Maklumat Asas.
Model NO.
RTO
taip
Instrumen Pemantauan Alam Sekitar
Fungsi Utama
Penyingkiran Gas Sisa
Permohonan
Industri Kimia
Jenama
Raidsant
Kecekapan Bersih
99.8%
keadaan
baru
Tanda dagangan
Raidsant
Pakej Pengangkutan
Filem Dibalut
asal usul
ZheJiang China
Penerangan Produk
HangZhou Raidsant Machinery Co.;,; Ltd.; mengambil jurusan dalam membangunkan dan mengeluarkan mesin pelletizing penyejuk serbuk inovatif dan mesin rawatan gas sisa industri yang berkaitan.; Dengan sejarah pengeluaran hampir 20 tahun,; kami mempunyai pasaran yang baik di lebih daripada 20 wilayah di China,; dan beberapa produk kami telah dieksport ke Arab Saudi, Singapura, Mexico,; Brazil,;Sepanyol,; Amerika,; Rusia dan Korea,; dan lain-lain;
Spesifikasi:;
* Lebih padat daripada kemudahan sedia ada
* Kos operasi rendah
* Jangka hayat kemudahan yang panjang
* Tiada perubahan tekanan
Tujuan:;
Sistem penjimatan tenaga yang membakar sebatian organik meruap (VOC); dan sisa gas dengan menggunakan haba,; dan ia mengumpul lebih 99.;8% haba buangan gas ekzos dengan menggunakan bahan penjana semula seramik (mangkin); dengan luas permukaan yang besar dan kehilangan tekanan rendah.;
Permohonan:;
1.; Proses pengeringan mengecat
2.; proses percetakan logam
3.; proses pengeringan gentian
4.; proses pita pelekat
5.; proses rawatan sisa
6.; proses pembuatan semikonduktor
7.; asap,; proses kuih-muih dan membakar
8.; proses petrokimia,;
9.; proses pembuatan ubat dan makanan,;
10.; proses penjanaan VOC yang lain
Kelebihan:;
* Lebih padat daripada kemudahan sedia ada
* Tiada perubahan tekanan
* Kadar pemulihan haba tinggi (lebih 95%);
* Rawatan VOC yang sempurna (lebih 99.;8%);
* Jangka hayat kemudahan yang panjang
* Kos operasi rendah
* Boleh dibuat dalam bulatan atau segi empat
Penerangan Umum dan Ciri:;
1.; Prinsip operasi
Kaedah pengendalian yang menukar nyahcas secara berterusan dengan memutarkan Injap Putar
2.; Perubahan Tekanan Proses
Tiada perubahan tekanan kerana arah angin berubah mengikut susunan mengikut putaran Injap Putar
3.; Kos Pelaburan
Sekitar 70% daripada Jenis Katil
4.; Ruang Pemasangan
Ia adalah kapal tunggal jadi ia padat dan memerlukan ruang pemasangan yang kurang.;
5.; Penyelenggaraan
Mudah untuk menyelenggaranya kerana Rotary Valve adalah satu-satunya 1 bahagian yang bergerak.;
Bahagian pengedap Rotary Valve jarang haus kerana ia berputar pada kelajuan rendah.;
6.; Kestabilan
Tiada risiko dalam proses kerana ia sentiasa dibuka walaupun Rotary Valve menghadapi masalah.;
7.; Kecekapan Rawatan
Kecekapan rawatan dikekalkan kerana bahagian pengedap jarang haus walaupun ia dikendalikan untuk masa yang lama.;
Alamat: No.3, Jalan Tengah Zhenxin, Zon Pembangunan Ekonomi, HangZhou, ZheJiang
Jenis Perniagaan: Pengeluar/Kilang, Syarikat Perdagangan
Julat Perniagaan: Bahan Kimia, Elektrik & Elektronik, Jentera Pembuatan & Pemprosesan, Keselamatan & Perlindungan
Pensijilan Sistem Pengurusan: ISO 9001
Produk Utama: Pelletizer, Flaker, Pastillator, Granulator, Chemical Pelletizer, Vocs
Pengenalan Syarikat: HangZhou Raidsant Machinery Co., Ltd., sebelum ini dikenali sebagai Kilang Jentera Plastik HangZhou Xinte mengambil jurusan dalam menghasilkan jentera kitar semula plastik yang inovatif. Dengan pengalaman hampir 20 tahun, kami mempunyai pasaran yang baik di 20 wilayah di China, dan beberapa produk kami telah dieksport ke Indonesia, Rusia dan Vietnam, dsb. Produk utama kami termasuk DZ Type Pastillator, barisan kitar semula tayar sisa, Big Caliber Plastic Talian kitar semula mesin pencincang paip, mesin salutan timah penyepuhlindapan berterusan, PET jenis QX, Talian basuh PE & badan kapal, penghancur kitar semula plastik SDP dua rel, pemotongan panas SJ unit pembuatan butiran, barisan produk tiub PVC (cinquefoil), barisan produk bahan PVC berbentuk ganjil untuk pintu dan tingkap, barisan produk butiran dalam air dan Mesin pencincang untuk plastik dan kitar semula. Kami memperoleh 5 paten teknikal.
Syarikat kami memberi penekanan kepada pembinaan semula teknikal, mengimport teknologi canggih dari dalam dan luar negara, dan membangunkan produk baharu secara berterusan. Prinsip kami adalah mencabar untuk kualiti tinggi, menawarkan produk terbaik. Kami sedang berusaha untuk merealisasikan slogan kami. Memuaskan pelanggan kami adalah usaha kami yang kekal.
Kami sedang mencari pelanggan atau ejen luar negara. Jika anda berminat dengan cadangan kami, sila beritahu kami produk mana yang paling mungkin menarik minat anda atau pelanggan anda. Kami sepatutnya sangat berterima kasih jika anda memberi kami beberapa idea tentang prospek pasaran untuk produk kami. Kami berharap untuk mendengar maklumat yang menggalakkan daripada anda tidak lama lagi! Adalah menjadi matlamat kami bahawa kami berharap kami dapat membina hubungan yang baik dengan anda sekarang atau dalam masa terdekat. Sila jangan teragak-agak untuk menghubungi kami jika anda mempunyai sebarang pertanyaan atau permintaan.
Kami juga mengalu-alukan kedatangan anda ke syarikat kami untuk membincangkan perniagaan dan berunding dengan kami. Untuk meluaskan lagi pasaran dan pelanggan kami, syarikat kami mengalu-alukan pelanggan dari dalam dan luar negara dalam isyarat jenama baharu berdasarkan konsep pengurusan baharu sepenuhnya—kualiti, penghormatan, perkhidmatan. Kami sedang mencari sistem kualiti pengurusan ISO 90001 untuk memenuhi keperluan pelanggan kami!
What is the role of heat recovery in a regenerative thermal oxidizer?
Heat recovery plays a crucial role in the operation of a regenerative thermal oxidizer (RTO) by improving its energy efficiency and reducing fuel consumption. The primary function of heat recovery in an RTO is to capture and transfer heat from the treated exhaust gases to the incoming untreated gases, minimizing the need for additional external heating.
Here’s a closer look at the role of heat recovery in an RTO:
- Energy Efficiency: RTOs are designed to achieve high thermal efficiency by utilizing the heat recovery principle. The heat recovery system consists of heat exchangers or beds filled with ceramic media, such as structured ceramic blocks or random ceramic saddles. These beds alternate between the exhaust gas flow and the incoming untreated gas flow.
- Heat Transfer Process: During operation, the hot exhaust gases from the industrial process flow through one bed of the heat exchanger, transferring heat to the ceramic media. The media absorbs the heat, and the temperature of the exhaust gases decreases. Simultaneously, the cooler incoming untreated gas flows through the other bed, where it absorbs the heat stored in the media, preheating the gas before it enters the combustion chamber.
- Bed Switching: The direction of gas flow through the beds is periodically switched using valves or dampers. This switching operation allows the RTO to alternate between different beds, ensuring continuous heat recovery and thermal oxidation of the pollutants. By efficiently recovering and reusing heat from the exhaust gases, the RTO reduces the amount of external fuel needed to maintain the required operating temperature.
- Reduction in Fuel Consumption: The heat recovery mechanism in an RTO significantly reduces the fuel consumption compared to other types of oxidizers. The preheating of the incoming untreated gas stream reduces the energy required to raise the temperature of the gas to the combustion temperature, resulting in lower fuel usage and operational costs.
- Economic and Environmental Benefits: Heat recovery in RTOs offers economic benefits by reducing energy costs and improving the overall sustainability of the facility. By minimizing fuel consumption, heat recovery contributes to a lower carbon footprint and helps meet environmental goals by reducing greenhouse gas emissions associated with the combustion process.
The effectiveness of heat recovery in an RTO depends on factors such as the design of the heat exchanger, the choice of ceramic media, the flow rates of the exhaust gases and incoming untreated gas, and the temperature differential between the two streams. Proper sizing and optimization of the heat recovery system are essential to ensure efficient heat transfer and maximize energy savings.
Overall, heat recovery is a key component in the design of an RTO, allowing for improved energy efficiency, reduced fuel consumption, and environmental sustainability.
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.
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 Dream 2024-10-11