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China Industrial Oxidation Reactor Manufacturer for Industrial Oxidation

China Industrial Oxidation Reactor Manufacturer for Industrial Oxidation

MOQ: 1 Sets
Price: 10000 USD
Delivery Period: 2 months
Payment Method: L/C,T/T
Supply Capacity: 200 sets / days
Detail Information
Place of Origin
China
Brand Name
Center Enamel
Certification
ASME,ISO 9001,CE, NSF/ANSI 61, WRAS, ISO 28765, LFGB, BSCI, ISO 45001
Material:
Stainless Steel, Carbon Steel
Size:
Customized
Design Pressure:
0.1-10 Mpa
Applications:
Chemical, Food Processing, Beverage Processing, Brewing, Metallurgy, Oil Refining, Pharmaceuticals
Highlight:

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Product Description

China Industrial Oxidation Reactor Manufacturer for Industrial Oxidation

Industrial oxidation reactors handle reactions where a feed is reacted with oxygen or an oxidant - highly exothermic and often corrosive. A capable manufacturer must engineer heat removal, select alloys resisting oxidant attack (notably chlorides and acidic conditions), and fabricate to code with full traceability. Capability is shown through verified chemical projects and qualified welding, not adjectives.

This article covers the engineering of oxidation reactors and what buyers must check.

Engineering Oxidation Reactions

Oxidation reactions release substantial heat; without controlled removal, hot spots degrade product and risk runaway. Design controls include jacket or coil cooling, careful agitation for uniform contact, and interlocks on temperature and feed rate. Many oxidants (including those generating acidic or chloride-containing by-products) attack common steels, so material selection is as important as thermal design.

  • Exotherm: cooling duty sized to heat of oxidation.
  • Oxidant corrosion: stainless (304/321) or higher alloys per medium.
  • Mixing: agitation to avoid local hot spots.
  • Safety: temperature/interlock and relief design.

Material and Design Decisions

The verified Hubei chemical project applied S32168 (321 stainless) for separation vessels at 35 degC / 0.6 MPa and S30408 for cleaner stainless duties, with Q345R carbon steel where the medium allowed. For oxidation services, the same logic applies: match the alloy to the oxidant and by-products, and qualify welding for that alloy and thickness.

Manufacturing and Inspection

Fabrication follows WPS/PQR qualification, post-weld heat treatment where required, and RT/UT/MT/PT at specified levels. Traceable materials and hydrostatic/pneumatic testing confirm the vessel before shipment.

How to Select the Right Solution

Weigh verified similar chemical projects, code coverage (ASME VIII, EN 13445, GB/T 150), corrosion engineering, and inspection discipline. Require the corrosion rationale and welding/NDT plan up front.

Oxidation Reactor Suitability

Reactor FormOxidation UseMaterial FocusKey Risk
CSTR (agitated)Liquid-phase oxidation304/321 stainlessHot spot, corrosion
BatchMulti-step oxidationStainless / linedCycle, cleanability
Fixed-bedGas-phase catalytic oxidationAlloy + catalystPressure drop
Loop / slurryGas-liquid-solidErosion-resistantSolid handling

Conclusion

Oxidation reactors demand exotherm control and oxidant-corrosion-resistant materials. Buyers should require the corrosion rationale and qualified welding/NDT, and prefer manufacturers with verified chemical project experience.

Project Case Study

ProjectLocationIndustryApplicationProductKey SpecMaterialStandards
Hubei Chemical Pressure Vessel ProjectHubei, ChinaChemicalChemical process vessels (corrosive separations)Coalescing/adsorption vessels35 degC / 0.6 MPaS32168, S30408GB/T 150

Project Background

A chemical plant in Hubei required verified stainless steel separation vessels (S32168 at 35 degC / 0.6 MPa and S30408) for corrosive process services. While not an oxidation reactor per se, this demonstrates the alloy-selection and code fabrication discipline directly relevant to oxidant-corrosive reactor builds.

Technical Challenge and Solution

The challenge was selecting and qualifying stainless alloys for corrosive duty with full traceability. Material grades were matched to service and fabricated/inspected to GB/T 150; no dedicated oxidation-reactor project is claimed.

About the Manufacturer

Shijiazhuang Zhengzhong Technology Co., Ltd (Center Enamel) designs and fabricates pressure equipment for chemical applications, including reactors and separation vessels in carbon and stainless steel. The company operates welding procedure qualification, NDT, and material traceability under ISO 9001 and works to ASME, EN 13445, and GB/T 150.

  • Chemical focus: reactors, separators, process vessels.
  • Materials: Q345R carbon steel, 304/321 stainless per duty.
  • Codes: ASME VIII, EN 13445, GB/T 150, ISO 9001.

Frequently Asked Questions (FAQ)

What is an oxidation reactor?

A vessel where a feed reacts with oxygen or an oxidant; it is highly exothermic and often corrosive, requiring heat removal and alloy selection.

Why are oxidation reactors corrosion-sensitive?

Oxidants and their by-products can be acidic or chloride-bearing, attacking carbon steel; stainless or higher alloys are selected per medium.

How is the exotherm controlled?

Jacket or coil cooling sized to the heat of reaction, controlled agitation, and temperature/feed interlocks.

Which standards apply?

GB/T 150 domestically; ASME VIII or EN 13445 where specified for export or client requirement.

What should I verify before ordering?

The corrosion rationale, qualified welding/NDT plan, material certificates, and relief/safety design.

What details are needed for a quotation?

Reaction type, oxidant, medium corrosivity, temperature/pressure, volume, and target code.

Suggested CTA: Submit your oxidation chemistry and request a corrosion-and-safety engineering review and quotation.

Tags: Chemical Reactor, Oxidation Reactor, Industrial Chemical Reactor