生物質(zhì)鍋爐脫硫脫硝設(shè)備,生物質(zhì)鍋爐脫硝有如下特點:①爐膛溫度差別大,生物質(zhì)鍋爐主要有爐排爐和循環(huán)化床爐,每種爐型又分為中溫中壓爐、次高溫次高壓爐、高溫高壓爐,膛溫度分別為?700~760℃、880~950℃、850~1100℃;②生物質(zhì)中氫元素含量較高,煙氣中含水量也高,可達到15%~30%;③煙塵含堿金屬質(zhì)量分數(shù)較高,可達8%?以上;④二氧化硫、氮氧化物濃度低、波動大,燃燒純生物質(zhì)時二氧化硫、氮氧化物濃度在120~250mg/m3波動,如燃料中摻雜模板、木材、樹皮,煙氣中二氧化硫、氮氧化物濃度在?250~600?mg/m3波動。
Desulfurization and denitration equipment of biomass boiler, and denitration of biomass boiler have the following characteristics: ① The furnace temperature difference is large, biomass boiler mainly has grate furnace and circulating bed furnace, and each furnace type is divided into medium temperature medium pressure furnace, sub high temperature sub high pressure furnace, and high temperature high pressure furnace, and the chamber temperature is respectively? 700~760℃、880~950℃、850~1100℃; ② The hydrogen element content in biomass is high, and the moisture content in flue gas is also high, which can reach 15%~30%; ③ The content of alkali metal in smoke is high, reaching 8%? above; ④ The concentration of sulfur dioxide and nitrogen oxides is low and fluctuates greatly. When burning pure biomass, the concentration of sulfur dioxide and nitrogen oxides fluctuates between 120 and 250mg/m3. For example, the fuel is mixed with templates, wood and bark, and the concentration of sulfur dioxide and nitrogen oxides in the flue gas is between? 250~600? Mg/m3 fluctuation.
生物質(zhì)的鍋爐由于燃料種類多、熱值低、給料均勻性差,造成燃燒區(qū)內(nèi)的溫度變化劇烈,鍋爐出口初始氮氧化物排放濃度波動大。生物質(zhì)鍋爐脫硝要穩(wěn)定爐膛出口NOx的濃度。生物質(zhì)可采用的煙氣脫硝方式包括:SNCR脫硝技術(shù),SCR脫硝技術(shù),臭氧氧化脫硝技術(shù),ZYY脫硝技術(shù)等。
Due to the variety of fuels, low calorific value and poor feed uniformity, the temperature in the combustion zone of biomass boilers changes dramatically, and the initial NOx emission concentration at the boiler outlet fluctuates greatly. The NOx concentration at the furnace outlet must be stabilized first for biomass boiler denitration. The flue gas denitration methods available for biomass include SNCR denitration technology, SCR denitration technology, ozone oxidation denitration technology, ZYY denitration technology, etc.
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