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垃圾焚烧产生的氮氧化物:通过选择性非催化还原进行控制。

Nitrogen oxides from waste incineration: control by selective non-catalytic reduction.

作者信息

Zandaryaa S, Gavasci R, Lombardi F, Fiore A

机构信息

Department of Civil Engineering, University of Rome Tor Vergata, Italy.

出版信息

Chemosphere. 2001 Feb-Mar;42(5-7):491-7. doi: 10.1016/s0045-6535(00)00221-6.

Abstract

An experimental study of the selective non-catalytic reduction (SNCR) process was carried out to determine the efficiency of NOx removal and NH3 mass balance, the NOx reducing reagent used. Experimental tests were conducted on a full-scale SNCR system installed in a hospital waste incineration plant. Anhydrous NH3 was injected at the boiler entrance for NOx removal. Ammonia was analyzed after each flue-gas treatment unit in order to establish its mass balance and NH3 slip in the stack gas was monitored as well. The effective fraction of NH3 for the thermal NOx reduction was calculated from measured values of injected and residual NH3. Results show that a NOx reduction efficiency in the range of 46.7-76.7% is possible at a NH3/NO molar ratio of 0.9-1.5. The fraction of NH3 used in NOx removal was found to decrease with rising NH3/NO molar ratio. The NH3 slip in the stack gas was very low, below permitted limits, even at the higher NH3 dosages used. No direct correlation was found between the NH3/NO molar ratio and the NH3 slip in the stack gas since the major part of the residual NH3 was converted into ammonium salts in the dry scrubbing reactor and subsequently collected in the fabric filter. Moreover, another fraction of NH3 was dissolved in the scrubbing liquor.

摘要

进行了选择性非催化还原(SNCR)过程的实验研究,以确定氮氧化物(NOx)的去除效率、氨(NH3)的质量平衡以及所使用的NOx还原试剂。实验测试在一家医院垃圾焚烧厂安装的全尺寸SNCR系统上进行。在锅炉入口处注入无水NH3以去除NOx。对每个烟气处理单元后的氨进行分析,以建立其质量平衡,并监测烟囱气体中的氨逃逸情况。根据注入的和残留的NH3测量值计算用于热NOx还原的NH3有效分数。结果表明,在NH3/NO摩尔比为0.9 - 1.5时,NOx还原效率可达46.7 - 76.7%。发现用于去除NOx的NH3分数随NH3/NO摩尔比的增加而降低。即使在使用较高NH3剂量的情况下,烟囱气体中的氨逃逸也非常低,低于允许限值。由于残留NH3的大部分在干式洗涤反应器中转化为铵盐,随后在织物过滤器中收集,因此未发现NH3/NO摩尔比与烟囱气体中的氨逃逸之间存在直接相关性。此外,另一部分NH3溶解在洗涤液中。

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