Effects of rare-earth oxide catalysts on the ignition and combustion characteristics of boron nanoparticles

被引:61
作者
Karmakar, Srinibas [1 ]
Wang, Neng [2 ]
Acharya, Sumanta [1 ]
Dooley, Kerry M. [2 ]
机构
[1] Louisiana State Univ, Dept Mech Engn, Baton Rouge, LA 70803 USA
[2] Louisiana State Univ, Dept Chem Engn, Baton Rouge, LA 70803 USA
基金
美国国家科学基金会;
关键词
Boron; Nanoparticles; Cerium oxide; Catalysts; Ignition; Combustion; CERIA; TRANSFORMATIONS; PARTICLES; HYDROGEN;
D O I
10.1016/j.combustflame.2013.06.030
中图分类号
O414.1 [热力学];
学科分类号
摘要
Boron is a potential choice as a fuel additive, especially for biofuels, because it has a high volumetric heating value among different practical metal additives. Although theoretically it can yield a great amount of energy upon complete combustion, its combustion is retarded by the initial presence of boron oxide which coats the particle surface. The present study deals with an experimental investigation of the ignition and combustion behaviors of boron and ball-milled samples of boron and rare earth oxide catalysts in an ethanol spray flame. Commercial boron nanoparticles and both commercial and synthesized ceria-based catalysts have been used for this study. A simple ball-milling technique was employed to prepare the catalyst coated samples, and this technique can be easily adapted for production of large batches. It was observed that the addition of nano-sized catalyst particles to boron nanoparticles improved the ignition characteristics (significant reduction in ignition delay) of the boron. Three different percentages of catalyst loading were tested to determine the effects of catalyst loading on both the ignition behavior of the boron and the primary combustion reaction. Analysis of BO2* emissions and of the exiting particles confirmed complete boron combustion in the combustor geometry. The nanoparticles containing ceria demonstrated improvements in both boron ignition (reduced ignition delay time) and (less significantly) the ethanol combustion. (C) 2013 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
引用
收藏
页码:3004 / 3014
页数:11
相关论文
共 52 条
[1]  
[Anonymous], 2006, P 42 AIAA ASME SAE A
[2]  
[Anonymous], 1974, The Spectroscopy of Flames
[3]  
Dreizin E.L., 1995, Eastern States Section Meeting, P333
[4]   Metal-based reactive nanomaterials [J].
Dreizin, Edward L. .
PROGRESS IN ENERGY AND COMBUSTION SCIENCE, 2009, 35 (02) :141-167
[5]   Phase changes in boron ignition and combustion [J].
Dreizin, EL ;
Keil, DG ;
Felder, W ;
Vicenzi, EP .
COMBUSTION AND FLAME, 1999, 119 (03) :272-290
[6]   PREPARATION AND CHARACTERIZATION OF GRANULAR HYBRID REACTIVE MATERIALS [J].
Ermoline, Alexandre ;
Aly, Yasmine ;
Trunov, Mikhaylo A. ;
Schoenitz, Mirko ;
Dreizin, Edward L. .
INTERNATIONAL JOURNAL OF ENERGETIC MATERIALS AND CHEMICAL PROPULSION, 2010, 9 (03) :267-284
[7]  
FAETH CM, 1984, CPIA PUBLICATION, V412, P15
[8]   Boron particle ignition and combustion at 30-150 ATM [J].
Foelsche, RO ;
Burton, RL ;
Krier, H .
COMBUSTION AND FLAME, 1999, 117 (1-2) :32-58
[9]   Laser ignition of nanocomposite thermites [J].
Granier, JJ ;
Pantoya, ML .
COMBUSTION AND FLAME, 2004, 138 (04) :373-383
[10]   Low-temperature transformations of orthoboric acid [J].
Grigorovskaya, V. A. ;
Shashkin, D. P. ;
Zapadinskii, B. I. .
RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY B, 2009, 3 (04) :656-660