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Controlling Nitrogen Oxide (NOx) Emissions from Exothermic Nitrogen Generation Systems for Application in Subsea Environments

机译:控制用于海底环境的放热制氮系统中的氮氧化物(NOx)排放

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A highly exothermic nitrogen generation system (NGS) can be achieved by mixing solutions of sodium nitrite and ammonium chloride, a process used by the oil and gas industry to dissolve paraffin wax and gas hydrates. Although its main products are nitrogen gas and a sodium chloride brine, the NGS has a side reaction that produces nitrogen oxides. To optimize this process to ensure the greatest and fastest heat generation with the lowest oxide production, this reaction was checked by infrared spectroscopy and calorimetry. The factors temperature, pH, and initial concentration of nitrite and ammonium were evaluated, and the optimal conditions of the NGS were determined by the constructed models to predict heat and NOx generation. These conditions were a ratio of ammoniumitrite equal to 1 and a catalyst concentration of 0.07 mol·L–1 (for a case in which the temperature is 5 °C).
机译:高度放热的氮气生成系统(NGS)可通过将亚硝酸钠和氯化铵的溶液混合来实现,这是石油和天然气工业用来溶解石蜡和天然气水合物的一种方法。尽管NGS的主要产品是氮气和氯化钠盐水,但NGS的副反应会产生氮氧化物。为了优化此过程以确保以最少的氧化物产生最大和最快的热量,通过红外光谱和量热法检查了该反应。评估了温度,pH值以及亚硝酸盐和铵盐的初始浓度等因素,并通过构建的模型确定了NGS的最佳条件,以预测热量和NOx的产生。这些条件是铵/亚硝酸盐之比等于1,催化剂浓度为0.07mol·L-1(对于温度为5°C的情况)。

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