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Oxidation kinetics and combustion of boron particles with modified surface

机译:表面改性的硼粒子的氧化动力学和燃烧

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This work is aimed to modify a commercial 95% pure boron powder to improve its ignition. The powder is processed using acetonitrile to dissolve the oxidized and hydrated surface layers. The washed powder re-oxidizes and agglomerates readily, which can be prevented by additionally washing it in toluene and other liquid hydrocarbons, prior to exposing it to an oxidizing atmosphere. The presence and removal of the hydrated oxide layer and oxidation of boron powders are studied using thermo-gravimetry. The processed powders are shown to retain the active boron present in the starting material and maintain their reactivity after extended exposure to an oxidizing environment. The powders are also injected in a pre-mixed air-acetylene flame and their ignition and combustion are studied based on their optical emission. Flame temperature is measured using optical emission spectroscopy. Powder particles washed in acetonitrile, toluene and hexane exhibit substantially shorter ignition delays compared to the starting commercial boron particles. Full-fledged combustion is unaffected by this processing: both, burn times and flame temperatures are nearly identical for commercial and modified powder particles. (C) 2016 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:这项工作旨在修改市售的95%纯硼粉以改善其着火性。使用乙腈对粉末进行处理,以溶解氧化和水合的表面层。洗涤后的粉末容易再氧化和附聚,这可以通过在将其暴露于氧化气氛之前在甲苯和其他液态烃中另外洗涤来防止。使用热重法研究了水合氧化物层的存在和去除以及硼粉的氧化。已显示加工后的粉末可将活性硼保留在原料中,并在长时间暴露于氧化环境后仍保持其反应性。这些粉末也被注入到预混的空气乙炔火焰中,并根据其光发射对它们的着火和燃烧进行研究。使用光发射光谱法测量火焰温度。与起始的商业硼颗粒相比,用乙腈,甲苯和己烷洗涤的粉末颗粒显示出明显更短的点火延迟。完全燃烧不受此过程的影响:商用和改性粉末颗粒的燃烧时间和火焰温度几乎相同。 (C)2016年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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