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The Development of Novel Fuel Dehydrating Icing Inhibitors

机译:新型燃料脱水糖浆抑制剂的发展

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Dissolved water is a normal component of jet fuel which is vapourised during combustion; however, free water is a contaminant that can starve engines, freeze to form ice crystals capable of blocking fuel feeds, support microbial growth, and contribute towards corrosion. Jet fuel may be protected from the potentially hazardous effects of free-water using biocides and icing/corrosion inhibitors. This investigation seeks to identify novel chemical approaches to the dual management of both water contamination and ice formation in jet fuel. The strategy of using organic molecules as dehydrating agents remains a relatively neglected approach perhaps because of the complexity of the physical organic chemistry involved in developing and refining these systems. However, organic molecules with well characterised dehydrating properties - such as ortho esters, acetals, hemiacetals, ketals, and hemiketals - present themselves as an excellent starting-point for the development and optimisation of novel Fuel Dehydrating Icing Inhibitors (FDII). This paper describes our systematic approach towards the development of jet fuel additives which are kinetically fast, selective, lipophilic water scavengers that produce, upon hydrolysis, a hydrophilic ice inhibitor. A brief human and environmental toxicological screening of candidates is described. We anticipate that this class of FDII represents a novel approach towards protecting jet fuel against the effects of water contamination.
机译:溶解的水是被燃烧期间汽化喷气燃料的正常组分;然而,自由水是可以饿死引擎,冷冻到能够阻断燃料进料的形式冰晶,支持微生物生长,并朝向腐蚀有助于污染物。喷气燃料可被保护从使用生物杀伤剂和除冰/腐蚀抑制剂的游离水的潜在危险的影响。此调查试图确定新的化学方法来既水污染和冰形成在喷气燃料的双重管理。使用有机分子作为脱水剂的策略仍然是一个相对忽视的做法也许是因为参与制定和完善这些系统中的物理有机化学的复杂性。然而,利用充分表征的脱水性能的有机分子 - 如原酸酯,缩醛,半缩醛,缩酮,半缩酮和 - 本自己作为一个极好的起点新颖燃料脱水防冰剂(FDII)的开发和优化。本文描述了对喷气燃料添加剂,其动力学速度快,有选择性的,亲脂性水清除剂产生,在水解时,亲水性冰抑制剂的开发我们的系统的方法。候选人的简要人类和环境的毒性筛选描述。我们预计,这个类的FDII是朝着保护喷气燃料相对于水污染的影响的新方法。

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