معلومات اساسية.
نموذج رقم.
RTO مذهلة
يكتب
محرقة
توفير الطاقة
100
سهلة التشغيل
100
كفاءة عالية
100
صيانة أقل
100
العلامة التجارية
بجامازينج
حزمة النقل
خشب خارجي
مواصفة
180*24
أصل
الصين
رمز النظام المنسق
8416100000
وصف المنتج
رتو
مؤكسد حراري متجدد
بالمقارنة مع الاحتراق الحفزي التقليدي، فإن المؤكسد الحراري المباشر؛ يتميز RTO بكفاءة تسخين عالية، وتكلفة تشغيل منخفضة، والقدرة على معالجة غاز النفايات منخفض التركيز وتدفق كبير؛ عندما يكون تركيز المركبات العضوية المتطايرة مرتفعًا، يمكن تحقيق إعادة تدوير الحرارة الثانوية، مما يقلل بشكل كبير من تكلفة التشغيل؛ لأن RTO يمكنه تسخين غاز النفايات مسبقًا بمستويات من خلال مجمع الحرارة الخزفي، مما قد يجعل غاز النفايات ساخنًا تمامًا ومتشققًا بدون زاوية ميتة (كفاءة المعالجة> 99٪)؛ مما يقلل من أكاسيد النيتروجين في غاز العادم؛ إذا كانت كثافة المركبات العضوية المتطايرة> 1500 مجم / متر مكعب؛ عندما يصل غاز النفايات إلى منطقة التكسير، يتم تسخينه إلى درجة حرارة التكسير بواسطة مجمع الحرارة، سيتم إغلاق الموقد في هذه الحالة.
يمكن تقسيم RTO إلى نوع الغرفة والنوع الدوار وفقًا لاختلاف وضع التشغيل. يتمتع النوع الدوار RTO بمزايا في ضغط النظام، واستقرار درجة الحرارة، ومقدار الاستثمار، وما إلى ذلك.
Recuperative thermal oxidizer:;
Compared with the catalytic combustion and regenerative thermal oxidation furnace,; recuperative thermal oxidizer investment is less .; Recuperative thermal oxidizer 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.;
Burning type | Treatment system | كفاءة | Advantage | Disadvantage | |
Treating efficiency | Heat recycle rate | ||||
High temperature incineration | Regenerative-RTO | 99% | 80-97 % | Good product quality,; low energy consumption,; low cost in operational and minimum maintenance | Initial investment is somewhat of higher |
Recuperative-RTO | 98 % | 40-70 % | When adopt full incinerating design,; the energy consumption is low | High temperature joint interface is easy to broken,; maintenance cost is high | |
Low temperature incineration | Catalyzing-RCO | 98 % | 70-85 % | Low investment,; low energy consumption | VOC concentration has to be controlled strictly,; catalyst need to be changed regularly |
Active carbon absorption | 90 % | Lower investment,; self aggregation waste gas can be treated | Treatment efficiency is low,; activated carbon particle need to be replaced regularly |
Regenerative Thermal Oxidizer,; Regenerative Thermal Oxidizer,; Recuperative Thermal Oxidizer,; recuperative Thermal Oxidizer,; recuperative 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,; RTO,; RTO,; RTO
العنوان: الطابق الثامن، E1، مبنى Pinwei، طريق Dishengxi، Yizhuang، ZheJiang، الصين
نوع العمل: مصنع/شركة تصنيع، شركة تجارية
نطاق العمل: الكهرباء والإلكترونيات، المعدات والمكونات الصناعية، آلات التصنيع والمعالجة، المعادن والطاقة
شهادة نظام الإدارة: ISO 9001، ISO 14001
المنتجات الرئيسية: Rto، خط طلاء الألوان، خط الجلفنة، سكين الهواء، قطع غيار لخط المعالجة، الطلاء، المعدات المستقلة، بكرة الحوض، مشروع التجديد، المنفاخ
مقدمة عن الشركة: شركة ZheJiang Amazing Science & Technology Co., Ltd هي شركة مزدهرة عالية التقنية، تقع في منطقة التنمية الاقتصادية والتكنولوجية في ZheJiang (BDA). تلتزم شركتنا بمفهوم الواقعية والإبداع والتركيز والكفاءة، وتخدم بشكل أساسي صناعة معالجة غازات النفايات (VOCs) والمعدات المعدنية في الصين وحتى العالم أجمع. لدينا تكنولوجيا متقدمة وخبرة غنية في مشروع معالجة غازات النفايات VOCs، والذي تم تطبيق مرجعه بنجاح في صناعة الطلاء والمطاط والإلكترونيات والطباعة وما إلى ذلك. لدينا أيضًا سنوات من تراكم التكنولوجيا في البحث وتصنيع خط معالجة الفولاذ المسطح، ونمتلك ما يقرب من 100 مثال للتطبيق.
تركز شركتنا على البحث والتصميم والتصنيع والتركيب والتشغيل لنظام معالجة غاز النفايات العضوية المتطايرة ومشروع تجديد وتحديث خط معالجة الفولاذ المسطح لتوفير الطاقة وحماية البيئة. يمكننا تزويد العملاء بالحلول الكاملة لحماية البيئة وتوفير الطاقة وتحسين جودة المنتج وغيرها من الجوانب.
نحن نشارك أيضًا في قطع الغيار المختلفة والمعدات المستقلة لخط طلاء الألوان، خط الجلفنة، خط التخليل، مثل الأسطوانة، المقرن، المبادل الحراري، جهاز الاسترداد، سكين الهواء، المنفاخ، اللحام، مستوي التوتر، ممر الجلد، مفصل التمدد، القص، الموصل، الخياطة، الموقد، الأنبوب المشع، محرك التروس، المخفض، إلخ.
Can regenerative thermal oxidizers handle variable pollutant concentrations?
Regenerative thermal oxidizers (RTOs) are designed to handle variable pollutant concentrations effectively. They are capable of accommodating fluctuations in pollutant concentrations without significant adverse effects on their performance or efficiency. The ability of RTOs to handle variable pollutant concentrations is one of the advantages that make them suitable for a wide range of industrial applications.
Here are some key points to consider regarding the capability of RTOs to handle variable pollutant concentrations:
- كفاءة تدمير عالية: RTOs are known for their high destruction efficiency, which refers to their ability to effectively destroy or oxidize the pollutants present in the exhaust gases. The combustion chamber within the RTO is designed to maintain a sufficiently high temperature to ensure complete oxidation of the pollutants, regardless of their concentration.
- مدة الاحتفاظ: RTOs are designed with a sufficient residence or retention time within the combustion chamber. This allows the exhaust gases to spend enough time in the high-temperature zone, ensuring that even pollutants with varying concentrations are adequately treated and oxidized.
- استعادة الحرارة: The heat recovery system in an RTO, typically using ceramic media beds or heat exchangers, plays a crucial role in handling variable pollutant concentrations. The heat recovery system helps maintain the required temperature and provides thermal energy to sustain the combustion process, even during periods of low pollutant concentrations.
- Dynamic Operation: RTOs are designed to operate dynamically, meaning they can adjust their operating parameters to accommodate changes in pollutant concentrations. They can modulate variables such as the flow rates of the exhaust gases and incoming untreated gases, the temperature setpoints, and the switching frequency of the beds to optimize performance under varying pollutant loads.
- Monitoring and Controls: RTOs are equipped with advanced monitoring and control systems that continuously monitor pollutant concentrations, temperature, and other relevant parameters. These systems enable real-time adjustments and optimization of the RTO operation to ensure effective treatment of variable pollutant concentrations.
While RTOs can handle variable pollutant concentrations, it’s important to note that extreme or highly fluctuating pollutant concentrations may require additional considerations. In some cases, pre-treatment methods such as dilution or conditioning of the exhaust gases may be employed to ensure optimal performance of the RTO.
Overall, RTOs are versatile and reliable systems that can effectively handle variable pollutant concentrations, providing efficient and consistent treatment of industrial emissions.
How do regenerative thermal oxidizers compare to biofilters in terms of performance?
Regenerative thermal oxidizers (RTOs) and biofilters are both widely used technologies for the treatment of air pollutants, but they differ in their operating principles and performance characteristics. Here’s a comparison of RTOs and biofilters in terms of their performance:
Performance Aspect | Regenerative Thermal Oxidizers (RTOs) | Biofilters |
---|---|---|
Emission Removal Efficiency | RTOs are highly efficient in removing volatile organic compounds (VOCs) and hazardous air pollutants (HAPs). They can achieve destruction efficiencies above 95% for these pollutants. | Biofilters also have the potential to achieve high removal efficiencies for certain VOCs and odorous compounds. However, their performance can vary depending on the specific contaminants and the microbial activity in the biofilter. |
Applicability | RTOs are versatile and can handle a wide range of pollutants, including VOCs, HAPs, and odorous compounds. They are well-suited for high flow rates and high pollutant concentrations. | Biofilters are particularly effective in treating odorous compounds and certain VOCs. They are commonly used in applications such as wastewater treatment facilities, composting operations, and agricultural facilities. |
Energy Consumption | RTOs require a significant amount of energy to reach and maintain high operating temperatures for oxidation. They rely on fuel combustion or external heat sources for the thermal energy needed. | Biofilters are considered low energy consumption systems as they rely on the natural biological activity of microorganisms to break down pollutants. They generally do not require external heating or fuel consumption. |
Maintenance | RTOs typically require regular maintenance and monitoring to ensure proper operation. This includes inspections, cleaning of heat exchange media, and potential repairs or replacements of components. | Biofilters require periodic maintenance to optimize their performance. This may involve monitoring and adjusting moisture levels, controlling temperature, and occasionally replacing the filter media or adding microbial inoculants. |
Capital and Operating Costs | RTOs generally have higher capital costs compared to biofilters due to their complex design, specialized materials, and energy-intensive operation. Operating costs include fuel consumption or electricity for heating. | Biofilters generally have lower capital costs compared to RTOs. They are simpler in design and do not require fuel consumption. However, operating costs may include periodic replacement of filter media and potential odor control measures. |
It is important to note that the selection of the appropriate technology depends on various factors such as the specific pollutants to be treated, process conditions, regulatory requirements, and site-specific considerations. Consulting with environmental engineers or air pollution control experts can help determine the most suitable technology for a particular application.
In summary, RTOs and biofilters offer different performance characteristics, with RTOs excelling in high removal efficiencies, versatility, and suitability for high-flow and high-concentration applications, while biofilters are effective for odorous compounds, have low energy consumption, and generally lower capital costs.
What is the lifespan of a regenerative thermal oxidizer?
The lifespan of a regenerative thermal oxidizer (RTO) can vary depending on several factors, including the quality of the equipment, proper maintenance, operating conditions, and technological advancements. Generally, a well-designed and properly maintained RTO can have a lifespan ranging from 15 to 25 years or more.
Here are some factors that can influence the lifespan of an RTO:
- Quality of Construction: RTOs constructed with high-quality materials, such as corrosion-resistant alloys and refractory linings, tend to have a longer lifespan. Robust construction ensures durability and resistance to the harsh operating conditions often encountered in industrial processes.
- Maintenance Practices: Regular and proactive maintenance is crucial to maximize the lifespan of an RTO. This includes periodic inspections, cleaning and replacement of components, such as valves, dampers, and ceramic media beds, and monitoring of operating parameters. Adequate maintenance helps prevent premature equipment failure and ensures optimal performance.
- Operating Conditions: The operating conditions of the RTO, such as temperature, gas composition, and particulate loading, can affect its lifespan. Operating the RTO within its design parameters and avoiding excessive thermal or chemical stresses can contribute to a longer lifespan.
- Technological Advancements: Over time, technological advancements may lead to the introduction of more efficient and durable components or improvements in the overall design of RTOs. Upgrading or retrofitting an older RTO with newer technologies can extend its lifespan and enhance its performance.
- Environmental Factors: Environmental factors, such as exposure to corrosive gases, high humidity, or harsh climates, can impact the lifespan of an RTO. Proper design considerations and protective measures, such as corrosion-resistant coatings or insulation, can mitigate these effects and prolong the equipment’s lifespan.
It is important to note that the lifespan mentioned is a general estimate and can vary depending on the specific circumstances. Regular inspections, maintenance, and adherence to manufacturer’s guidelines are essential to ensure the longevity and reliable operation of an RTO.
editor by Dream 2024-05-07