2004
DOI: 10.1023/b:refr.0000036729.24986.e3
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A Heating Module Equipped with Lanthanum Chromite-Based Heaters

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Cited by 15 publications
(13 citation statements)
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“…These materials are taken as oxidation catalysts for soot combustion [3,4]. Since lanthanum chromite is an oxide based material having high electrical conductivity, this material has found use in electric heaters [5]. This is also used in high temperature NO x sensors [6,7].…”
Section: Introductionmentioning
confidence: 99%
“…These materials are taken as oxidation catalysts for soot combustion [3,4]. Since lanthanum chromite is an oxide based material having high electrical conductivity, this material has found use in electric heaters [5]. This is also used in high temperature NO x sensors [6,7].…”
Section: Introductionmentioning
confidence: 99%
“…In [1] the possibility is demonstrated of multiphase refractory materials based on lanthanum chromite in heating modules for operation in an air atmosphere. These heating modules have a series of advantages over analogs within which as the electrical conducting resistive material there is use, for example, of silicon carbide, molybdenum disilicide, and single-phase materials based on lanthanum chromite.…”
mentioning
confidence: 99%
“…On the example of a refractory composition of lanthanum chromite -yttrium oxide the formation of stochastic phase-mosaic structure and its evolution during high-temperature exposure is demonstrated. The main features of crystal phase and porosity transformation of refractory composite constituents are revealed.Multiphase refractory composites based on lanthanum chromite are used as high-temperature electrical conducting materials in oxidizing gas atmospheres [1,2]. In [1] the possibility is demonstrated of multiphase refractory materials based on lanthanum chromite in heating modules for operation in an air atmosphere.…”
mentioning
confidence: 99%
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“…Devido às suas características, o cromito de lantânio torna-se adequado para aplicações como interconector em células a combustível de óxido sólido (HTSOFC) [1,15,18,70,71], geradores magneto hidrodinâmicos (MHD) [72][73][74], catalisadores para queima de combustíveis [75][76][77], sensores de NO X em alta temperatura [78] e resistências para fornos [79,80]. Ainda na geração de energia, pode ser utilizado como ânodo para células de óxido sólido de temperatura intermediária (ITSOFC) [8][9][10][81][82][83].…”
Section: Aplicaçõesunclassified