معلومات اساسية.
نموذج رقم.
RTO مذهلة
يكتب
محرقة
كفاءة عالية
100
صيانة أقل
100
سهلة التشغيل
100
توفير الطاقة
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، المؤكسد الحراري المباشر، يتمتع RTO بمزايا كفاءة التسخين العالية، وتكلفة التشغيل المنخفضة، 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. نظرًا 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 ظل هذه الحالة.
يمكن تقسيم RTO إلى نوع الغرفة والنوع الدوار وفقًا لاختلاف وضع التشغيل. يتميز النوع الدوار RTO بمزايا في ضغط النظام واستقرار درجة الحرارة ومقدار الاستثمار وما إلى ذلك.
أنواع RTO | كفاءة | تغير الضغط (مليمتر مكعب) | مقاس | (الحد الأقصى) حجم العلاج | |
كفاءة العلاج | كفاءة إعادة تدوير الحرارة | ||||
نوع دوار RTO | 99 % | 97 % | 0-4 | small(1 time) | 50000 نيوتن متر مكعب/ساعة |
نوع RTO ذو ثلاث غرف | 99 % | 97 % | 0-10 | كبير (1.5 مرة) | 100000 نيوتن متر مكعب/ساعة |
نوع RTO ذو غرفتين | 95 % | 95 % | 0-20 | middle(1.2times) | 100000 نيوتن متر مكعب/ساعة |
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, 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.
How do regenerative thermal oxidizers compare to catalytic oxidizers?
Regenerative thermal oxidizers (RTOs) and catalytic oxidizers are both effective technologies used for controlling air emissions from industrial processes. While they serve a similar purpose, there are significant differences in their operation, efficiency, and applicability.
Here is a comparison between RTOs and catalytic oxidizers:
Regenerative Thermal Oxidizers (RTOs) | Catalytic Oxidizers |
---|---|
Operation: | Operation: |
RTOs achieve emission control through high-temperature combustion without the use of a catalyst. They rely on the thermal oxidation process, where VOCs and other pollutants in the exhaust gas are oxidized at high temperatures (typically between 1,400°F and 1,600°F) in the presence of excess oxygen. | Catalytic oxidizers utilize a catalyst (usually a precious metal, such as platinum, palladium, or rhodium) to facilitate the oxidation of VOCs and other pollutants at lower temperatures compared to RTOs. The catalyst lowers the activation energy required for the oxidation reaction, enabling it to occur at lower temperatures (around 600°F to 900°F). |
Efficiency: | Efficiency: |
RTOs are known for their high thermal efficiency. They utilize a regenerative heat exchanger system that recovers and transfers heat from the treated exhaust gases to the incoming untreated gases, significantly reducing fuel consumption. This heat recovery mechanism makes RTOs energy-efficient. | Catalytic oxidizers are generally more energy-efficient than RTOs because they operate at lower temperatures. The catalyst facilitates the oxidation reaction, allowing it to occur at lower temperatures, which reduces the energy requirement for heating the exhaust gas. |
Applicability: | Applicability: |
RTOs are particularly suitable for applications where the pollutant concentrations are high, or where there is a wide variation in flow rates or pollutant concentrations. They are commonly used for the control of volatile organic compounds (VOCs) and hazardous air pollutants (HAPs) in various industries, including chemical manufacturing, printing, coating, and pharmaceuticals. | Catalytic oxidizers are often preferred in applications where the pollutant concentrations are relatively low and relatively constant. They are effective for VOC control in applications such as automotive painting, printing, and food processing, where the VOC concentrations can be lower and more consistent. |
Limitations: | Limitations: |
RTOs have higher capital costs compared to catalytic oxidizers due to their complex design and heat recovery system. They also have a higher operating temperature, which may limit their applicability in certain processes or require additional heat recovery systems. | Catalytic oxidizers can be sensitive to poisons or contaminants in the exhaust gas that can deactivate or degrade the catalyst over time. Certain compounds, such as sulfur, silicones, or halogenated compounds, can potentially poison the catalyst, reducing its effectiveness and requiring periodic catalyst replacement or regeneration. |
When selecting between an RTO and a catalytic oxidizer, it is essential to consider the specific requirements of the application, including pollutant concentrations, flow rates, temperature requirements, and cost considerations. Consulting with environmental engineering professionals or equipment manufacturers can help determine the most suitable technology for a particular emission control need.
Can regenerative thermal oxidizers handle corrosive exhaust gases?
Regenerative thermal oxidizers (RTOs) can be designed to handle corrosive exhaust gases effectively. However, the ability of an RTO to handle corrosive gases depends on several factors, including the choice of construction materials, operating conditions, and the specific corrosive nature of the exhaust gases. Here are some key points regarding the handling of corrosive exhaust gases in RTOs:
- Material Selection: The selection of appropriate construction materials is crucial when dealing with corrosive gases. RTOs can be constructed using materials that offer high resistance to corrosion, such as stainless steel, corrosion-resistant alloys (e.g., Hastelloy, Inconel), or coated materials. The choice of materials depends on the specific corrosive compounds present in the exhaust gases and their concentrations.
- Corrosion-Resistant Coatings: In addition to selecting corrosion-resistant materials, applying protective coatings can enhance the resistance of the RTO components to corrosive gases. Coatings such as ceramic coatings, epoxy coatings, or acid-resistant paints can provide an extra layer of protection against corrosion.
- Temperature Control: Maintaining appropriate operating temperatures in the RTO can help mitigate the corrosive effects of the exhaust gases. Higher temperatures can promote the decomposition of corrosive compounds, reducing their corrosive potential. Additionally, operating at higher temperatures can enhance the self-cleaning effect and prevent the accumulation of corrosive deposits on the surfaces.
- Gas Conditioning: Prior to entering the RTO, the exhaust gases can undergo gas conditioning processes to reduce their corrosive nature. This may involve pre-treatment methods such as scrubbing or neutralization to remove or neutralize corrosive compounds and reduce their concentration.
- Monitoring and Maintenance: Regular monitoring of the RTO performance and periodic maintenance are essential to ensure the effective handling of corrosive exhaust gases. Monitoring systems can track variables such as temperature, pressure, and gas composition to detect any deviations that may indicate corrosion-related issues. Proper maintenance, including cleaning and inspection of the components, helps identify and address any corrosion concerns in a timely manner.
It is important to note that the corrosiveness of exhaust gases can vary significantly depending on the specific industrial process and the pollutants involved. Therefore, when designing an RTO for handling corrosive gases, it is advisable to consult with experienced engineers or RTO manufacturers who can provide guidance on the appropriate design considerations and material selection.
By employing suitable materials, coatings, temperature control, gas conditioning, and maintenance practices, RTOs can effectively handle corrosive exhaust gases while ensuring their long-term performance and durability.
What are the maintenance requirements for a regenerative thermal oxidizer?
Maintaining a regenerative thermal oxidizer (RTO) is essential to ensure its optimal performance, longevity, and compliance with environmental regulations. Here are some key maintenance requirements for an RTO:
- Regular Inspections: Conduct routine inspections to identify any signs of wear, corrosion, or damage to the RTO components. This includes inspecting valves, dampers, fans, combustion chambers, heat exchangers, and ceramic media beds. Inspections help detect potential issues early and allow for timely repairs or replacements.
- Cleaning and Replacement of Components: Clean or replace components as needed to maintain proper functionality. This may include cleaning clogged or fouled heat exchanger surfaces, replacing damaged or worn-out valves and dampers, and periodically replacing the ceramic media beds if they become degraded or contaminated.
- Monitoring Operating Parameters: Regularly monitor and record operating parameters such as temperature, airflow, pressure differentials, and gas concentrations. Deviations from normal operating ranges can indicate potential problems or inefficiencies that require attention.
- Calibration of Instruments: Calibrate instruments and sensors used for monitoring and control purposes to ensure accurate measurement of parameters such as temperature, pressure, and flow rates. Proper calibration helps maintain reliable and precise operation of the RTO.
- Cleaning of Heat Recovery System: Clean the heat recovery system, including the heat exchanger surfaces, to remove any accumulated particulate matter or fouling. This ensures efficient heat transfer and prevents the buildup of deposits that can reduce the RTO’s performance.
- Compliance with Safety Standards: Adhere to safety standards and guidelines for working with the RTO. This includes proper lockout/tagout procedures during maintenance activities, wearing appropriate personal protective equipment, and following safety protocols to minimize risks to personnel and equipment.
- Documentation and Record-Keeping: Maintain comprehensive records of maintenance activities, inspections, repairs, and any modifications made to the RTO. Documentation helps track the equipment’s history, aids in troubleshooting, and provides a record of compliance with regulatory requirements.
It’s important to note that the specific maintenance requirements may vary depending on the RTO manufacturer’s recommendations, the design of the system, the operating conditions, and applicable regulatory requirements. Following the manufacturer’s guidelines, conducting regular inspections, and implementing a proactive maintenance program tailored to the specific RTO are crucial for ensuring its reliable operation and longevity.
editor by CX 2023-09-23