Informações básicas.
Modelo NO.
RTO incrível
Tipo
Incinerador
Baixa manutenção
100
Fácil operação
100
Economia de energia
100
Alta eficiência
100
Marca registrada
Fantástico
Pacote de transporte
No exterior
Especificação
111
Origem
China
Código HS
2221111
Descrição do produto
RTO
Oxidador térmico regenerativo
Em comparação com a combustão catalítica tradicional e o oxidador térmico direto, o RTO tem os méritos da alta eficiência de aquecimento, do baixo custo de operação e da capacidade de tratar gases residuais de grande fluxo e baixa concentração. Quando a concentração de VOCs é alta, é possível realizar a reciclagem do calor secundário, o que reduzirá bastante o custo da operação. Como o RTO pode pré-aquecer o gás residual por níveis por meio de um acumulador de calor de cerâmica, o que pode fazer com que o gás residual seja completamente aquecido e rachado sem nenhum canto morto (eficiência de tratamento >99%), o que reduz o NOX no gás de exaustão, se a densidade de VOC >1500mg/Nm3, quando o gás residual chegar à área de rachadura, ele terá sido aquecido até a temperatura de rachadura pelo acumulador de calor, e o queimador será fechado nessa condição.
O RTO pode ser dividido em tipo de câmara e tipo rotativo de acordo com o modo de operação diferente. O RTO do tipo rotativo tem vantagens na pressão do sistema, na estabilidade da temperatura, no valor do investimento, etc
Tipos de RTO | Eficiência | Mudança de pressão (mmAq) | Tamanho | (máx.) Volume de tratamento | |
Eficiência do tratamento | Eficiência de reciclagem de calor | ||||
Tipo rotativo RTO | 99 % | 97 % | 0-4 | pequeno (1 vez) | 50000Nm3/h |
RTO do tipo três câmaras | 99 % | 97 % | 0-10 | Grande (1,5 vezes) | 100000Nm3/h |
Tipo de duas câmaras RTO | 95 % | 95 % | 0-20 | médio (1,2 vezes) | 100000Nm3/h |
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Endereço: 8 floor, E1, Pinwei building, Dishengxi road, Yizhuang, ZheJiang, China
Tipo de negócio: Fabricante/fábrica, empresa comercial
Gama de negócios: Eletroeletrônicos, equipamentos e componentes industriais, máquinas de fabricação e processamento, metalurgia, minerais e energia
Certificação do sistema de gerenciamento: ISO 9001, ISO 14001
Principais produtos: Rto, linha de revestimento colorido, linha de galvanização, faca de ar, peças sobressalentes para linha de processamento, revestidor, equipamentos independentes, rolo de pia, projeto de renovação, soprador
Apresentação da empresa: A ZheJiang Amazing Science & Technology Co., Ltd é uma próspera empresa de alta tecnologia, localizada na Área de Desenvolvimento Econômico e Tecnológico de ZheJiang (BDA). Seguindo o conceito de realista, inovadora, focada e eficiente, nossa empresa atende principalmente ao setor de tratamento de gases residuais (VOCs) e a equipamentos metalúrgicos da China e até mesmo do mundo todo. Possuímos tecnologia avançada e vasta experiência em projetos de tratamento de gases residuais de VOCs, cuja referência foi aplicada com sucesso no setor de revestimento, borracha, eletrônicos, impressão, etc. Também temos anos de acúmulo de tecnologia na pesquisa e fabricação de linhas de processamento de aço plano e temos quase 100 exemplos de aplicação.
Nossa empresa tem como foco a pesquisa, o projeto, a fabricação, a instalação e o comissionamento do sistema de tratamento de gás residual orgânico de VOCs e o projeto de renovação e atualização para economia de energia e proteção ambiental da linha de processamento de aço plano. Podemos oferecer aos clientes soluções completas para proteção ambiental, economia de energia, melhoria da qualidade do produto e outros aspectos.
Também estamos envolvidos em várias peças sobressalentes e equipamentos independentes para a linha de revestimento colorido, linha de galvanização, linha de decapagem, como rolo, acoplador, trocador de calor, recuperador, faca de ar, soprador, soldador, nivelador de tensão, passe de pele, junta de expansão, tesoura, juntadeira, costurador, queimador, tubo radiante, motor de engrenagem, redutor, etc.
Can regenerative thermal oxidizers be used for treating industrial wastewater?
No, regenerative thermal oxidizers (RTOs) are not typically used for treating industrial wastewater. RTOs are specifically designed for air pollution control and the treatment of gaseous pollutants, such as volatile organic compounds (VOCs) and hazardous air pollutants (HAPs).
Here are some key points to consider regarding the use of RTOs for treating industrial wastewater:
- Princípio de funcionamento: RTOs rely on the combustion of pollutants in the gas phase. They utilize high temperatures to thermally oxidize gaseous pollutants, converting them into carbon dioxide and water vapor. However, wastewater treatment involves the removal or transformation of contaminants dissolved or suspended in water, which requires different treatment mechanisms.
- Wastewater Treatment Technologies: Wastewater treatment typically involves processes such as physical separation, chemical treatment, biological treatment, and other specialized techniques depending on the nature of the contaminants. Common wastewater treatment technologies include activated sludge systems, sedimentation tanks, chemical precipitation, filtration, and various other methods tailored to specific wastewater characteristics.
- Environmental Regulations: Industrial wastewater treatment is subject to stringent environmental regulations and discharge standards that govern the quality of effluent released into water bodies. Compliance with these regulations requires the implementation of appropriate wastewater treatment technologies specifically designed for the removal or reduction of contaminants in water, rather than air pollution control technologies like RTOs.
- Integration with Wastewater Treatment Systems: While RTOs are not used for wastewater treatment, they may be integrated into overall industrial process systems where wastewater treatment is also required. In such cases, separate wastewater treatment technologies are employed to treat the wastewater, and RTOs are used to address air emissions resulting from the wastewater treatment process or other industrial operations.
In summary, regenerative thermal oxidizers are not suitable for treating industrial wastewater. They are designed for air pollution control and the destruction of gaseous pollutants. For effective wastewater treatment, industries should employ appropriate wastewater treatment technologies specifically designed for the removal or transformation of contaminants in water.
Can regenerative thermal oxidizers be used for treating emissions from pharmaceutical processes?
Yes, regenerative thermal oxidizers (RTOs) can be effectively used for treating emissions from pharmaceutical processes. Pharmaceutical manufacturing processes often generate volatile organic compounds (VOCs) and hazardous air pollutants (HAPs) that need to be controlled to comply with environmental regulations and ensure air quality. Here are some key points regarding the use of RTOs for treating emissions from pharmaceutical processes:
- Controle de emissões: As RTOs são projetadas para atingir altas eficiências de destruição de VOCs e HAPs. Esses poluentes são oxidados dentro do RTO em altas temperaturas, normalmente acima da eficiência 95%, convertendo-os em dióxido de carbono (CO2) and water vapor. This ensures effective control and reduction of emissions from pharmaceutical processes.
- Compatibilidade de processos: RTOs can be integrated into the exhaust systems of various pharmaceutical processes, capturing and treating the emissions before they are released into the atmosphere. The RTO is typically connected to the process equipment or exhaust stack, allowing the VOC-laden air to pass through the oxidizer for treatment.
- Flexibilidade: RTOs offer flexibility in handling a wide range of operating conditions and pollutants. Pharmaceutical processes can vary in terms of flow rates, temperature, and composition of emissions. RTOs are designed to accommodate these variations and provide effective treatment even under fluctuating conditions.
- Recuperação de calor: As RTOs incorporam sistemas de troca de calor que permitem a recuperação e a reutilização da energia térmica. Os trocadores de calor dentro da RTO capturam o calor dos gases de exaustão de saída e o transferem para o fluxo de ar ou gás de entrada do processo. Esse processo de recuperação de calor melhora a eficiência energética geral do sistema e reduz a necessidade de consumo adicional de combustível.
- Conformidade com os regulamentos: Pharmaceutical processes are subject to regulatory requirements for air quality and emissions control. RTOs are capable of achieving the necessary destruction efficiencies and can help pharmaceutical manufacturers comply with environmental regulations. The use of RTOs demonstrates a commitment to sustainable practices and responsible management of air emissions.
It is important to note that the specific design and configuration of the RTO, as well as the characteristics of the pharmaceutical emissions, should be considered when implementing an RTO for a specific application. Consulting with experienced engineers or RTO manufacturers can provide valuable insights into the proper sizing, integration, and performance requirements for treating emissions from pharmaceutical processes.
In summary, RTOs are a suitable and effective technology for treating emissions from pharmaceutical processes, providing high destruction efficiencies, compatibility with various processes, flexibility in handling operating conditions, heat recovery, and compliance with environmental regulations.
What are the benefits of using a regenerative thermal oxidizer?
A regenerative thermal oxidizer (RTO) is an advanced air pollution control technology used in industrial processes to remove volatile organic compounds (VOCs), hazardous air pollutants (HAPs), and other harmful emissions. The use of an RTO offers several benefits:
1. Alta eficiência de destruição: RTOs are known for their high destruction efficiency, typically achieving over 99% destruction of VOCs and HAPs. This effectiveness ensures that the majority of harmful pollutants are eliminated, resulting in cleaner air emissions and compliance with environmental regulations.
2. Energy Efficiency: RTOs are designed to be energy-efficient systems. They utilize a regenerative process that recovers and preheats the incoming process air by capturing and transferring heat from the outgoing exhaust stream. This heat recovery mechanism significantly reduces the energy consumption of the system, making RTOs a cost-effective solution for air pollution control.
3. Cost Savings: The energy efficiency of RTOs translates into cost savings for industrial operations. By reducing fuel consumption and operating costs, businesses can achieve long-term financial benefits. Additionally, the high destruction efficiency of RTOs eliminates the need for additional downstream pollution control equipment, reducing capital and maintenance expenses.
4. Thermal Self-Sustainability: RTOs have the unique ability to sustain their operating temperature without the need for external fuel sources. Once the system reaches the desired operating temperature, the heat recovery process maintains the necessary thermal energy for oxidation. This self-sustainability reduces reliance on external fuel, enhances system reliability, and minimizes operational downtime.
5. Flexibility and Adaptability: RTOs are versatile and can be designed to accommodate a wide range of process exhaust volumes and pollutant concentrations. They can handle varying flow rates, inlet temperatures, and pollutant loadings, making them suitable for diverse industrial applications. RTOs can be customized to meet specific process requirements, ensuring optimal performance and adaptability.
6. Low Maintenance Requirements: RTOs are known for their low maintenance requirements. The absence of complex moving parts and the self-sustaining nature of the system contribute to minimal maintenance needs. Routine inspections, periodic checks, and basic preventive maintenance are usually sufficient to keep the RTO operating efficiently. This reduces downtime and maintenance costs for industrial facilities.
7. Environmental Compliance: By effectively removing VOCs, HAPs, and other pollutants, RTOs enable industrial facilities to achieve and maintain compliance with environmental regulations. This ensures that the emissions from the manufacturing or process operations meet the required air quality standards, protecting the environment and surrounding communities.
The benefits of using a regenerative thermal oxidizer, including high destruction efficiency, energy efficiency, cost savings, thermal self-sustainability, flexibility, low maintenance requirements, and environmental compliance, make it a preferred choice for many industries seeking effective and sustainable air pollution control solutions.
editor by CX 2023-09-25