Maklumat Asas.
Model NO.
RTO yang menakjubkan
taip
Insinerator
Penjimatan Tenaga
100
Kecekapan Tinggi
100
Operasi Mudah
100
Penyelenggaraan Rendah
100
Tanda dagangan
Bjamazing
Pakej Pengangkutan
Luar negara
Spesifikasi
111
asal usul
China
Kod HS
2221111
Penerangan Produk
RTO
Pengoksida Terma Penjanaan Semula
Compared with traditional catalytic combustion, direct thermal oxidizer, RTO has the merits of high heating efficiency, low operation cost, and the ability to treat large flux low concentration waste gas. When VOCs concentration is high, secondary heat recycle can be realized, which will greatly reduce the operation cost. Because RTO can preheat the waste gas by levels through ceramic heat accumulator, which could make the waste gas to be completely heated and cracked with no dead corner(treatment efficiency>99%),which reduce the NOX in the Exhausting gas, if the VOC density >1500mg/Nm3, when the waste gas reach cracking area, it has been heated up to cracking temperature by heat accumulator, the burner will be closed under this condition.
RTO can be devided into chamber type and rotary type according to difference operation mode. Rotary type RTO has advantages in system pressure, temperature stability, investment amount, etc
jenis RTO | Kecekapan | Perubahan tekanan (mmAq) | Saiz | (max)Treatment volume | |
Kecekapan rawatan | Kecekapan kitar semula haba | ||||
RTO jenis putar | 99 % | 97 % | 0-4 | kecil (1 time) | 50000Nm3/h |
RTO jenis tiga ruang | 99 % | 97 % | 0-10 | besar (1.5times) | 100000Nm3/h |
RTO jenis dua ruang | 95 % | 95 % | 0-20 | tengah (1.2times) | 100000Nm3/h |
Regenerative Thermal Oxidizer, Regenerative Thermal Oxidizer, Regenerative Thermal Oxidizer, Thermal Oxidizer, Thermal Oxidizer, Thermal Oxidizer, oxidizer, oxidizer, oxidizer, incinerator, incinerator, incinerator, waste gas treatment, waste gas treatment, waste gas treatment, VOC treatment, VOC treatment, VOC treatment, RTO, RTO, RTO, Rotary RTO, Rotary RTO, Rotary RTO, Chamber RTO, Chamber RTO, Chamber RTO
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.
What is the cost of installing a regenerative thermal oxidizer?
The cost of installing a regenerative thermal oxidizer (RTO) can vary significantly depending on several factors. These factors include the size and capacity of the RTO, the specific requirements of the application, site conditions, and any additional customization or engineering needed. However, it’s important to note that RTOs are generally considered a significant capital investment due to their complex design and high-performance capabilities.
Here are some cost considerations associated with installing an RTO:
- RTO Size and Capacity: The size and capacity of the RTO, typically measured in terms of exhaust flow rate and pollutant concentration, are important cost factors. Larger RTOs capable of handling higher exhaust volumes and pollutant concentrations generally have higher upfront costs compared to smaller units.
- Engineering and Customization: The engineering and customization requirements for integrating the RTO into the existing industrial process can impact the installation cost. This includes factors such as ductwork modifications, electrical connections, and any necessary process integration to ensure proper functioning of the RTO within the overall system.
- Site Preparation: The site where the RTO will be installed may require preparation to accommodate the equipment. This can involve constructing foundations, providing adequate space for the RTO and associated components, and ensuring proper access for installation and maintenance.
- Auxiliary Systems and Equipment: In addition to the RTO itself, there may be auxiliary systems and equipment required for effective operation. This can include pre-treatment systems, such as scrubbers or filters, heat recovery units, monitoring and control systems, and stack emissions monitoring equipment. The cost of these additional components should be considered in the overall installation cost.
- Installation Labor and Equipment: The cost of labor and equipment required for the installation process, including crane services and specialized contractors, should be factored into the overall cost. The complexity of the installation and any specific site challenges can influence these costs.
- Permits and Compliance: Obtaining necessary permits and complying with regulatory requirements can involve additional costs. This includes fees for environmental permits, engineering studies, emissions testing, and compliance documentation.
Due to the many variables involved, it is challenging to provide a specific cost range for installing an RTO. It is recommended to consult with reputable RTO manufacturers or engineering firms, who can assess the specific requirements of the application and provide detailed cost estimates based on the project scope.
Bagaimanakah pengoksida terma regeneratif mengendalikan pembentukan bahan zarahan dalam sistem?
Pengoksida terma penjanaan semula (RTO) menggunakan pelbagai mekanisme untuk mengendalikan pembentukan bahan zarahan dalam sistem. Bahan zarah, seperti habuk, jelaga atau zarah pepejal lain, boleh terkumpul dari semasa ke semasa dan berpotensi menjejaskan prestasi dan kecekapan RTO. Berikut ialah beberapa cara RTO mengendalikan pembentukan bahan zarahan:
- Pra-penapisan: RTO boleh menggabungkan sistem pra-penapisan, seperti siklon atau penapis beg, untuk mengeluarkan bahan zarahan yang lebih besar sebelum ia memasuki pengoksida. Pra-penapis ini menangkap dan mengumpul zarah, menghalangnya daripada memasuki RTO dan mengurangkan potensi pembentukan.
- Kesan Pembersihan Diri: RTO direka bentuk untuk mempunyai kesan pembersihan diri pada media pertukaran haba. Semasa operasi RTO, aliran gas ekzos panas melalui media boleh menyebabkan zarah terbakar atau hancur, meminimumkan pengumpulannya. Suhu tinggi dan aliran bergelora membantu mengekalkan permukaan bersih pada media, mengurangkan risiko pembentukan zarah yang ketara.
- Kitaran Pembersihan: RTO biasanya menggabungkan kitaran pembersihan sebagai sebahagian daripada operasi mereka. Kitaran ini melibatkan memasukkan aliran kecil udara bersih atau gas ke dalam sistem untuk membersihkan sebarang sisa zarahan. Udara pembersihan membantu menghilangkan atau membakar sebarang zarah yang melekat pada media, memastikan pembersihan berterusan.
- Penyelenggaraan Berkala: Penyelenggaraan tetap adalah penting untuk mengelakkan pembentukan bahan zarahan yang berlebihan dalam RTO. Aktiviti penyelenggaraan mungkin termasuk memeriksa dan membersihkan media pertukaran haba, memeriksa dan menggantikan sebarang gasket atau pengedap yang haus, dan memantau sistem untuk sebarang tanda pengumpulan zarah. Penyelenggaraan tetap membantu memastikan prestasi optimum dan meminimumkan risiko isu operasi yang berkaitan dengan pembentukan bahan zarahan.
- Pemantauan dan Penggera: RTO dilengkapi dengan sistem pemantauan yang menjejaki pelbagai parameter seperti pembezaan tekanan, suhu dan kadar aliran. Sistem ini boleh mengesan sebarang keadaan tidak normal atau penurunan tekanan yang berlebihan yang mungkin menunjukkan pembentukan bahan zarahan. Penggera dan amaran boleh dicetuskan untuk memberitahu pengendali, menggesa mereka untuk mengambil tindakan yang sewajarnya, seperti memulakan prosedur penyelenggaraan atau pembersihan.
Adalah penting untuk ambil perhatian bahawa strategi khusus yang digunakan untuk mengendalikan pembentukan bahan zarahan mungkin berbeza-beza bergantung pada reka bentuk dan konfigurasi RTO, serta ciri-ciri bahan zarahan yang dirawat. Pengilang dan pengendali RTO harus mempertimbangkan faktor-faktor ini dan melaksanakan langkah-langkah yang sesuai untuk memastikan pengurusan bahan zarahan yang berkesan dalam sistem.
Dengan menggabungkan pra-penapisan, menggunakan kesan pembersihan diri, melaksanakan kitaran pembersihan, menjalankan penyelenggaraan tetap dan menggunakan sistem pemantauan, RTO boleh mengendalikan dan mengurangkan pengumpulan bahan zarahan dengan berkesan, mengekalkan prestasi dan kecekapannya dari semasa ke semasa.
How efficient are regenerative thermal oxidizers in destroying volatile organic compounds (VOCs)?
Regenerative thermal oxidizers (RTOs) are highly efficient in destroying volatile organic compounds (VOCs) emitted from industrial processes. Here are the reasons why RTOs are considered efficient in VOC destruction:
1. Kecekapan Pemusnahan Tinggi: RTOs are known for their high destruction efficiency, typically exceeding 99%. They effectively oxidize VOCs present in the industrial exhaust streams, converting them into less harmful byproducts, such as carbon dioxide and water vapor. This high destruction efficiency ensures that the majority of VOCs are eliminated, resulting in cleaner emissions and compliance with environmental regulations.
2. Residence Time: RTOs provide a sufficiently long residence time for the combustion of VOCs. In the RTO chamber, the VOC-laden air is directed through a ceramic media bed, which acts as a heat sink. The VOCs are heated to the combustion temperature and react with the available oxygen, leading to their destruction. The design of RTOs ensures that the VOCs have ample time to undergo complete combustion before being released into the atmosphere.
3. Temperature Control: RTOs maintain the combustion temperature within a specific range to optimize VOC destruction. The operating temperature is carefully controlled based on factors such as the type of VOCs, their concentration, and the specific requirements of the industrial process. By controlling the temperature, RTOs ensure that the VOCs are efficiently oxidized, maximizing destruction efficiency while minimizing the formation of harmful byproducts, such as nitrogen oxides (NOx).
4. Heat Recovery: RTOs incorporate a regenerative heat recovery system, which enhances their overall energy efficiency. The system captures and preheats the incoming process air by utilizing the heat energy from the outgoing exhaust stream. This heat recovery mechanism minimizes the amount of external fuel required to sustain the combustion temperature, resulting in energy savings and cost-effectiveness. The heat recovery also helps maintain the high destruction efficiency of VOCs by providing a consistent and optimized operating temperature.
5. Catalyst Integration: In some cases, RTOs can be equipped with catalyst beds to further enhance VOC destruction efficiency. Catalysts can accelerate the oxidation process and lower the required operating temperature, improving the overall efficiency of VOC destruction. Catalyst integration is particularly beneficial for processes with lower VOC concentrations or when specific VOCs require lower temperatures for effective oxidation.
6. Compliance with Regulations: The high destruction efficiency of RTOs ensures compliance with environmental regulations governing VOC emissions. Many industrial sectors are subject to stringent air quality standards and emission limits. RTOs provide an effective solution for meeting these requirements by reliably and efficiently destroying VOCs, reducing their impact on air quality and public health.
In summary, regenerative thermal oxidizers (RTOs) are highly efficient in destroying volatile organic compounds (VOCs). Their high destruction efficiency, residence time, temperature control, heat recovery capabilities, optional catalyst integration, and compliance with regulations make RTOs a preferred choice for industries seeking effective and sustainable solutions for VOC abatement.
editor by CX 2023-09-25