordering from Ubuy or its affiliates, the recipient is the importer of record and must comply with all laws and regulations of the destination country.
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MWK 9132170
Order now and get it around Saturday, August 01
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Ubuy works hard to protect your security and privacy. Our advanced payment security system ensures confidentiality by encrypting your information during transmission using AES (Advanced Encryption Standards) and SSL (Secure Socket Layer) protocols. Your payment details are 100% secure as we do not share your payment details with third party sellers.
Features & Benefits
- Temperature tolerance up to 380 DEG C.
- Working pressure of 22MPa for robust applications.
- Easy installation and simple operation for user convenience.
- Outstanding sealing performance with no leakage.
- Corrosion and temperature resistance for durability.
- Versatile application across various research and production sectors.