High definition Iron-Based Molecular Sieve Catalyst - Power Plant – GRVNES

High definition Iron-Based Molecular Sieve Catalyst - Power Plant – GRVNES

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High definition Iron-Based Molecular Sieve Catalyst - Power Plant – GRVNES Detail:

Landfill gas power generation refers to power generation through a large amount of biogas (LFG landfill gas) produced by anaerobic fermentation of organic matter in the landfill, which not only reduces the air pollution caused by waste incineration, but also makes effective use of resources.

Grvnes environmental protection has developed a set of “grvnes” SCR denitration system for the treatment of nitrogen oxides in landfill gas power generation after years of painstaking research.

Since more than 90% of NOx in the flue gas discharged from the combustion system is no, and no is difficult to dissolve in water, the wet treatment of NOx cannot be carried out by simple washing method. The principle of flue gas denitration is to oxidize no into NO2 with oxidant, and the generated NO2 is absorbed by water or alkaline solution, so as to realize denitration. O3 oxidation absorption method oxidizes no to NO2 with O3, and then absorbs it with water. HNO3 liquid produced by this method needs to be concentrated, and O3 needs to be prepared with high voltage, with high initial investment and operation cost. ClO2 oxidation-reduction method ClO2 oxidizes no to NO2, and then reduces NO2 to N2 with Na2SO3 aqueous solution. This method can be combined with the wet desulfurization technology using NaOH as desulfurizer, and the desulfurization reaction product Na2SO3 can be used as the reductant of NO2. The denitration rate of ClO2 method can reach 95% and desulfurization can be carried out at the same time, but the prices of ClO2 and NaOH are high and the operation cost increases.

(1) Dilute nitric acid absorption method

Because the solubility of no and NO2 in nitric acid is much greater than that in water (for example, the solubility of no in nitric acid with a concentration of 12% is 12 times greater than that in water), the technology of using dilute nitric acid absorption method to improve the removal rate of NOx has been widely used. With the increase of nitric acid concentration, its absorption efficiency is significantly improved, but considering industrial application and cost, the nitric acid concentration used in practical operation is generally controlled in the range of 15% ~ 20%. The efficiency of NOx absorption by dilute nitric acid is not only related to its concentration, but also related to the absorption temperature and pressure. Low temperature and high pressure are conducive to the absorption of NOx.

(2) Alkaline solution absorption method

In this method, alkaline solutions such as NaOH, Koh, Na2CO3 and NH3 · H2O are used as absorbents to chemically absorb NOx, and the absorption rate of ammonia (NH3 · H2O) is the highest. In order to further improve the absorption efficiency of NOx, two-stage absorption of ammonia alkali solution is developed: firstly, ammonia reacts completely with NOx and water vapor to produce ammonium nitrate white smoke; The unreacted NOx is then further absorbed with an alkaline solution. Nitrate and nitrite will be generated, and NH4NO3 and nh4no2 will also be dissolved in alkaline solution. After several cycles of the absorption solution, after the alkali solution is exhausted, the solution containing nitrate and nitrite is concentrated and crystallized, which can be used as fertilizer.


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High definition Iron-Based Molecular Sieve Catalyst - Power Plant – GRVNES detail pictures

High definition Iron-Based Molecular Sieve Catalyst - Power Plant – GRVNES detail pictures


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