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RTO for Printing and Industry Trends

Úvod

Regenerative Thermal Oxidizers (RTOs) have been widely used in the printing industry for decades to control volatile organic compounds (VOCs) emissions. RTOs are a type of air pollution control equipment that destroys VOCs by heating up the exhaust air stream to convert the pollutants into harmless carbon dioxide and water vapor. In recent years, there have been some industry trends that impact the application and design of RTOs for printing facilities. This article will explore some of these trends and how they relate to RTO usage.

Industry Trend 1: Digital Printing

Digital printing has become more popular in recent years due to its cost-effectiveness and flexibility. Unlike traditional printing methods, digital printing does not require the use of plates and chemicals, which results in fewer VOC emissions. However, digital printing still generates some VOCs, particularly from inkjet printers. RTOs can effectively control VOC emissions from digital printing by capturing the VOC-laden exhaust air and removing the pollutants through thermal oxidation.

Industry Trend 2: Energy Efficiency

Energy efficiency is an important consideration for printing facilities. As energy costs continue to rise, printing companies are looking for ways to reduce their energy consumption and costs. RTOs can help achieve this goal by using excess heat from the combustion process to preheat the incoming air stream, thereby reducing the energy needed to heat the air to the necessary temperature. Additionally, some RTOs come equipped with heat recovery systems that can further increase energy efficiency.

Industry Trend 3: Sustainable Materials

Sustainable materials are becoming increasingly popular in the printing industry as companies look to reduce their environmental footprint. These materials, such as soy-based inks, can result in fewer VOC emissions compared to traditional petroleum-based inks. However, sustainable materials can still generate some VOCs, and RTOs can be used to capture and destroy these pollutants.

Industry Trend 4: RTOs for SBS Industry

Solid Bleached Sulfate (SBS) is a type of paperboard used in a variety of applications, including packaging and printing. SBS production is known to generate significant amounts of VOCs, making it an ideal application for RTOs. RTOs can effectively control VOC emissions from SBS production by capturing and destroying the pollutants through thermal oxidation. In addition, RTOs can be designed to meet the specific needs of SBS production facilities, such as high flow rates and low pressure drop.

Záver

In conclusion, RTOs continue to be an important tool for controlling VOC emissions in the printing industry. As industry trends continue to evolve, RTOs will need to adapt to meet the changing needs of printing facilities. By staying up-to-date with industry trends and advancements in RTO technology, printing companies can effectively control VOC emissions while reducing their environmental footprint and operating costs.

Printing Industry Inkjet System

RTO for SBS Industry

Predstavenie spoločnosti

Our company is a high-tech enterprise specializing in the comprehensive treatment of volatile organic compounds (VOCs) in exhaust gases and carbon reduction energy-saving technology for the printing and industrial sectors.

Core Technologies

Our core technologies include thermal, combustion, sealing, and control systems. We have the capability for temperature field simulation, air flow field simulation modeling, ceramic heat storage material performance, molecular sieve adsorbent material selection, and VOCs high-temperature incineration oxidation experimental testing.

Team Advantages

We have established RTO technology research and development center and exhaust gas carbon reduction engineering technology center in Xi’an, as well as a 30,000-square-meter production base in Yangling. We are a leading manufacturer in terms of global RTO equipment and molecular sieve wheel equipment sales. Our core technical team comes from the Institute of Liquid Rocket Engine Research of the China Academy of Launch Vehicle Technology (CALT). We currently have more than 360 employees, including over 60 research and development technical backbone members, including 3 senior engineers at the researcher level, 6 senior engineers, and 47 doctors of thermodynamics.

Core Products

Our core products include the rotating valve regenerative thermal oxidizer (RTO) and the molecular sieve adsorption concentration wheel. Combined with our expertise in environmental protection and thermal energy systems engineering, we are able to provide customers with comprehensive solutions for industrial exhaust gas treatment, carbon reduction, and thermal energy utilization under various operating conditions.

Company Image

Certifikáty, patenty a vyznamenania

  • Certifikácia systému správy duševného vlastníctva
  • Certifikácia systému manažérstva kvality
  • Certifikácia systému environmentálneho manažérstva
  • Construction Industry Enterprise Qualification
  • High-Tech Enterprise
  • Patent for Rotary Valve Regenerative Thermal Oxidizer
  • Patent for Rotary Wheel Heat Storage Incineration Equipment
  • Patent for Disk Zeolite Wheel

Výber správneho vybavenia RTO

  1. Determine the exhaust gas characteristics
  2. Understand local regulations and emission standards
  3. Vyhodnoťte energetickú účinnosť
  4. Zvážte prevádzku a údržbu
  5. Conduct budget and cost analysis
  6. Select the appropriate type of RTO
  7. Zvážte environmentálne a bezpečnostné faktory
  8. Perform performance testing and verification

Choosing RTO Equipment Image

Service Process

  1. Preliminary consultation, on-site inspection, and needs analysis
  2. Solution design, simulation and modeling, and solution review
  3. Prispôsobená výroba, kontrola kvality a továrenské testovanie
  4. On-site installation, commissioning, and training services
  5. Pravidelná údržba, technická podpora a dodávka náhradných dielov

We are a one-stop solution provider with a professional team that customizes RTO solutions for our customers.

Autor: Miya

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