Yandex Metrika

Základní informace.

Material

Cordierite

Aplikace

Industry, Food and Beverage, Medicine, Textile, Metallurgy

Typ

Ceramic Filter

Filter Connector

Flat Connector

Filtration Grade

ULPA Filter

Activated Carbon Filter Type

Bulk Type

Ochranná známka

SW

Přepravní balíček

Carton

Specifikace

50x50x50, 100x100x50, 595x260x95

Původ

Čína

Kód HS

3815120090

Popis produktu

Description:;
Carrier:; Ceramic honeycomb substrate (cordierite monolith); or metal honeycomb substrate (stainless steel crust and Fe-Cr-Al honeycomb body);.;

Technical Data:;
Material:;Cordierite,; mullite ceramics 
Size:;                                               
50x50x50,;100x100x50,;595x260x95
Working Temperature:;220°C-1100°C 
Channels:;Circular,; Square,; Rectangle
Cell Density:;                                     
50-400 CPSI                                      
Type:; Catalytic Converter
Usage:;
Catalytic Converter                                           
Application:;Enameled wire,; paint room,; waste gas treatment industry.;
——————————————————————————————————————————————————

Regenerative Thermal/Catalytic Oxidizer (RTO/RCO); :;

Regenerated heat/catalytic oxidant (RTO/RCO);:; it is widely used in automotive coatings,; chemical industry,; electronic and electric manufacturing industry,; contact combustion system and other fields.;Ceramic honeycomb is designated as a structural regenerative medium for RTO/RCO.;
 

Advantage:;

1.; Various materials and specifications
2.; Products with different formulas can be customized according to customer requirements.;
3.; Small resistance loss
4.; Low thermal expansion coefficient
5.; Excellent crack resistance
6.; It can be customized to meet the emission standards of different countries.;
 

Aplikace:;

1.; It can be used as a heat exchanger in the RTO of the heat recovery device.;
2.; Can be used as a catalyst to purify automobile exhaust and motorcycle exhaust to remove odor.;
3.; Applicable to food service industry,; environmental protection industry,; metallurgy industry,; etc

Test Equipment:;

Particle size distribution tester
Aperture and specific surface meter
Metal distribution,; crystalline structure
Catalyst activity evaluation system

Production Equipment:;

Coating continuous microwave drying system
Slurry nanometer grinding preparation system
Slurry quantitative spraying system

RFQ:;

Q:;Are you a trading company or a manufacturer?

A:;We are professional manufacturer which has almost 20 years of experience in this industry.;

Q:;Can you produce according to the samples?

A:;Yes,;we can produce by your samples or technical drawings.;

Q:;Would it be possible for us to visit your factory?

A:;Sure,;we welcomed our customers visit our factory in any time.;

Q:;Will your company supply samples?

A:;Yes,;the sample expense will be deducted from the value of your order.;

Q:;What’s your payment terms?

A:;T/T,; L/C,; Western Union,; Money Gram,; are available for us.;

Q:;Delivery time for my order?

A:;Within 7-15 working days for your sample order; 20 working days for your bulk order( It depends on the models and quantity you are going to order);.;

 

Address: Room. 3902-2 TianAn CHINAMFG Town No. 228 Ling Lake Avenue, New Wu District, HangZhou City, ZheJiang Province, China.

Business Type: Manufacturer/Factory, Group Corporation

Business Range: Auto, Motorcycle Parts & Accessories, Chemicals, Industrial Equipment & Components, Manufacturing & Processing Machinery

Management System Certification: ISO 9001, ISO 14001, ISO 20000, IATF16949

Main Products: Honeycomb Catalytic, Three Way Catalytic, Chemical Catalytic, Exhaust Filter, Industrial Catalytic

Company Introduction: Established in 2003, Sheung Well International Corp. Is a professional enterprise specialized in developing, manufacturing, selling automotive vehicles, Universal fuel engine and industrial three-way catalyst and converters, four-way converters. With independent intellectual property rights, its technology has been approved by ISO9001, TS16949 quality and management systems.

Sheung Well is an all-round designer and manufacturer who has a innovative and quality managing team mainly consists of doctorates and masters. Based on its cutting edge technology, rich experience and modern production and quality management skills, CHINAMFG is providing customers with first-class products and services.

Oriented in market, with innovation as its soul, centralized in serving the society, CHINAMFG lays emphasis on developing technology and products of controlling Exhaust emissions and other industrial catalysts. By providing customers with technology and supports of new products, it is committed to becoming the word-class all-around enterprise in catalyst circle from home and abroad.

regenerační tepelná oxidační činidla

Are regenerative thermal oxidizers suitable for controlling particulate matter emissions?

Regenerative thermal oxidizers (RTOs) are primarily designed for the destruction of volatile organic compounds (VOCs) and hazardous air pollutants (HAPs). While RTOs are highly effective in treating gaseous pollutants, they are not specifically designed for controlling particulate matter emissions.

Here are some key points to consider regarding the suitability of RTOs for controlling particulate matter emissions:

  • Particulate Matter (PM) Removal Mechanism: RTOs primarily operate based on the thermal oxidation of pollutants. They rely on high temperatures to break down and destroy gaseous pollutants, but they do not have a dedicated mechanism for capturing and removing particulate matter. The design of RTOs does not incorporate features such as filters or electrostatic precipitators that are commonly used for effective particulate matter control.
  • Limited Particulate Matter Destruction: While RTOs can provide some incidental removal of fine particulate matter through mechanisms like thermal decomposition and agglomeration, the removal efficiency for particulate matter is generally low compared to dedicated particulate control devices. The focus of RTOs is primarily on the destruction of gaseous pollutants rather than the capture and removal of particulates.
  • Supplementary Particulate Control: In certain cases, supplementary particulate control devices may be integrated with RTOs to address particulate matter emissions. These devices, such as bag filters or electrostatic precipitators, can be installed downstream of the RTO to capture and remove particulates. This combination of an RTO with a separate particulate control device can help achieve comprehensive air pollution control for both gaseous pollutants and particulate matter.
  • Consideration of Particulate Characteristics: When evaluating the suitability of RTOs for a specific application involving particulate matter emissions, it is crucial to consider the characteristics of the particulates, such as size, composition, and concentration. RTOs may be more effective in controlling certain types of coarse particulates compared to fine or ultrafine particulate matter.
  • Alternative Technologies: For industries with significant particulate matter emissions, other air pollution control technologies specifically designed for particulate removal, such as fabric filters (baghouses), electrostatic precipitators, or wet scrubbers, may be more suitable and efficient.

In summary, while regenerative thermal oxidizers are highly effective for the destruction of gaseous pollutants, they are not specifically designed for controlling particulate matter emissions. If particulate matter control is a significant concern, supplementary particulate control devices or alternative technologies should be considered to ensure comprehensive air pollution control.

regenerační tepelná oxidační činidla

Are regenerative thermal oxidizers safe to operate?

Regenerative thermal oxidizers (RTOs) are designed with safety considerations to ensure their safe operation. When properly installed, operated, and maintained, RTOs provide a high level of safety. Here are some key points regarding the safety of operating RTOs:

  • Combustion and Fire Safety: RTOs are designed to safely combust and destroy volatile organic compounds (VOCs) and other pollutants in the exhaust stream. They incorporate various safety features to prevent the risk of uncontrolled fires or explosions. These features may include flame arrestors, temperature sensors, pressure relief devices, and automated shutdown systems to ensure safe operation in the event of abnormal operating conditions.
  • Control and Monitoring Systems: RTOs are equipped with advanced control and monitoring systems that continuously monitor various parameters such as temperature, pressure, and flow rates. These systems provide real-time data to operators, allowing them to detect any deviations from normal operating conditions promptly. Alarms and safety interlocks are often included to alert operators and initiate appropriate actions in case of abnormal situations.
  • Heat Recovery and Thermal Efficiency: RTOs are designed to maximize thermal efficiency by recovering and reusing heat generated during the oxidization process. This reduces the overall energy consumption and minimizes the risk of heat buildup within the system, contributing to safe operation and preventing excessive temperatures that could pose safety hazards.
  • Equipment and Material Selection: RTOs are constructed using materials that can withstand the high temperatures and corrosive conditions encountered during operation. Heat-resistant materials, such as ceramic beds or metallic heat exchangers, are commonly used. Proper material selection ensures the integrity and longevity of the equipment, reducing the risk of failures or leaks that could compromise safety.
  • Compliance with Standards and Regulations: RTOs must comply with applicable safety standards and regulations. These standards define specific requirements for the design, installation, operation, and maintenance of air pollution control systems, including RTOs. Compliance with these standards ensures that the RTOs meet the necessary safety criteria and helps safeguard the health and well-being of personnel and the surrounding environment.
  • Operator Training and Maintenance: Adequate operator training and regular maintenance are crucial for safe RTO operation. Operators should receive comprehensive training on the system’s operation, safety procedures, and emergency response protocols. Additionally, routine maintenance and inspections help identify and address any potential safety concerns or equipment issues before they escalate.

While RTOs are generally safe to operate, it is essential to follow the manufacturer’s guidelines, maintain proper safety protocols, and adhere to applicable regulations to ensure safe and reliable operation.

regenerační tepelná oxidační činidla

Jak funguje regenerační tepelný oxidátor?

A regenerative thermal oxidizer (RTO) operates through a cyclical process that involves several key steps. Here’s a detailed explanation of how an RTO works:

1. Vstupní plénum: Výfukové plyny obsahující znečišťující látky vstupují do RTO přes vstupní komoru.

2. Lůžka tepelného výměníku: RTO obsahuje několik lůžek výměníků tepla naplněných médiem akumulujícím teplo, typicky keramickými materiály nebo strukturovaným těsněním. Lůžka výměníků tepla jsou uspořádána v párech.

3. Průtokové regulační ventily: Ventily pro řízení průtoku řídí proudění vzduchu a řídí směr výfukových plynů přes RTO.

4. Spalovací komora: Výfukové plyny, nyní nasměrované do spalovací komory, se zahřívají na vysokou teplotu, typicky mezi 1400 °F (760 °C) a 1600 °F (870 °C). Tento teplotní rozsah zajišťuje účinnou tepelnou oxidaci znečišťujících látek.

5. Ničení VOC: The high temperature in the combustion chamber causes the volatile organic compounds (VOCs) and other contaminants to react with oxygen, resulting in their thermal decomposition or oxidation. This process breaks down the pollutants into water vapor, carbon dioxide, and other harmless gases.

6. Rekuperace tepla: Horké, vyčištěné plyny opouštějící spalovací komoru procházejí výstupní komorou a proudí loži výměníku tepla, které jsou v opačné fázi provozu. Teplo akumulační média v ložích absorbují teplo z odcházejících plynů, které předehřívají přicházející výfukové plyny.

7. Přepínání cyklů: Po určitém časovém intervalu regulační ventily průtoku přepnou směr proudění vzduchu, což umožní loži výměníku tepla, která předehřívala přiváděné plyny, nyní přijímat horké plyny ze spalovací komory. Cyklus se poté opakuje a zajišťuje nepřetržitý a efektivní provoz.

Výhody regeneračního tepelného oxidátoru:

RTO nabízí několik výhod v průmyslové kontrole znečištění ovzduší:

1. Vysoká účinnost: RTO mohou dosáhnout vysoké účinnosti destrukce, typicky nad 95%, účinně odstraňovat širokou škálu znečišťujících látek.

2. Rekuperace energie: Mechanismus rekuperace tepla v RTO umožňuje významné úspory energie. Předehřev přiváděných plynů snižuje spotřebu paliva potřebnou pro spalování, díky čemuž jsou RTO energeticky účinné.

3. Efektivita nákladů: Ačkoli počáteční kapitálová investice do RTO může být významná, dlouhodobé úspory provozních nákladů díky obnově energie a vysoké účinnosti ničení z něj činí nákladově efektivní řešení po celou dobu životnosti systému.

4. Soulad s životním prostředím: RTO jsou navrženy tak, aby splňovaly přísné emisní předpisy a pomáhaly průmyslovým odvětvím dodržovat normy a povolení týkající se kvality ovzduší.

5. Všestrannost: RTO zvládnou širokou škálu objemů výfukových plynů a koncentrací znečišťujících látek, díky čemuž jsou vhodné pro různé průmyslové aplikace.

Celkově lze říci, že regenerační tepelné oxidační zařízení funguje tak, že využívá rekuperaci tepla, vysokoteplotní spalování a cyklické řízení toku k účinné oxidaci znečišťujících látek a dosažení vysoké účinnosti destrukce při minimalizaci spotřeby energie.

China Best Sales Industrial Ceramics Honeycomb Ceramic for Regenerative Thermal Oxidizers Rto & Rco
editor by CX 2024-03-25

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