MICROWAVE PLASMA GENERATION OF ARSINE FROM HYDROGEN AND SOLID ARSENIC

被引:8
作者
OMSTEAD, TR [1 ]
ANNAPRAGADA, AV [1 ]
JENSEN, KF [1 ]
机构
[1] UNIV MINNESOTA,DEPT CHEM ENGN,MINNEAPOLIS,MN 55455
关键词
D O I
10.1063/1.104182
中图分类号
O59 [应用物理学];
学科分类号
摘要
The generation of arsine from the reactions of hydrogen and elemental arsenic in a microwave plasma reactor is described. The arsenic is evaporated from a solid source upstream and carried into the microwave plasma region by a mixture of hydrogen and argon. Stable reaction products, arsine and diarsine are observed by molecular beam sampled mass spectroscopy along with partially hydrogenated species (e.g., AsH and AsH2). The effect of composition and flow rate of the argon/hydrogen carrier gas mixture on the amount of arsine generated is investigated. The arsine production reaches a maximum for an argon-to-hydrogen ratio of unity indicating that metastable argon species act as energy transfer intermediates in the overall reaction. The generation of arsine and diarsine from easily handled solid arsenic by this technique makes it attractive as a possible arsenic source for the growth of compound semiconductors by low-pressure metalorganic chemical vapor deposition.<lz> <lz> <lz> <lz> <lz>.
引用
收藏
页码:2543 / 2545
页数:3
相关论文
共 50 条
[41]   ADAPTABILITY OF WET DECOMPOSITION METHOD TO FOOD SAMPLES FOR DETERMINATION OF ARSENIC BY ARSINE GENERATION ATOMIC ABSORPTION SPECTROPHOTOMETRY [J].
YASUI, A ;
TSUTSUMI, C .
BUNSEKI KAGAKU, 1977, 26 (12) :809-814
[42]   Total Arsenic Analysis in Edible Fungi with Hydride Generation-Microwave Plasma-Atomic Emission Spectroscopy [J].
Li A. ;
Huang J. .
Shipin Kexue/Food Science, 2021, 42 (20) :260-265
[43]   MICROWAVE PROPERTIES OF SOLID STATE PLASMA [J].
VESELAGO, VG ;
GLUSHKOV, MV ;
PROKHORO.AM .
RADIO ENGINEERING AND ELECTRONIC PHYSICS-USSR, 1967, 12 (07) :1134-+
[44]   Determination of arsenic by high power nitrogen microwave induced plasma atomic emission spectrometry with hydride generation technique [J].
Nakahara, T ;
Takeuchi, N .
ANALYTICAL SCIENCES, 1997, 13 :13-16
[45]   Determination of arsenic and antimony by microwave plasma atomic emission spectrometry coupled with hydride generation and a PTFE membrane separator [J].
Gong, ZB ;
Chan, WF ;
Wang, XR ;
Lee, FSC .
ANALYTICA CHIMICA ACTA, 2001, 450 (1-2) :207-214
[46]   Hydrogen production from ethanol in nitrogen microwave plasma at atmospheric pressure [J].
Hrycak, Bartosz ;
Czylkowski, Dariusz ;
Miotk, Robert ;
Dors, Miroslaw ;
Jasinski, Mariusz ;
Mizeraczyk, Jerzy .
OPEN CHEMISTRY, 2015, 13 (01) :317-324
[47]   KINETICS OF FORMATION OF HYDROGEN CYANIDE FROM METHANE AND AMMONIA IN A MICROWAVE PLASMA [J].
BROCKMEI.NF ;
JUULDAM, T .
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1969, (SEP) :FU55-&
[48]   Hydrogen production from methanol reforming in microwave "tornado"-type plasma [J].
Bundaleska, N. ;
Tsyganov, D. ;
Saavedra, R. ;
Tatarova, E. ;
Dias, F. M. ;
Ferreira, C. M. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2013, 38 (22) :9145-9157
[49]   Hydrogen production from ethanol decomposition by microwave plasma TIAGO torch [J].
Rincon, R. ;
Marinas, A. ;
Munoz, J. ;
Calzada, M. D. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2014, 39 (22) :11441-11453
[50]   Hydrogen recovery from the thermal plasma gasification of solid waste [J].
Byun, Youngchul ;
Cho, Moohyun ;
Chung, Jae Woo ;
Namkung, Won ;
Lee, Hyeon Don ;
Jang, Sung Duk ;
Kim, Young-Suk ;
Lee, Jin-Ho ;
Lee, Carg-Ro ;
Hwang, Soon-Mo .
JOURNAL OF HAZARDOUS MATERIALS, 2011, 190 (1-3) :317-323