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Organic waste gas treatment equipment cases for farms in Henan Province

作者:中环绿洲时间:2026-05-18 11:01:447次浏览

信息摘要:

1. Organic Waste Gas IntroductionThe selection of organic waste gas treatment methods shall generally consider the following factors: types and concentrations of organic pollutants, exhaust temperature and discharge flow of organic waste gas, particulate matter content and the required pollutant con...

1. Organic Waste Gas Introduction

The selection of organic waste gas treatment methods shall generally consider the following factors: types and concentrations of organic pollutants, exhaust temperature and discharge flow of organic waste gas, particulate matter content and the required pollutant control level.
Special caution shall be taken when the organic waste gas contains high-concentration substances that can be converted into organic acids, such as chlorine, fluorine, sulfur and halogens. These substances will cause serious corrosion to equipment or catalyst poisoning.

2. Feasibility of Photo-oxygen Oxidation Catalytic Waste Gas Purifier

(1) No environmental pollution, advanced process and high purification efficiency.

(2) The purification equipment can operate automatically, continuously and stably; the system parameters are easy to adjust. Manual operation is also available for equipment commissioning and maintenance.

河南养殖场有机废气处理设备案例

3. Advantages of Photo-oxygen Oxidation Catalytic Waste Gas Purifier

3.1 Adaptability

The technology adopted by the photocatalytic waste gas purification equipment shall adapt to the waste gas treatment scale, pollutant types, regional characteristics and management level of the enterprise. The details are as follows:
1) The adopted technology shall be compatible with pollutants to be removed.
2) The adopted technology shall match the required equipment, including main equipment and auxiliary equipment.
3) The adopted technology shall adapt to regional characteristics, staff quality and management level of the project site.
4) The adopted technology shall conform to the waste gas treatment capacity requirements.
High ozone UV ultraviolet beam decomposes oxygen molecules in the air to generate free oxygen, namely active oxygen. Due to the unbalanced positive and negative electrons of free oxygen, it combines with oxygen molecules to generate ozone. Reaction formula: UV+O2→O-+O*(active oxygen), O+O2→O3(ozone). Ozone has strong oxidation effect on organic matters and has excellent removal effect on malodorous gas and other pungent odors.
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