Yandex Metrika

Maklumat Asas.

Model NO.

RTO yang menakjubkan

taip

Insinerator

Penyelenggaraan Rendah

100

Operasi Mudah

100

Penjimatan Tenaga

100

Kecekapan Tinggi

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  KecekapanPerubahan tekanan
(mmAq)
Saiz(max)Treatment volume  
 
Kecekapan rawatan Kecekapan kitar semula haba  
RTO jenis putar99 %97 %0-4kecil
(1 time)
50000Nm3/h  
RTO jenis tiga ruang99 %97 %  0-10besar
(1.5times)
100000Nm3/h
RTO jenis dua ruang95 %95 %0-20tengah
(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.

pengoksida terma regeneratif

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.

pengoksida terma regeneratif

How do regenerative thermal oxidizers handle variations in pollutant composition?

Regenerative thermal oxidizers (RTOs) are designed to handle variations in pollutant composition effectively. RTOs are commonly used for treating volatile organic compounds (VOCs) and hazardous air pollutants (HAPs) emitted from various industrial processes. Here are some key points regarding how RTOs handle variations in pollutant composition:

  • Thermal Oxidation Process: RTOs utilize a thermal oxidation process to eliminate pollutants. The process involves raising the temperature of the exhaust gas to a level where the pollutants react with oxygen and are oxidized to carbon dioxide (CO2) and water vapor. This high-temperature oxidation process is effective in treating a wide range of pollutants, regardless of their specific composition.
  • Wide Range of Pollutant Compatibility: RTOs are designed to handle a broad spectrum of pollutants, including VOCs and HAPs with varying chemical compositions. The high operating temperatures in the RTO, typically between 1400°F to 1600°F (760°C to 870°C), ensure that a wide range of organic compounds can be effectively oxidized, regardless of their molecular structure or chemical makeup.
  • Residence Time and Dwell Time: RTOs provide sufficient residence time and dwell time for the exhaust gas within the oxidizer. The exhaust gas is directed through a heat exchange system, where it passes through ceramic media beds or heat exchange media. These media beds absorb the heat from the high-temperature combustion chamber and transfer it to the incoming exhaust gas. The extended residence time and dwell time ensure that even complex or less reactive pollutants have enough contact time with the elevated temperature to be effectively oxidized.
  • Pemulihan Haba: RTOs incorporate heat recovery systems that maximize thermal efficiency. The heat exchangers within the RTO capture and transfer heat from the outgoing exhaust gas to the incoming process stream. This heat exchange process helps maintain the high operating temperatures required for effective pollutant destruction while minimizing the energy consumption of the system. The ability to recover and reuse heat also contributes to the RTO’s ability to handle variations in pollutant composition.
  • Advanced Control Systems: RTOs employ advanced control systems to monitor and optimize the oxidation process. These control systems continuously monitor parameters such as temperature, flow rates, and pollutant concentrations. By adjusting the operating conditions in response to variations in pollutant composition, the control systems ensure optimal performance and maintain high destruction efficiencies.

In summary, RTOs handle variations in pollutant composition by utilizing a thermal oxidation process, accommodating a wide range of pollutants, providing sufficient residence time and dwell time, incorporating heat recovery systems, and employing advanced control systems. These features allow RTOs to effectively treat emissions with different pollutant compositions, ensuring high destruction efficiencies and compliance with environmental regulations.

pengoksida terma regeneratif

Apakah faedah menggunakan pengoksida terma regeneratif?

Pengoksida terma regeneratif (RTO) ialah teknologi kawalan pencemaran udara termaju yang digunakan dalam proses perindustrian untuk membuang sebatian organik meruap (VOC), bahan pencemar udara berbahaya (HAP) dan pelepasan berbahaya yang lain. Penggunaan RTO menawarkan beberapa faedah:

1. Kecekapan Pemusnahan Tinggi: RTO terkenal dengan kecekapan pemusnahan yang tinggi, biasanya mencapai lebih 99% pemusnahan VOC dan HAP. Keberkesanan ini memastikan bahawa sebahagian besar bahan pencemar berbahaya dihapuskan, menghasilkan pelepasan udara yang lebih bersih dan pematuhan kepada peraturan alam sekitar.

2. Kecekapan Tenaga: RTO direka bentuk untuk menjadi sistem cekap tenaga. Mereka menggunakan proses penjanaan semula yang memulihkan dan memanaskan udara proses masuk dengan menangkap dan memindahkan haba daripada aliran ekzos yang keluar. Mekanisme pemulihan haba ini mengurangkan penggunaan tenaga sistem dengan ketara, menjadikan RTO sebagai penyelesaian kos efektif untuk kawalan pencemaran udara.

3. Penjimatan Kos: Kecekapan tenaga RTO diterjemahkan kepada penjimatan kos untuk operasi perindustrian. Dengan mengurangkan penggunaan bahan api dan kos operasi, perniagaan boleh mencapai faedah kewangan jangka panjang. Selain itu, kecekapan pemusnahan tinggi RTO menghapuskan keperluan untuk peralatan kawalan pencemaran hiliran tambahan, mengurangkan perbelanjaan modal dan penyelenggaraan.

4. Kelestarian Diri Terma: RTO mempunyai keupayaan unik untuk mengekalkan suhu operasinya tanpa memerlukan sumber bahan api luaran. Setelah sistem mencapai suhu operasi yang dikehendaki, proses pemulihan haba mengekalkan tenaga haba yang diperlukan untuk pengoksidaan. Kemampanan diri ini mengurangkan pergantungan pada bahan api luaran, meningkatkan kebolehpercayaan sistem dan meminimumkan masa henti operasi.

5. Fleksibiliti dan Kebolehsuaian: RTO adalah serba boleh dan boleh direka bentuk untuk menampung pelbagai volum ekzos proses dan kepekatan pencemar. Mereka boleh mengendalikan kadar aliran yang berbeza-beza, suhu salur masuk, dan beban pencemar, menjadikannya sesuai untuk aplikasi industri yang pelbagai. RTO boleh disesuaikan untuk memenuhi keperluan proses tertentu, memastikan prestasi optimum dan kebolehsuaian.

6. Keperluan Penyelenggaraan Rendah: RTO terkenal dengan keperluan penyelenggaraan yang rendah. Ketiadaan bahagian bergerak yang kompleks dan sifat mampan diri sistem menyumbang kepada keperluan penyelenggaraan yang minimum. Pemeriksaan rutin, pemeriksaan berkala dan penyelenggaraan pencegahan asas biasanya mencukupi untuk memastikan RTO beroperasi dengan cekap. Ini mengurangkan masa henti dan kos penyelenggaraan untuk kemudahan industri.

7. Pematuhan Alam Sekitar: Dengan menyingkirkan VOC, HAP dan bahan pencemar lain secara berkesan, RTO membolehkan kemudahan industri mencapai dan mengekalkan pematuhan terhadap peraturan alam sekitar. Ini memastikan bahawa pelepasan daripada operasi pembuatan atau proses memenuhi piawaian kualiti udara yang diperlukan, melindungi alam sekitar dan masyarakat sekitar.

Faedah menggunakan pengoksida terma regeneratif, termasuk kecekapan pemusnahan yang tinggi, kecekapan tenaga, penjimatan kos, kemampanan diri terma, fleksibiliti, keperluan penyelenggaraan yang rendah dan pematuhan alam sekitar, menjadikannya pilihan utama bagi banyak industri yang mencari kawalan pencemaran udara yang berkesan dan mampan. penyelesaian.

China berkualiti tinggi Jenis Katil/Jenis Bilik Rto Regenerative Thermal Oxidizer
editor by CX 2023-09-22

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