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Zhongke Guosheng (Guangzhou) Environmental Prote

Eco-protection and Environmental Governance Industry

13922326499
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Home > SupplyPro Co., Ltd. > VOC Degradant
VOC Degradant
品牌: Zhongke Guosheng
Brand: Zhongke Guosheng
Type: Customized
Model: Customized
单价: 10000.00/Set
最小起订Quantity: 1 Set
供货总Quantity: 100 Set
有效期至: 长期有效
最后更新: 2022-11-16 16:58
 
详细Info

VOC stands for Volatile Organic Compounds; however, in the context of environmental protection, it refers to a category of highly reactive volatile organic compounds, those that can cause harm.


VOC stands for Volatile Organic Compounds, which have a significant impact on human health. When VOC levels in indoor spaces reach a certain concentration, people may experience symptoms like headaches, nausea, vomiting, and fatigue within a short period. In severe cases, seizures, coma, and damage to the liver, kidneys, brain, and nervous system can occur, leading to serious consequences such as memory loss.



Solution


1. Active Adsorption Method


In the process of treating organic waste gases, adsorption is one of the methods with good treatment effects and wide application. Adsorbents include activated carbon, diatomite, and zeolite, with activated carbon being most commonly used. Through the adsorption system, not only can the VOC concentration be significantly reduced to meet emission standards, but the collected material can also be recycled for production after adsorption and desorption.


2. Wind-induced high-altitude emission method


This is one of the simple methods commonly used by general enterprises on positions such as painting and sanding, which is cost-effective, easy to operate, and produces significant results. However, high-altitude emissions merely transfer the pollution, without actually resolving the pollution issue. The power of the induced fan and the installation height of the air outlet directly affect the induced wind effect.


3. Incineration Treatment Method


VOCs are volatile organic compounds, highly flammable. They can be treated by combustion at room temperature or catalytic oxidation, with the gas fed into a boiler or incinerator for burning. However, safety assessments are required for high-temperature organic gases. This method is relatively complete, converting VOCs primarily into CO2 and H2O.


4. Absorption Deaeration Method


Because VOCs are generally dissolved in diesel or 200# gasoline and other organic solvents, they can be absorbed by diesel or 200# gasoline. The solvent absorbed can then be used as fuel or a diluent. This method is easy to operate and cost-effective, but there is usually a residual volatile gas after absorption. Since organic solvents are volatile in nature, VOCs cannot be reduced to zero, and the absorption rate is even lower at high temperatures.


5. Condensate Collection Method


High-temperature organic gases from reactors can be condensed and collected using a cooling condenser first, followed by a spiral condenser. This method demonstrates a significant gas removal effect, is easy to operate, and has low operation costs; however, it is not effective for gases with low boiling points.


6. Biological Treatment Method


Biological treatment of organic waste gases is an economical and effective method with excellent performance and lower operational costs than any other treatment. It is safe and easy to operate. VOC biological purification methods include direct microbial purification, indirect microbial treatment (preliminary water absorption followed by biological wastewater treatment), and plant purification, among others. Direct biological purification involves biological absorption ponds, biological scrubbing ponds, biological trickling filters, and biological filter beds, which offer good treatment results and ease of operation. Among these, the biological filter bed technology is mature and widely used. For instance, Germany and the Netherlands have constructed hundreds of biological waste gas filter beds, all of which have shown excellent performance.


The biological treatment method involves using water or weak alkaline solutions to absorb VOCs, where substances like alcohols and aldehydes are easily soluble in water. The wastewater, after absorption, is then biodegradable to meet discharge standards. The plant purification method is to increase green space within the factory area, using green plants to absorb and convert atmospheric pollutants to purify the air. This approach is suitable for low-concentration pollution in a large environment.


7. Employing the Alternative HAP Solvent Method


Volatile Organic Compounds (VOCs) in solvent-based paints are primarily volatile gases from toluene and xylene, although benzene-based thinners offer many construction advantages, their harmful effects are well-known. Therefore, some manufacturers are seeking formulas that can replace toluene and xylene-based solvents to enhance the environmental performance of the paint.


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