Maklumat Asas.
Model NO.
Amazing catalysis
taip
Insinerator
Penjimatan Tenaga
100
Excellent Material
100
Kecekapan Tinggi
100
Tanda dagangan
Bjamazing
Pakej Pengangkutan
Overseas Package
Spesifikasi
111
asal usul
China
Kod HS
111111
Penerangan Produk
Accumulator Ceramic
RTO adopt ceramic accumulator, which has excellent heat storage performance, less heat loss and high efficiency in heat exchanging .
Ceramic accumulating body adopts LANTEC MLM series product, which embodies the merits of large specific surface area, small resistance, large heat volume, heat resistance can up to 1200ºC, high anti-acid fastness, small water absorption, small thermal expansion coefficient, better anti-cracking ability, long lifet Specification
High Temperature Air Combustion Technology(HTAC) have dual effects on energy saving and environment protection. Comparing with the conventional combustion technology, CHINAMFG will save approximately 20-50% fuels, decrease the oxidation and lgnition loss by 20%,reduce NOx emissions by 40% and bring up the production output > 20%.
** L*W*H(mm) |
Quantity of channels |
Channel width |
Wall thickness |
Side wall thickness |
Specific surface area |
Void% |
Section shape |
200*100*100 | 20*9 | ¢8.5 Round channel | 2.3 | 2.5 | 280 | 51 |
|
150*100*100 | 36*24 | ¢3*3 Square channel | 1.1 | 1.2 | 734 | 52 |
|
150*100*100 | 35*20 | ¢4 Hexagon channel | 1.0 | 1.2 | 687 | 65 |
|
150*100*100 | 10*6 | ¢12 Hexagon channel | 4.0 | 4.0 | 210 | 50 |
|
150*100*100 | 35*20 | ¢3.5 Hexagon channel | 1.5 | 1.5 | 570 | 50 |
|
150*100*100 | 17*13 | ¢7.5 Round channel | 1.2 | 1.3 | 366 | 57 |
|
150*100*100 | 33*19 | ¢4 Round channel | 1.0 | 1.3 | 568 | 53 |
|
150*100*100 | 15*9 | ¢8.5 Round channel | 2.3 | 2.5 | 280 | 51 |
|
150*100*100 | 38*22 | ¢3.6 Hexagon channel | 0.9 | 1.2 | 696 | 63 |
|
150*100*100 | 42*28 | ¢2.6*2.6 Square channel | 1.0 | 1.1 | 815 | 53 |
|
100*100*100 | 7*6 | ¢12 Hexagon channel | 4.0 | 4.0 | 224 | 52 |
|
100*100*100 | 31*31 | ¢2.65*2.65 Square channel | 0.55 | 0.7 | 1065 | 67 |
|
100*100*100 | 24*24 | ¢3*3 Square channel | 1.1 | 1.2 | 741 | 52 |
|
100*100*100 | 23*20 | ¢4 Hexagon channel | 1.0 | 1.2 | 608 | 84 |
|
100*100*100 | 10*9 | ¢8.5 Round channel | 2.3 | 2.5 | 280 | 51 |
|
ceramic accumulator, ceramic accumulator, ceramic accumulator, honeycomb
Alamat: tingkat 8, E1, bangunan Pinwei, jalan Dishengxi, Yizhuang, ZheJiang, China
Jenis Perniagaan: Pengeluar/Kilang, Syarikat Perdagangan
Julat Perniagaan: Elektrik & Elektronik, Peralatan & Komponen Industri, Jentera Pembuatan & Pemprosesan, Metalurgi, Mineral & Tenaga
Pensijilan Sistem Pengurusan: ISO 9001, ISO 14001
Produk Utama: Rto, Talian Salutan Warna, Talian Galvanisasi, Pisau Udara, Alat Ganti untuk Talian Pemprosesan, Coater, Peralatan Bebas, Gulung Sink, Projek Ubahsuai, Blower
Pengenalan Syarikat: ZheJiang Amazing Science & Technology Co., Ltd ialah sebuah syarikat berteknologi tinggi yang berkembang maju, terletak di ZheJiang Economic and Technological Development Area(BDA). Berpegang kepada konsep Realistik, Inovatif, Fokus dan Cekap, syarikat kami menyediakan perkhidmatan terutamanya dalam industri rawatan gas sisa (VOC) dan peralatan metalurgi China dan juga seluruh dunia. Kami mempunyai teknologi canggih dan pengalaman yang kaya dalam projek rawatan gas buangan VOC, yang rujukannya telah berjaya digunakan untuk industri salutan, getah, elektronik, percetakan, dll. Kami juga mempunyai pengumpulan teknologi selama bertahun-tahun dalam penyelidikan dan pembuatan flat talian pemprosesan keluli, dan mempunyai hampir 100 contoh aplikasi.
Syarikat kami menumpukan pada penyelidikan, reka bentuk, pengilangan, pemasangan dan pentauliahan sistem rawatan gas sisa organik VOC dan projek merombak dan mengemas kini untuk penjimatan tenaga dan perlindungan alam sekitar barisan pemprosesan keluli rata. Kami boleh menyediakan pelanggan penyelesaian lengkap untuk perlindungan alam sekitar, penjimatan tenaga, peningkatan kualiti produk dan aspek lain.
Kami juga terlibat dalam pelbagai alat ganti dan peralatan bebas untuk garis salutan warna, garis galvanizing, garis penjerukan, seperti penggelek, pengganding, penukar haba, recuperator, pisau udara, peniup, pengimpal, penyamara ketegangan, pas kulit, sambungan pengembangan, ricih, penyambung , penjahit, penunu, tiub berseri, motor gear, pengurang, dsb.
Are regenerative thermal oxidizers suitable for small-scale applications?
Regenerative thermal oxidizers (RTOs) are primarily designed for medium to large-scale industrial applications due to their specific characteristics and operational requirements. However, their suitability for small-scale applications depends on various factors:
- Process Exhaust Volume: The exhaust volume generated by the small-scale application plays a crucial role in determining the feasibility of using an RTO. RTOs are typically designed to handle high exhaust volumes, and if the exhaust volume from the small-scale application is too low, it may not be cost-effective or efficient to use an RTO.
- Capital and Operating Costs: RTOs can be expensive to purchase, install, and operate. The capital investment required for a small-scale application may not be justifiable when considering the relatively lower exhaust volumes and pollutant concentrations. Additionally, the operating costs, including energy consumption and maintenance, may outweigh the benefits for small-scale operations.
- Space Availability: RTOs require a significant amount of physical space for installation. Small-scale applications may have space limitations, making it challenging to accommodate the size and layout requirements of an RTO system.
- Regulatory Requirements: Small-scale applications may be subject to different regulatory requirements compared to larger industrial operations. The specific emission limits and air quality standards applicable to the small-scale application should be considered to ensure compliance. Alternative emission control technologies that are more suitable for small-scale applications, such as catalytic oxidizers or biofilters, may be available.
- Process Characteristics: The nature of the small-scale application’s exhaust stream, including the type and concentration of pollutants, can influence the choice of emission control technology. RTOs are most effective for applications with high concentrations of volatile organic compounds (VOCs) and hazardous air pollutants (HAPs). If the pollutant profile of the small-scale application is different, alternative technologies may be more appropriate.
While RTOs are generally more suitable for medium to large-scale applications, it’s important to assess the specific requirements, constraints, and cost-benefit analysis for each individual small-scale application before considering the use of an RTO. Alternative emission control technologies that are better suited for small-scale operations should also be evaluated.
Can regenerative thermal oxidizers handle corrosive exhaust gases?
Regenerative thermal oxidizers (RTOs) can be designed to handle corrosive exhaust gases effectively. However, the ability of an RTO to handle corrosive gases depends on several factors, including the choice of construction materials, operating conditions, and the specific corrosive nature of the exhaust gases. Here are some key points regarding the handling of corrosive exhaust gases in RTOs:
- Material Selection: The selection of appropriate construction materials is crucial when dealing with corrosive gases. RTOs can be constructed using materials that offer high resistance to corrosion, such as stainless steel, corrosion-resistant alloys (e.g., Hastelloy, Inconel), or coated materials. The choice of materials depends on the specific corrosive compounds present in the exhaust gases and their concentrations.
- Corrosion-Resistant Coatings: In addition to selecting corrosion-resistant materials, applying protective coatings can enhance the resistance of the RTO components to corrosive gases. Coatings such as ceramic coatings, epoxy coatings, or acid-resistant paints can provide an extra layer of protection against corrosion.
- Temperature Control: Maintaining appropriate operating temperatures in the RTO can help mitigate the corrosive effects of the exhaust gases. Higher temperatures can promote the decomposition of corrosive compounds, reducing their corrosive potential. Additionally, operating at higher temperatures can enhance the self-cleaning effect and prevent the accumulation of corrosive deposits on the surfaces.
- Gas Conditioning: Prior to entering the RTO, the exhaust gases can undergo gas conditioning processes to reduce their corrosive nature. This may involve pre-treatment methods such as scrubbing or neutralization to remove or neutralize corrosive compounds and reduce their concentration.
- Monitoring and Maintenance: Regular monitoring of the RTO performance and periodic maintenance are essential to ensure the effective handling of corrosive exhaust gases. Monitoring systems can track variables such as temperature, pressure, and gas composition to detect any deviations that may indicate corrosion-related issues. Proper maintenance, including cleaning and inspection of the components, helps identify and address any corrosion concerns in a timely manner.
It is important to note that the corrosiveness of exhaust gases can vary significantly depending on the specific industrial process and the pollutants involved. Therefore, when designing an RTO for handling corrosive gases, it is advisable to consult with experienced engineers or RTO manufacturers who can provide guidance on the appropriate design considerations and material selection.
By employing suitable materials, coatings, temperature control, gas conditioning, and maintenance practices, RTOs can effectively handle corrosive exhaust gases while ensuring their long-term performance and durability.
Bagaimanakah pengoksida terma regeneratif berfungsi?
Pengoksida terma regeneratif (RTO) ialah peranti kawalan pencemaran udara termaju yang beroperasi melalui proses kitaran untuk membuang sebatian organik meruap (VOC), bahan pencemar udara berbahaya (HAP) dan bahan cemar bawaan udara lain daripada gas ekzos. Berikut ialah penjelasan terperinci tentang cara RTO berfungsi:
1. Plenum Masuk: Gas ekzos yang mengandungi bahan pencemar memasuki RTO melalui plenum masuk.
2. Katil Penukar Haba: RTO mengandungi berbilang katil penukar haba yang diisi dengan media penyimpanan haba, biasanya bahan seramik atau pembungkusan berstruktur. Katil penukar haba disusun secara berpasangan.
3. Injap Kawalan Aliran: Injap kawalan aliran mengarahkan aliran udara dan mengawal arah gas ekzos melalui RTO.
4. Kebuk Pembakaran: Gas ekzos, kini diarahkan ke dalam kebuk pembakaran, dipanaskan pada suhu tinggi, biasanya antara 1400°F (760°C) dan 1600°F (870°C). Julat suhu ini memastikan pengoksidaan haba yang berkesan bagi bahan pencemar.
5. Kemusnahan VOC: Suhu tinggi dalam kebuk pembakaran menyebabkan VOC dan bahan cemar lain bertindak balas dengan oksigen, mengakibatkan penguraian haba atau pengoksidaan. Proses ini memecahkan bahan pencemar kepada wap air, karbon dioksida, dan gas tidak berbahaya yang lain.
6. Pemulihan Haba: Gas-gas panas dan tulen yang meninggalkan kebuk pembakaran melalui plenum alir keluar dan mengalir melalui katil penukar haba yang berada dalam fasa operasi yang bertentangan. Media penyimpanan haba di dalam katil menyerap haba daripada gas yang keluar, yang memanaskan gas ekzos yang masuk.
7. Penukaran Kitaran: Selepas selang masa tertentu, injap kawalan aliran menukar arah aliran udara, membenarkan katil penukar haba yang memanaskan gas masuk kini menerima gas panas daripada kebuk pembakaran. Kitaran kemudian berulang, memastikan operasi berterusan dan cekap.
Kelebihan pengoksida terma regeneratif:
RTO menawarkan beberapa kelebihan dalam kawalan pencemaran udara industri:
1. Kecekapan Tinggi: RTO boleh mencapai kecekapan pemusnahan yang tinggi, biasanya melebihi 95%, dengan berkesan menyingkirkan pelbagai jenis bahan pencemar.
2. Pemulihan Tenaga: Mekanisme pemulihan haba dalam RTO membolehkan penjimatan tenaga yang ketara. Pemanasan awal gas yang masuk mengurangkan penggunaan bahan api yang diperlukan untuk pembakaran, menjadikan RTO cekap tenaga.
3. Keberkesanan kos: Walaupun pelaburan modal awal untuk RTO boleh menjadi ketara, penjimatan kos operasi jangka panjang melalui pemulihan tenaga dan kecekapan pemusnahan yang tinggi menjadikannya penyelesaian yang kos efektif sepanjang jangka hayat sistem.
4. Pematuhan Alam Sekitar: RTO direka bentuk untuk memenuhi peraturan pelepasan yang ketat dan membantu industri mematuhi piawaian dan permit kualiti udara.
5. serba boleh: RTO boleh mengendalikan pelbagai volum ekzos proses dan kepekatan pencemar, menjadikannya sesuai untuk pelbagai aplikasi perindustrian.
Secara keseluruhannya, pengoksida terma regeneratif beroperasi dengan menggunakan pemulihan haba, pembakaran suhu tinggi, dan kawalan aliran kitaran untuk mengoksidakan bahan pencemar dengan berkesan dan mencapai kecekapan pemusnahan yang tinggi sambil meminimumkan penggunaan tenaga.
editor by CX 2023-10-21