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Removal of NOX from diesel engine exhaust by using different chemical absorbent in a lab-scale packed column system

机译:通过使用不同的化学吸收剂在实验室规模的填充柱系统中从柴油发动机排气中除去NOx

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摘要

Emissions of NO X from automobile causes various environmental impacts. In order to satisfy the emission norms and standards, it is necessary to reduce the toxic gases from emission. This paper concentrates on designing a packed column and analysis on the selection of an effective absorbent to reduce NO X emission from diesel engines. NO X emission is taken from the exhaust of diesel engine (Kirloskar TV1 Diesel engine). Flue gas inlet to the packed column and the treated gas at the outlet of the packed column are measured using NO X inlet and outlet gas sensors, respectively. Absorbent flow is carried out in a lab-scale packed column experimental setup. Various parameters of the packed column such as liquid: gas ratio, diameter, total height and packing height are determined based on the mathematical modeling. The NO X emission was experimentally measured with various combinations of different absorbents with different flow rate. Based on the experiments, effective absorbents are chosen as NaClO 2 and NaOH. Experimental results show chemical absorbent combination with 0.5 M concentration of sodium chlorite and 0.3 M concentration of sodium hydroxide at 80% data acquisition card opening condition is absorbing NO X effectively.
机译:来自汽车的NO X的排放会导致各种环境影响。为了满足排放规范和标准,有必要减少排放的有毒气体。本文专注于设计填充柱并分析选择有效吸收剂,以减少柴油发动机的X X排放。从柴油发动机(Kirloskar TV1柴油发动机)的排放中没有X排放。使用NO X入口和出口气体传感器测量卷绕柱的烟气入口和填充柱的出口处的处理气体。吸收流量在实验室级填充列实验设置中进行。基于数学建模确定液体:气体比,直径,总高度和填充高度的填充柱的各种参数。用不同的吸收剂的各种组合通过不同流速进行实验测量NO X排放。基于实验,选择有效的吸收剂作为NaClO 2和NaOH。实验结果表明,80%数据采集卡打开条件下的化学吸收剂浓度为0.5M浓度浓度氯酸钠和0.3M浓度浓度的氢氧化钠。

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