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UV光解除臭净化设备

 5000风量UV光解除臭净化设备主要用于: 垃圾站、污水处理厂、家具厂、喷涂业、养殖场、制药厂、解剖室;电子厂/塑胶厂/研究院、生物科技院等废气的处理而研发。 

高效除恶臭:能高效去除挥发性有机物(VOC)、无机物、硫化氢、氨气、硫醇类、苯类等主要污染物,以及各种恶臭味。脱臭效果大大超过国家 1993年颁布的恶臭污染物排放标准(GB14554-93)和1996年颁布的《大气污染物综合排放标准》(GB16297-1996);工业企业设计卫生标准》GBZ1-2002。  高能光量子催化氧化除臭设备能高效去除挥发性有机物(VOC)、无机物、硫化氢、氨气、硫醇类等主要污染物,以及各种恶臭味 ,脱臭效率最高可达99%以上,脱臭效果大大超过国家1993年颁布的(GB14554-93)恶臭污染物排放标准。美国环保署公布的九大类114种、 污染物均被证实可通过光解催化氧化得到治理,即使对原子有机物如卤代烃、燃料、含氮有机物、有机磷杀虫剂也有很好的去除效果。

除臭设备采用就地和远程两种运行模式:就地控制模式下,通过控制箱的控制按钮控制设备的启停;在远程控制模式下,可在上位机对设备进行启 停控制。提供与控制室相适应的接口,能实现就地与远程控制.
科技含量高:采用先进的高能UV裂解废气物质的化学键及高级氧化技术,突破单一体系的反应局限,在整个反应体系中,有两种氧化能力极强的 氧化剂—O3和·OH参与反应,使得脱臭效果更加,恶臭气体矿化程度更高,可无害化排放,无二次污染。具有完全自主知识产权的高科技环保净 化产品。 在高能光量子催化氧化除臭设备内,高能光束与空气反应产生的臭氧、·OH(羟基自由基)对恶臭气体进行协同分解氧化反应,同时大分子恶臭气体在高能紫外线作用下使其链结构断裂,使恶臭气体物质转化为无臭味的小分子化合物或者完全矿化,生成水和CO2,达标后经排风管排入大气,整个分解氧化过程在2秒内完成。工艺先进之处,我们还在UV前后分别加了高效过滤器和光触媒工艺,作用分别是:高效过滤器去除大分子,光触媒再对某些剩余的废气进行第二次催化氧化处理,以达到更好的处理效果。 
5000风量UV光解除臭净化设备产品技术原理: 
1、本产品利用特制的高能高臭氧UV紫外线光束照射恶臭气体,改变恶臭气体如:氨、三甲胺、硫化氢、甲硫氢、甲硫醇、甲硫醚、二甲二硫、二硫化碳和苯乙烯,硫化物H2S、VOC类,苯、甲苯、二甲苯的分子链结构,使有机或无机高分子恶臭化合物分子链,在高能紫外线光束照射下,降解转变成低分子化合物,如CO2、H2O等。 
2、利用高能高臭氧UV紫外线光束分解空气中的氧分子产生游离氧,即活性氧,因游离氧所携正负电子不平衡所以需与氧分子结合,进而产生臭氧。 
UV+O2→O-+O*(活性氧)O+O2→O3(臭氧),众所周知臭氧对有机物具有极强的氧化作用,对恶臭气体及其它刺激性异味有立竿见影的清除效果。 
3、恶臭气体利用排风设备输入到本净化设备后,净化设备运用高能UV紫外线光束及臭氧对恶臭气体进行协同催化剂分解氧化反应,使恶臭气体物质其降解转化成低分子化合物、水和二氧化碳,再通过排风管道排出室外。下图为发生反应的催化剂载体: 

4、利用高能UV光束裂解恶臭气体中细菌的分子键,破坏细菌的核酸(DNA),再通过臭氧进行氧化反应,彻底达到脱臭及杀灭细菌的目的。

5000 airflow UV light remove odor purification equipment is mainly used for: tips, sewage plants, furniture factory and coating industry, farm, pharmaceutical factory, autopsy room; Electronics factory/following enterprise research institute, biological science and technology institute of exhaust gas treatment and research and development.

Efficient except the stench: can efficiently remove volatile organic compounds (VOC), inorganic matter, hydrogen sulfide, ammonia, mercaptan, benzene and other major pollutants, as well as various stench. Deodorization effect is considerably more than the 1993 issued odorous pollutants emission standards (GB14554-93) and 1996 \"integrated air pollutant discharge standard\" (GB16297-1996); Health standard for design \"GBZ1-2002 industrial enterprises. High-energy photons catalytic oxidation deodorization device can efficiently remove volatile organic compounds (VOC), inorganic matter, the main pollutants, such as hydrogen sulfide, ammonia, mercaptan and various stench, deodorization efficiency as high as 99% above, deodorization effect considerably more than the 1993 issued (GB14554-93) odorous pollutants emission standards. The epa published 114 kinds of nine categories, pollutants have been confirmed can be obtained by photolysis catalytic oxidation treatment, and even for atomic organic matter such as halogenated hydrocarbon, fuel, nitrogenous organic compounds, organophosphorus pesticides also has good removal effect.

Deodorization equipment using both local and remote operation mode: local control mode, through the control box of start-stop control button control device; In remote control mode, can be in PC for start-stop control equipment. To provide an interface to adapt themselves to the control room, can realize the local and remote control.

High technology content, USES the advanced chemical bonds of high-energy UV pyrolysis gas materials and advanced oxidation technology, break through the reaction of the limitations of a single system, in the reaction system, there are two types of oxidation ability strong oxidant, O3 and · OH reaction, make deodorization effect more, fetor mineralization degree is higher, but harmless emissions, no secondary pollution. With a fully independent intellectual property rights of high-tech environmental protection net products. Within the high-energy photons catalytic oxidation deodorization equipment, high energy beam ozone reacts with air and · OH (hydroxyl radicals) oxidation reaction of fetor synergy decomposition, and macromolecular odorous gases under the effect of high-energy ultraviolet (uv) make its chain structure fracture, the stench gas material into small molecule compounds without smell or completely mineralization, formation water and CO2, standard after the exhaust duct into the atmosphere, the whole process of oxidation decomposition in 2 seconds. Advanced technology, we are in the UV respectively before and after high efficiency filter and light catalytic technology, function, respectively is: high efficiency filter to remove large molecules, photocatalytic again a second catalytic oxidation for some of the rest of the waste gas processing, in order to achieve better treatment effect.

5000 airflow UV light remove odor purification equipment product technical principles:

1, this product with a special high energy high ozone UV ultraviolet beam, fetor, change the odorous gases such as ammonia and trimethylamine, hydrogen sulfide, hydrogen sulfide and methyl mercaptan, methyl sulfide, dimethyl disulfide, carbon disulfide and styrene, sulfide H2S, VOC, molecular chain structure of benzene, toluene, xylene, organic or inorganic polymer odorous compounds molecular chain, under high energy beam exposure to the sun's ultraviolet rays, degraded into low molecular compounds, such as CO2, H2O, etc.

2, high using high-energy UV ultraviolet light decomposition of ozone in the air molecules to produce free oxygen, namely reactive oxygen species, with electron-positron imbalance by free oxygen so need to combine with oxygen, which produce ozone.

UV + O2 - O - + O * (ros) O + O2 and O3 (ozone), known as the ozone oxidation of organic matter with a strong, for odorous gases and other irritating odor have immediate removal effect.

3, fetor using exhaust equipment input to the purification equipment, purification equipment using high-energy UV ultraviolet light and ozone to collaborative oxidation catalyst decomposition of odorous gases, make its fetor material degradation into low molecular compounds, water and carbon dioxide, again through the exhaust pipe outside. Reaction catalyst carrier is illustrated below:

4, the use of high-energy UV light beam cracking fetor bacteria in the molecular bonds, destroy bacteria nucleic acid (DNA), and then through the ozone oxidation reaction, thus achieves the goal of deodorization and kill bacteria.

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