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Hydrothermal Synthesis Autoclave Reactor PPL Lined Vessel Chamber Kettle (50 ML)
CAD 164
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Achieving the purpose of rapid digestion of insoluble substances by taking advantage of strong acid/alkali, high temperature and pressure confined environment.
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Livraison
rapide
Retour
gratuit*
Emballage sécurisé
Produits 100 % originaux
Conformité PCI DSS
Certifié ISO 27001
Ce qui se démarque
Détails du produit
- PPL Lined Vessel Chamber Kettle
- High lubrication- The lowest coefficient of friction in solid materials. High temperature and low temperature resistance -Even if the temperature drops to-196 C, it can maintain 5% elongation
- Acid and alkali resistance, Corrosion resistance- Almost insoluble in all solvents, no harmful substances spill.
- Quick and intact to dissolve the sample containing volatile elements and the sample, and sample that are difficult todissolved in the conventional conditions after heating and boost.
- Able to replace platinum crucible to solve sample treatment problem about the trace Element analysis on high purity alumina.
| Poids de l'article | 1.5 lbs (680 grammes) |
Product Technical Details
| Fabricant | KY HOPE |
À qui est-ce destiné ?
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Research Laboratories
Perfect for laboratories focusing on material science and synthesis for developing new materials under specific conditions.
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Chemistry Students
Ideal for students learning about hydrothermal synthesis methods in practical chemistry applications and experiments.
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Small Scale Production
Great for small businesses needing a reliable reactor for synthesizing chemicals in limited quantities efficiently.
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Opérations à grande échelle
Unsuitable for large-scale production due to its limited 50 ML capacity, which may not meet higher demands.
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Beginners Without Guidance
Not ideal for novices who lack sufficient training or guidance in handling high-pressure autoclave systems safely.
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Non-Specialized Use
Not recommended for general usage in cooking or non-research scenarios where precise synthesis is unnecessary.
DESCRIPTION DU PRODUIT
Questions et réponses des clients
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question:
What is a Hydrothermal Synthesis Autoclave Reactor?
répondre: A Hydrothermal Synthesis Autoclave Reactor is a specialized vessel used for chemical synthesis under high temperature and pressure. It's particularly effective for synthesizing materials like nanoparticles and ceramics. This reactor facilitates hydrothermal reactions, where water acts as a solvent at elevated temperatures, promoting reactions that are difficult or impossible at lower temperatures. In practical scenarios, researchers utilize it for materials science experiments, producing advanced materials for applications in electronics and catalysis. -
question:
What materials are safe to use with the PPL lined vessel?
répondre: The PPL (polypropylene) lining of the vessel is compatible with various chemicals typically used in hydrothermal synthesis, including acids and solvents. However, it is crucial to avoid using highly corrosive materials that could damage the lining. Users commonly employ the reactor for synthesizing metal oxides and other research-grade compounds. Always consult safety data sheets for the specific reagents being used to ensure compatibility with your PPL-lined reactor. -
question:
How does the size of a 400 ML kettle affect my experiments?
répondre: The 400 ML capacity of the kettle is ideal for small to medium-sized experiments, making it suitable for laboratory research where minimizing material use is essential. This size allows for precise control over reaction conditions while still providing enough volume for multiple tests. Researchers often use this volume to explore new synthesis methods or optimize existing ones without committing large quantities of materials, making it economical and practical for academic or industrial labs. -
question:
Can I use the reactor for high-pressure reactions?
répondre: Yes, the Hydrothermal Synthesis Autoclave Reactor is designed to withstand high-pressure conditions, making it suitable for recipes that require substantial pressure to achieve desired chemical reactions. It can handle pressures typically ranging from 0 to 2,000 psi, depending on the specifications. Researchers often utilize high-pressure capabilities to enhance reaction rates and improve the yield of target products, particularly in studies involving hydrothermal mineralization or crystal growth. -
question:
What safety precautions should I take when using this reactor?
répondre: Safety precautions are critical when using a Hydrothermal Synthesis Autoclave Reactor. Always wear protective gear, including safety goggles and gloves, and ensure that the reactor is securely sealed before applying heat. Overfilling the chamber can lead to hazardous situations. It's advisable to conduct experiments in a fume hood or well-ventilated area to mitigate risks associated with gaseous by-products or spills. Familiarity with operating manual guidelines and safety protocols is crucial for safe use. -
question:
Is the reactor suitable for organic synthesis?
répondre: Yes, the Hydrothermal Synthesis Autoclave Reactor can be utilized for organic synthesis, particularly for reactions that benefit from the unique conditions provided by hydrothermal environments. This includes the synthesis of various organic compounds that might otherwise require harsher synthetic methods. Researchers often harness the reactor for organic syntheses in medicinal chemistry, making it ideal for developing pharmaceuticals or agrochemicals under controlled hydrothermal conditions. -
question:
What kind of maintenance does the reactor require?
répondre: Maintaining a Hydrothermal Synthesis Autoclave Reactor is straightforward but essential for ensuring longevity and optimal performance. Regular cleaning of the interior after each experiment and inspection for any wear or corrosion on the PPL lining are important. After numerous uses, a thorough check of sealing mechanisms is necessary to maintain safety. Researchers typically develop a maintenance schedule aligned with their experimental frequency, which helps prevent mishaps during crucial experiments. -
question:
What are the dimensions of the 400 ML reactor?
répondre: The dimensions of the 400 ML Hydrothermal Synthesis Autoclave Reactor can vary by manufacturer, but typically, it has a compact design featuring a height of around 15 cm and a diameter of roughly 8 cm. This size is beneficial for easy storage and handling in lab environments. Users appreciate the compactness for fitting into standard laboratory setups or even fume hoods, allowing for efficient workspace management. -
question:
How can I ensure uniform temperature distribution inside the reactor?
répondre: To achieve uniform temperature distribution within the Hydrothermal Synthesis Autoclave Reactor, it is crucial to monitor the heating mechanisms used. Utilizing programmable temperature controllers and ensuring proper placement of the reactor in a controlled heating unit help maintain consistent temperatures. Additionally, stirring mechanisms or using a circulating water bath around the reactor can enhance uniformity. Researchers often implement these strategies during sensitive experiments where temperature homogeneity impacts the reaction kinetics. -
question:
Where can I buy Hydrothermal Synthesis Autoclave Reactor PPL Lined Vessel Chamber Kettle 400 ML in Canada?
répondre: You can purchase the Hydrothermal Synthesis Autoclave Reactor PPL Lined Vessel Chamber Kettle 400 ML on Ubuy. Ubuy provides options for different brands and models, along with options for various accessories to complement your purchase, ensuring a complete setup for your experimental needs. Their user-friendly interface makes it easy to find the right product tailored to your laboratory requirements.
KY HOPE Autoclaves Editorial Review
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CAD 164
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Caractéristiques et avantages
- Closed vessel reactor for decomposing insoluble substances.
- Ideal for sample dissolution in atomic absorption spectroscopy and plasma emission analysis.
- Operates at maximum temperature of 280℃ and working pressure of 3MPa.
- Constructed with 304 stainless steel and PPL lining for high durability.
- Great resistance to acids, alkalis, and corrosion; maintains integrity in extreme conditions.
- Efficiently dissolves samples that are difficult to manage under conventional methods.






