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Total Acid Number Reduction of 2, 6-Naphthalenedicarboxylic Acid Using Subcritical Methanol for Reducing Acidity of Heavy Oil: A Kinetic Study

机译:使用亚临界甲醇的2,6-萘二甲酸的总酸数减少,用于还原重油的酸度:动力学研究

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Naphthenic acid (NA) found in hydrocarbon deposits is responsible for acidity of petroleum oils. In this study, a model compound of NAs, 2, 6-Naphthalenedicarboxylic acid (NDCA), is used for total acid number (TAN) reduction kinetic analysis. This goal of this paper is to investigate the capability of subcritical methanol (SubC-MeOH) for reducing acidity of NDCA without the addition of any catalyst or additives. The reaction kinetics is also discovered for large scale reactor design. The experiments were carried out in a 25 ml autoclave reactor (China) at temperatures of 180-220°C, a methanol partial pressure (MPP) of 0.1 MPa, reaction times of 0-60 min and a NDCA initial gas phase concentration of 0.03 g/mL. The TAN content of the samples were analyzed using American Society for Testing Materials (ASTM) D 974 techniques. The reaction products were identified and quantified with the help of GC/MS and GC-FID respectively. Experimental results reveal that TAN reduction of NDCA was increasing with increasing reaction temperature and time. Approximately, 52.12% TAN was reduced at a temperature of 220°C, a MPP of 0.1 MPa, and a reaction time of 60 min. Experimental data revealed that TAN removal reaction kinetics followed second order kinetics with an activation energy of 8.24 kcal/mol and a pre-exponential factor of 2.087 fraction~'s"1. Therefore, SubC-MeOH is capable to reduce TAN of NDCA without the addition of any catalyst or additives.
机译:在烃沉积物中发现的环烷酸(NA)负责石油油的酸度。在该研究中,用于NAS,2,6-萘二羧酸(NDCA)的模型化合物,用于总酸数(TAN)减少动力学分析。本文的这种目的是研究亚临界甲醇(Subc-MeOH)的能力,用于在不添加任何催化剂或添加剂的情况下减少NDCA的酸度。对于大型反应器设计,还发现了反应动力学。该实验在25ml高压釜反应器(中国)在180-220℃的温度下进行,甲醇部分压(MPP)为0.1MPa,反应时间为0-60分钟,NDCA初始气相浓度为0.03 g / ml。使用美国人的测试材料(ASTM)D 974技术进行分析样品的TAN含量。在GC / MS和GC-FID的帮助下分别鉴定并定量反应产物。实验结果表明,随着反应温度和时间的增加,NDCA的棕褐色的降低增加。在220℃的温度下,大约52.12%的棕褐色,MPP为0.1MPa,反应时间为60分钟。实验数据显示,TAN去除反应动力学跟踪二阶动力学,其活化能量为8.24千卡/摩尔/摩尔和2.087级分数的预指数因子。因此,Subc-Meoh能够减少NDCA的TAN添加任何催化剂或添加剂。

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