Maklumat Asas.
Material
Cordierite
Permohonan
Industry, Food and Beverage, Medicine, Textile, Metallurgy
taip
Ceramic Filter
Filter Connector
Flat Connector
Filtration Grade
ULPA Filter
Activated Carbon Filter Type
Bulk Type
Tanda dagangan
SW
Pakej Pengangkutan
Carton
Spesifikasi
50x50x50, 100x100x50, 595x260x95
asal usul
China
Kod HS
3815120090
Penerangan Produk
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.;
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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.;
Permohonan:;
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.
Bolehkah pengoksida terma regeneratif digunakan untuk merawat air sisa industri?
Tidak, pengoksida terma regeneratif (RTO) biasanya tidak digunakan untuk merawat air sisa industri. RTO direka khusus untuk kawalan pencemaran udara dan rawatan bahan pencemar gas, seperti sebatian organik meruap (VOC) dan bahan pencemar udara berbahaya (HAP).
Berikut adalah beberapa perkara penting untuk dipertimbangkan mengenai penggunaan RTO untuk merawat air sisa industri:
- Prinsip Operasi: RTO bergantung pada pembakaran bahan pencemar dalam fasa gas. Mereka menggunakan suhu tinggi untuk mengoksidakan bahan pencemar gas secara terma, menukarkannya kepada karbon dioksida dan wap air. Walau bagaimanapun, rawatan air sisa melibatkan penyingkiran atau transformasi bahan cemar yang terlarut atau terampai dalam air, yang memerlukan mekanisme rawatan yang berbeza.
- Teknologi Rawatan Air Sisa: Rawatan air sisa biasanya melibatkan proses seperti pengasingan fizikal, rawatan kimia, rawatan biologi dan teknik khusus lain bergantung pada sifat bahan cemar. Teknologi rawatan air sisa biasa termasuk sistem enap cemar teraktif, tangki pemendapan, pemendakan kimia, penapisan dan pelbagai kaedah lain yang disesuaikan dengan ciri air sisa tertentu.
- Peraturan Alam Sekitar: Rawatan air sisa industri tertakluk kepada peraturan alam sekitar yang ketat dan piawaian pelepasan yang mengawal kualiti efluen yang dilepaskan ke dalam badan air. Pematuhan terhadap peraturan ini memerlukan pelaksanaan teknologi rawatan air sisa yang sesuai yang direka khusus untuk penyingkiran atau pengurangan bahan cemar dalam air, dan bukannya teknologi kawalan pencemaran udara seperti RTO.
- Integrasi dengan Sistem Rawatan Air Sisa: Walaupun RTO tidak digunakan untuk rawatan air sisa, ia mungkin disepadukan ke dalam keseluruhan sistem proses industri di mana rawatan air sisa juga diperlukan. Dalam kes sedemikian, teknologi rawatan air sisa yang berasingan digunakan untuk merawat air sisa, dan RTO digunakan untuk menangani pelepasan udara yang terhasil daripada proses rawatan air sisa atau operasi industri lain.
Ringkasnya, pengoksida terma regeneratif tidak sesuai untuk merawat air sisa industri. Ia direka untuk kawalan pencemaran udara dan pemusnahan bahan pencemar gas. Untuk rawatan air sisa yang berkesan, industri harus menggunakan teknologi rawatan air sisa yang sesuai yang direka khusus untuk penyingkiran atau transformasi bahan cemar dalam air.
Can regenerative thermal oxidizers handle high-temperature exhaust streams?
Regenerative thermal oxidizers (RTOs) are designed to handle high-temperature exhaust streams efficiently. They are capable of accommodating exhaust gases with elevated temperatures and effectively treating them for pollutant removal. Here are some key points regarding the handling of high-temperature exhaust streams in RTOs:
- Thermal Stability: RTOs are constructed using materials that can withstand high temperatures, typically ranging from 800 to 1,500 degrees Celsius (1,472 to 2,732 degrees Fahrenheit). The combustion chamber, heat exchangers, and other components are designed to maintain their structural integrity and thermal stability under these conditions.
- Pemulihan Haba: One of the primary advantages of RTOs is their ability to recover and reuse heat from the high-temperature exhaust streams. The heat exchangers within the RTO capture the thermal energy from the outgoing exhaust gases and transfer it to the incoming process air or gas stream. This heat recovery process improves the overall energy efficiency of the system and reduces the need for additional fuel consumption.
- Effective Combustion: RTOs are equipped with combustion chambers where the high-temperature exhaust gases are directed. In the combustion chamber, the pollutants in the exhaust stream are oxidized at high temperatures, typically above the autoignition temperature of the pollutants. This ensures effective destruction of the pollutants, even in high-temperature environments.
- Heat Exchange: RTOs utilize a regenerative heat exchange system, which allows for the efficient transfer of heat between the incoming and outgoing gas streams. The heat exchange media within the RTO alternately absorbs and releases heat, enabling the preheating of the incoming gases and cooling of the outgoing gases. This heat exchange process helps maintain the desired operating temperatures within the RTO while maximizing energy recovery.
- System Design Considerations: When handling high-temperature exhaust streams, proper system design is crucial. Factors such as the choice of materials, insulation, and thermal expansion considerations are taken into account to ensure safe and efficient operation at elevated temperatures. Additionally, temperature monitoring and control systems are implemented to maintain optimal operating conditions.
It is important to note that the specific temperature limits and capabilities of an RTO may vary depending on the design, materials used, and the specific requirements of the application. Consulting with experienced engineers or RTO manufacturers can provide valuable insights into the suitability of an RTO for handling a particular high-temperature exhaust stream.
Overall, RTOs are well-suited for handling high-temperature exhaust streams, offering effective pollutant destruction, heat recovery, and energy efficiency in industrial applications.
Regenerative Thermal Oxidizer vs. Thermal Oxidizer
When comparing a regenerative thermal oxidizer (RTO) to a conventional thermal oxidizer, there are several key differences to consider:
1. Operation:
A regenerative thermal oxidizer operates using a cyclical process that involves heat recovery, while a thermal oxidizer typically operates in a continuous mode without heat recovery.
2. Heat Recovery:
One of the primary distinctions between the two systems is the heat recovery mechanism. An RTO utilizes heat exchanger beds filled with ceramic media or structured packing to recover heat from the outgoing gases and preheat the incoming gases, resulting in energy savings. In contrast, a thermal oxidizer does not incorporate heat recovery, leading to higher energy consumption.
3. Efficiency:
RTOs are known for their high destruction efficiency, typically above 95%, which enables effective removal of volatile organic compounds (VOCs) and other pollutants. Thermal oxidizers, on the other hand, may have slightly lower destruction efficiencies depending on the specific design and operating conditions.
4. Energy Consumption:
Due to the heat recovery mechanism, RTOs generally require less energy for operation compared to thermal oxidizers. The preheating of incoming gases in an RTO reduces the fuel consumption required for combustion, making it more energy-efficient.
5. Cost-effectiveness:
While the initial capital investment for an RTO can be higher than that of a thermal oxidizer due to the heat recovery components, the long-term operational cost savings through energy recovery and higher destruction efficiencies make RTOs a cost-effective solution over the lifespan of the system.
6. Environmental Compliance:
Both RTOs and thermal oxidizers are designed to meet emissions regulations and help industries comply with air quality standards and permits. However, RTOs typically offer higher destruction efficiencies, which can enhance environmental compliance.
7. Versatility:
RTOs and thermal oxidizers are both versatile in terms of handling a wide range of process exhaust volumes and pollutant concentrations. However, RTOs are often preferred for applications where high destruction efficiencies and energy recovery are critical.
Overall, the key distinctions between a regenerative thermal oxidizer and a thermal oxidizer lie in the heat recovery mechanism, energy consumption, efficiency, and cost-effectiveness. RTOs offer superior energy recovery and higher destruction efficiencies, making them an attractive option for industries that prioritize energy efficiency and environmental compliance.
editor oleh Dream 2024-05-15