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Technical characteristics and economic benefits of desulfurization, denitrificat

DATE:2017-01-09
  The desulfurization, denitrification and dust collector has high social and economic benefits. It has broad prospects in the field of desulfurization, denitrification, and dust removal in industrial boilers and industrial kilns.

Technical characteristics of desulfurization, denitrification and dust collector: The desulfurization, denitrification and dust collector belongs to environmental protection equipment. A water jacket container is installed on the outer wall of the flue gas channel. According to the principles of aerodynamics and fluid dynamics, the flue gas and water entering the equipment are accelerated to collide, causing water to form small water droplets under the action of high-speed and high-temperature flue gas flow. The formation of small water droplets increases the contact area between flue gas and water. The dust, sulfur-containing oxides and alkali lime containing water in the flue gas undergo neutralization reaction to produce gypsum, which is then separated from the air through a separation layer to separate water and gypsum. The technical characteristics of desulfurization, denitrification, and dust removal equipment include: 1. Medium denitrification efficiency, low investment cost, and low operating expenses; 2、 Not using expensive catalysts; 3、 The solution injection can automatically adjust the injection amount according to the change of boiler load; 4、 No need for large-scale renovation of the boiler, minimal impact on the boiler, and no need to replace the induced draft fan; 5、 Short construction period and simple construction; 6、 No secondary pollution is generated. The economic benefits of desulfurization, denitrification, and dust collectors: desulfurization, denitrification, and dust collectors have high social and economic benefits. It has broad prospects in the field of desulfurization, denitrification, and dust removal in industrial boilers and industrial kilns. Why would the editor say that? Of course, it's not fictional. The desulfurization, denitrification and dust collector starts with improving the absorption rate, the degree of gas-liquid two-phase dynamic function, and the continuous alternation of gas and liquid phases, which is conducive to the mass transfer reaction process of exhaust gas. At the same time, it also has low airflow resistance and high exhaust gas treatment intensity. In addition, the desulfurization, denitrification and dust collector has the advantages of reasonable structure, easy operation, convenient use, and small footprint. Currently, in the treatment of industrial waste gas, the superiority of this technology ranks among various wet desulfurization and dust removal methods. Equipped with a dehydration and defogging device, the fan can dehydrate without water or dust. Various alkaline desulfurizers can be used for desulfurization, denitrification, and dust removal, which can be locally sourced. Low power consumption, does not increase the power of the fan, and can also reduce resistance, thereby achieving good economic benefits. The reason for removing fog after desulfurization with a desulfurization and dust collector: We know that desulfurization and dust collectors usually remove fog after desulfurization. Why do we do this? Below, the editor will explain to you the reasons for defogging after desulfurization by the desulfurization and dust removal device. Due to the lack of oxygen content in the flue gas, calcium sulfate is generated through oxidation reactions. Therefore, a forced oxidation system is required to supply oxidation air to the absorption tower slurry, and the oxidation air is evenly dispersed into the absorption tower slurry pool through the oxidation air distribution network. Each absorption tower is equipped with 5 oxidation air dispersion branches, each with many small holes. Oxidation air is sprayed out from these small holes and forms fine air bubbles. Uniformly spread to the cross-section of the absorption tower reaction slurry pool, and then the bubbles rise to the surface of the slurry pool by buoyancy. During the rising process, they mix thoroughly with the slurry and undergo oxidation reaction, thereby achieving a high oxidation rate. If the oxidation effect of the slurry is not good, calcium sulfite will simply enter the defogger with the droplets and form hard scale on the defogger blades. Dust collector equipment will have an impact on the operation of the entire desulfurization system to a certain extent, so special attention should be paid during use. There will be other components in the mist, which will cause serious corrosion to the flue and other components with changes in temperature, causing damage to the desulfurization and dust collector. So, the fundamental reason why desulfurization and dust removal are carried out after desulfurization is to protect the desulfurization and dust removal equipment.

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