Maklumat Asas.
taip
Insinerator
Kecekapan Tinggi
100
Less Maintenance
100
Easy for Operation
100
Penjimatan Tenaga
100
Tanda dagangan
Bjamazing
Pakej Pengangkutan
Overseas Wooden
Spesifikasi
180*24
asal usul
China
Kod HS
8416100000
Penerangan Produk
DTO system:
The full name of DTO is that the direct-fired thermal oxidation CZPT , compared with the catalytic combustion and regenerative thermal oxidation furnace, its equipment investment is less . DTO system can be designed for the entire incineration system as well as the new air system, which is more suitable for production characteristics of coating units for building materials plate.
Feature of DTO:
1. lower initial investment cost of equipment, so that the investment refund period shortened
2. for high concentrations of VOC gas, the treatment efficiency can reach to 98%.
3. for the entire incineration system, effectively reduce the unit energy consumption.
4. The cost of equipment maintenance in post period is higher
5. it is suitable for ordinary building materials production and influenced by the impact of particles in the paint
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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.
Berapa banyak tenaga yang boleh diperolehi semula oleh pengoksida terma regeneratif?
Jumlah tenaga yang boleh dipulihkan oleh pengoksida terma regeneratif (RTO) bergantung kepada beberapa faktor, termasuk reka bentuk sistem RTO, keadaan operasi dan ciri khusus gas ekzos yang dirawat. Secara amnya, RTO terkenal dengan kecekapan pemulihan tenaga yang tinggi, dan ia boleh memulihkan sebahagian besar tenaga haba daripada gas ekzos.
Berikut ialah beberapa faktor utama yang mempengaruhi potensi pemulihan tenaga RTO:
- Sistem Pemulihan Haba: Reka bentuk dan kecekapan sistem pemulihan haba dalam RTO memberi kesan ketara kepada jumlah tenaga yang boleh dipulihkan. RTO biasanya menggunakan katil media seramik atau penukar haba untuk menangkap dan memindahkan haba antara gas ekzos dan gas yang tidak dirawat yang masuk. Penukar haba yang direka dengan baik dengan luas permukaan yang besar dan kekonduksian terma yang baik boleh meningkatkan kecekapan pemulihan tenaga.
- Perbezaan Suhu: Perbezaan suhu antara gas ekzos dan gas yang tidak dirawat yang masuk menjejaskan potensi pemulihan tenaga. Semakin besar perbezaan suhu, semakin tinggi potensi pemulihan tenaga. RTO yang beroperasi pada pembezaan suhu yang lebih tinggi boleh memulihkan lebih banyak tenaga berbanding dengan yang mempunyai pembezaan yang lebih kecil.
- Kadar Aliran dan Kapasiti Haba: Kadar aliran gas ekzos dan gas yang tidak dirawat yang masuk, serta kapasiti haba masing-masing, adalah faktor penting dalam menentukan keupayaan pemulihan tenaga. Kadar aliran yang lebih tinggi dan kapasiti haba yang lebih besar menghasilkan lebih banyak haba yang tersedia untuk pemulihan.
- Spesifikasi Proses: Ciri-ciri khusus proses perindustrian dan komposisi gas ekzos yang dirawat boleh mempengaruhi potensi pemulihan tenaga. Contohnya, gas ekzos dengan kepekatan tinggi sebatian organik meruap (VOC) atau komponen mudah terbakar lain boleh memberikan potensi pemulihan tenaga yang lebih tinggi.
- Kecekapan dan Pengoptimuman Sistem: Kecekapan sistem RTO itu sendiri, termasuk kebuk pembakaran, penukar haba, dan mekanisme kawalan, juga memainkan peranan dalam pemulihan tenaga. Sistem RTO yang diselenggara dengan baik dan dioptimumkan boleh memaksimumkan potensi pemulihan tenaga.
Walaupun sukar untuk memberikan nilai berangka yang tepat untuk potensi pemulihan tenaga RTO, bukan perkara biasa bagi RTO untuk mencapai kecekapan pemulihan tenaga dalam julat 90% atau lebih tinggi. Ini bermakna mereka boleh mendapatkan semula dan menggunakan semula 90% atau lebih tenaga haba yang terkandung dalam gas ekzos, dengan ketara mengurangkan keperluan untuk sumber bahan api luaran.
Adalah penting untuk ambil perhatian bahawa pemulihan tenaga sebenar yang dicapai oleh RTO akan bergantung pada keadaan operasi tertentu, kepekatan pencemar dan faktor lain yang dinyatakan di atas. Berunding dengan pengilang RTO atau menjalankan analisis tenaga terperinci boleh memberikan anggaran yang lebih tepat tentang potensi pemulihan tenaga untuk sistem RTO tertentu.
Can regenerative thermal oxidizers be remotely controlled and monitored?
Yes, regenerative thermal oxidizers (RTOs) can be remotely controlled and monitored using advanced automation and control systems. Remote control and monitoring capabilities offer several benefits in terms of operational efficiency, maintenance, and troubleshooting. Here are some key points regarding the remote control and monitoring of RTOs:
- Automation Systems: RTOs can be integrated with automation systems that enable remote control and monitoring. These systems utilize programmable logic controllers (PLCs), distributed control systems (DCS), or other similar technologies to manage and optimize the operation of the RTO.
- Remote Control: With remote control capabilities, operators can adjust and modify the operating parameters of the RTO from a central control room or even remotely through secure network connections. This allows for convenient and efficient control of the RTO, making it easier to optimize performance, adjust settings, and respond to changing process conditions.
- Remote Monitoring: Remote monitoring systems enable real-time monitoring of various parameters and performance indicators of the RTO. These systems can provide insights into the operational status, temperature profiles, gas flow rates, pressure differentials, and other critical variables. Operators can access this information remotely, allowing them to assess the system’s performance, identify potential issues, and make informed decisions.
- Alarms and Notifications: Remote monitoring systems can be programmed to generate alarms and notifications based on predefined conditions or thresholds. This allows operators to receive immediate alerts in case of deviations from normal operating conditions or the occurrence of any critical events. Prompt notifications facilitate timely response and troubleshooting, minimizing downtime and potential risks.
- Data Logging and Analysis: Remote control and monitoring systems often include data logging capabilities, which capture historical data regarding the RTO’s operation and performance. This data can be analyzed to identify trends, evaluate efficiency, and optimize the system’s operation over time. It also helps in compliance reporting and maintenance planning.
- Integration with SCADA Systems: RTOs can be integrated with supervisory control and data acquisition (SCADA) systems, which provide a centralized platform for monitoring and controlling multiple processes and equipment within a facility. Integration with SCADA systems allows for a comprehensive overview of the entire operation and facilitates coordinated control and monitoring of various systems.
It is important to ensure that the remote control and monitoring systems are implemented with appropriate cybersecurity measures to protect against unauthorized access or cyber threats. Manufacturers of RTOs often provide guidance and recommendations for implementing secure remote access to their systems.
Overall, the remote control and monitoring capabilities of RTOs enhance operational efficiency, enable proactive maintenance, and facilitate faster response times, contributing to the effective and optimized operation of the air pollution control system.
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 by CX 2023-09-12