Upgrading The Environmental Properties Of Kirkuk Kerosene Using Glacial Acetic Acid

Serwan Ibrahem Abdulkhader, Mohammed Jawdat Barzanjy
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Abstract

Glacial acetic acid was used to improve Kirkuk kerosene samples and decrease their aromatics contents. Two sets of experimental processes were performed: the first set included more process steps (mixing by orbital shaker, heating, centrifugation, and stabilization over many days). This set of experiments showed its maximum improvement when 1 mL of glacial acetic acid was added to 10 mL of Kirkuk kerosene sample to get a 42% improvement in the aniline point and a 12.5% improvement in the smoke point. The smoke point test values gave confusing results when the stabilization was increased to 4 days; the reason may be the chemical cracking of single-ring aromatic components into polyromantic components like naphthalene, which reduced the quality of the kerosene samples. The second set of experiments included only mixing and leaving the processed kerosene sample with 2 mL mixtures of glacial acetic acid and distilled water to set for 5 minutes. The greatest improvement was obtained when 1.8 mL of water containing 0.2 mL of glacial acetic acid was mixed with 10 mL of kerosene samples, resulting in a 19% improvement in aniline point and a 45% improvement in smoke point. The total sulfur percent and flashpoint tests revealed that the second set also had an acceptable chemical effect on kerosene samples by reducing 4.8% for the total sulfur test and increasing 11.7% for the flashpoint test. As a number, the first set of experiments showed better improvements in comparison with the second set, but to scale up these experiments and apply them industrially will be very difficult and expensive, and some steps are difficult to apply like centrifugation because of its high cost and because the stabilization step consumes a lot of time. Therefore, the second set of results will be more acceptable from an engineering point of view.
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用冰醋酸改善基尔库克煤油的环境性能
冰醋酸对基尔库克煤油样品进行改良,降低其芳烃含量。进行了两组实验过程:第一组包括更多的工艺步骤(通过轨道振动筛混合,加热,离心和稳定许多天)。本组实验表明,在10 mL基尔库克煤油样品中加入1 mL冰醋酸,苯胺点提高42%,烟点提高12.5%,改善效果最大。稳定化时间延长至4天,烟点试验结果混乱;其原因可能是单环芳香族组分发生化学裂解,形成萘等多环芳香族组分,降低了煤油样品的质量。第二组实验只将处理后的煤油样品与2 mL冰醋酸和蒸馏水的混合物混合,静置5分钟。将1.8 mL含0.2 mL冰醋酸的水与10 mL煤油样品混合后,苯胺点提高19%,烟点提高45%,改善效果最大。总硫含量和闪点测试表明,第二套对煤油样品的化学效果也可以接受,总硫含量测试降低4.8%,闪点测试增加11.7%。作为一个数字,第一组实验与第二组相比显示出更好的改进,但要扩大这些实验并将其应用于工业将是非常困难和昂贵的,有些步骤很难应用,比如离心,因为它的高成本,因为稳定步骤消耗大量时间。因此,从工程的角度来看,第二组结果将更容易被接受。
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