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Study on NOx emissions from ternary molten nitrate salts contacting several kind of metals in thermal energy storage process

机译:从热能储存过程中三元熔融硝酸盐盐的NOx排放研究

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To research the different emissions of NOx when HITEC (an eutectic mixture of ternary molten nitrates with the component of 7wt.%NaNO3-53wt.%KNO3-40wt.%NaNO2) contacts with metals during the thermal energy storage (TES) process, this paper studies the accumulative absorption concentrations of NOx in tail gases generated from the molten salts exposure to 45# carbon steel (1045, ASTM), stainless steels(321, 310S), and nickel-based alloys(In625, Has C276) respectively under different temperatures, according to the national environmental protection standard of PR China, HJ479-2009. The results indicated that HITEC could release NQx when it contacted with those metals within the range from 300°C to 600°C. The emissions of NOx slowly increased with the increasing temperature under 450°C, but they were all less than 200mg/m~3. The NOx emissions had a sharp rise as HITEC contacting with 321 and 310S above 450°C, and their quantities were 1300 mg/m~3 and 770 mg/m~3 at 550°C respectively. When HITEC contacted with Has C276 and In625 above 500°C, the NOx emissions had a greatly increase, and their quantities were 340 mg/m~3 and 265 mg/m~3 at 550°C respectively. As for 45# carbon steel, the emissions were higher than 200 mg/m3 at 585°C.The chemical thermodynamic computation revealed that NOx were generated by various redox reactions between nitrate or nitrite and Fe, Ni, Cr, Mo, W below 450°C, but the emissions were not large for oxide films covered on metal surface could restrain the reactions. The formed Cn03, on surface of stainless steel and nickel based alloy, were further oxidized with NaNO3 and KNO3 above 500°C, leading to the oxide films to be damaged, and then NO2 and NO to be released. There was little Cr element in 45# carbon steel, so there was no sharp increase of NOx.
机译:在Hitec(具有7wt的组分的三元熔融硝酸盐的共晶混合物中,研究NOx的不同排放量。%KnO3-40wt。%NaNO2)在热能储存(TES)过程中与金属接触,这纸张研究从熔盐暴露于45#碳钢(1045,ASTM),不锈钢(321,310s)和镍基合金(In625的镍基合金产生的尾气中NOx累积吸收浓度(321,310s)(In625,具有C276)。温度根据中国国家环保标准,HJ479-2009。结果表明,当与300°C至600℃的那些金属接触时,HITEC可以释放NQX。 NOx的排放缓慢增加,随着450℃的温度越来越低,但它们均小于200mg / m〜3。 NOx排放与321和310s高于450℃的HITEC接触急剧上升,分别在550℃下分别为1300mg / m〜3和770mg / m〜3。当HITEC接触有C276和IN625以上500℃时,NOx排放大大增加,它们分别在550℃下为340mg / m〜3和265mg / m〜3。至于45#碳钢,排放量高于200mg / m3,在585°C。化学热力学计算显示,NOx由硝酸盐或亚硝酸盐和Fe,Ni,Cr,Mo,W以下各种氧化还原反应产生450 °C,但金属表面上覆盖的氧化物薄膜的排放不大可能抑制反应。在不锈钢和镍基合金的表面上形成的CN03进一步用纳米3和KNO3高于500℃,导致氧化膜损坏,然后没有释放NO 2。 45#碳钢中几乎没有Cr元素,因此NOx没有急剧增加。

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