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YDTech® suppliers of honeycomb ceramics silicon carbide (SiC) modular microreactor for palladium carbon (Pd/C) hydrogenation! manufacturers of silicon carbide (SiC) microchannelreactor industrial Level for mixed dinitrobenzene in china.

we dedicated to promoting the transformation and upgrading of the chemical industry towards production safety, automation, unmanned operation, and greenization. the company's team possesses mature technology and innovative production processes, collaborating closely with several chinese universities and research institutions to advance practical research and applications of microchannel continuous flow technology.

microreactor is a chemical reaction system with a unit reaction interface width on the order of micrometers. Micro chemical technology focuses on studying the process characteristics and laws in micro devices and parallel distributed systems with spatiotemporal characteristic scales ranging from hundreds of milliseconds to hundreds micrometers. A microreactor refers to a microreactor system with one or more microreactors as the main purpose, and may also include auxiliary devices such as micro heat exchange, micro ionization, micro extraction, as well as key components such as micro sensors and micro actuators.

The structure of microreactors often adopts a layered structure. Due to the microstructure inside the microreactor, its specific surface area is very large, which can be hundreds or even thousands of times that of the stirred tank. Microreactors have excellent heat and mass transfer capabilities, which can achieve instantaneous uniform mixing of materials and efficient heat transfer. Therefore, many reactions that cannot be achieved in conventional reactors can be carried out in microreactors.

chemistry properties for precision ceramics silicon carbide SiC microchannelreactor

ceramics silicon carbide SiC substrates, discs, plates, rings, sheets, slabs, plates, tubes, semiconductor parts
ceramics unit silicon carbide
material...SiC
color...black
densityg/cm33.1
ceramics silicon carbide SiC pumps,SiC discs, SiC propellers, SiC rods, bolts, sheets,SiC balls,SiC bearings, sticks, plungers, nozzles, impellers, shafts, sheets, slabs, flanges, crucibles, flanges, seals, pipes, washers,filters, components.

microreactor that uses silicon carbide (SiC) honeycomb ceramic as a catalyst support to enhance energy conversion efficiency and hydrogen production. SiC honeycomb ceramic with high thermal conductivity can serve as an effective catalyst support for the development of microreactors for high volume and efficient hydrogen production.

physical properties for precision ceramics silicon carbide SiC microchannelreactor

ceramics silicon carbide SiC substrates, discs, plates, rings, sheets, slabs, plates, tubes, semiconductor parts
silicon carbide ceramicsunitSiC
Flexural strength(20℃) Mpa400
compressive strength(20℃) Mpa2600
Elastic modulus(20℃) Gpa410
Fracture toughness(20℃) MPam 1/2 4
Vipoll coefficient(20℃) ...0.16
hardness(20℃) HRA87
Vickers hardness(HV1)kg/mm22100
Rockwell hardness(45N)R45N88
ceramics silicon carbide SiC pumps,SiC discs, SiC propellers, SiC rods, bolts, sheets,SiC balls,SiC bearings, sticks, plungers, nozzles, impellers, shafts, sheets, slabs, flanges, crucibles, flanges, seals, pipes, washers,filters, components, laser cutting.

we provides customized one-stop services, offering continuous reaction equipment, including feeding systems, reactors, and separation systems. also, we serves clients in industries such as fine chemicals, pharmaceuticals, pesticides, dyes, lithium batteries, and more, delivering comprehensive services to reduce R&D costs and shorten product development cycles. We aim to be a reliable partner in the growth of enterprises, providing new impetus for the transformation and upgrading of the chemical industry.consequently less conduction and switching power losses.

thermal properties for ceramics silicon carbide SiC microreactor

ceramics silicon carbide SiC substrates, discs, plates, rings, sheets, slabs, plates, tubes, semiconductor parts
silicon carbide ceramicsunitSiC
Coefficient of thermal expansion10-6K-14
Thermal conductivityW/mk100
Thermal shock stabilityT.℃ 400
Specific heat capacityJ/g.k0.67
Maximum temperature1600
ceramics silicon carbide SiC pumps,SiC discs, SiC propellers, SiC rods, bolts, sheets,SiC balls,SiC bearings, sticks, plungers, nozzles, impellers, shafts, sheets, slabs, flanges, crucibles, flanges, seals, pipes, washers,filters, components, laser cutting.

the company is primarily engaged in the processing and manufacturing of silicon carbide microchannel reactors, from individual components to integrated assembly construction. It integrates research, production, and sales services, pioneering several core production technologies for silicon carbide microchannel reactors. by applying advanced materials and technology, the company has overcome various issues in traditional chemical production, such as large footprint, high investment, significant pollution, multiple safety hazards, and high production costs.

the characteristics of microreactors are suitable for gas-solid catalytic reactions. So far, research on microreactors has mainly focused on gas-solid catalytic reactions, so there are many types of gas-solid catalytic microreactors. A simple gas-solid catalytic microreactor is a microchannel with a fixed catalyst on the wall. Complex gas-solid catalytic microreactors typically have one or more functions such as mixing, heat transfer, sensing, and separation. Widely used gas-solid catalytic oxidation of toluene.

one type is that gas and liquid flow from two microchannels into one microchannel, and the entire structure is T-shaped. In gas-liquid two-phase liquids, the flow state of the fluid is similar to that of a bubble column. With the change of gas and liquid flow rates, typical flow patterns such as bubble flow, annular flow, and jet flow have emerged. This type of gas-liquid microreactor is called a microbubble tower. another type is the settling membrane microreactor, where the liquid phase flows in a membrane like manner from top to bottom, and the gas-liquid phases are completely in contact on the membrane surface. The rate and conversion rate of gas-liquid reactions often depend on the contact area between the gas-liquid phases. The gas-liquid contact area of these two types of gas-liquid reactors is very large, with an internal surface area of nearly 20000 m2/m3, which is one order of magnitude larger than traditional gas-liquid reactors.

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