•  Persian
    • Persian
    • English
  •   ورود
  • دانشگاه فردوسی مشهد
  • |
  • مرکز اطلاع‌رسانی و کتابخانه مرکزی
    • Persian
    • English
  • خانه
  • انواع منابع
    • مقاله مجله
    • کتاب الکترونیکی
    • مقاله همایش
    • استاندارد
    • پروتکل
    • پایان‌نامه
  • راهنمای استفاده
View Item 
  •   کتابخانه دیجیتال دانشگاه فردوسی مشهد
  • Fum
  • Articles
  • ProfDoc
  • View Item
  •   کتابخانه دیجیتال دانشگاه فردوسی مشهد
  • Fum
  • Articles
  • ProfDoc
  • View Item
  • همه
  • عنوان
  • نویسنده
  • سال
  • ناشر
  • موضوع
  • عنوان ناشر
  • ISSN
  • شناسه الکترونیک
  • شابک
جستجوی پیشرفته
JavaScript is disabled for your browser. Some features of this site may not work without it.

Structure Stability and Oxygen Permeability of Perovskite-type Oxides of Ba0:5Sr0:5Co0:8Fe0:1R0:1O3¡± (R=Al, Mn, Fe, Ce, Cr, Ni, Co)

نویسنده:
Ensieh Ganji Babakhani
,
Jafar Towfighi
,
Laleh Shirazi
,
علی نخعی پور
,
Akbar Zamaniyan
,
Zahra Shafaei
,
Ali Nakhaei Pour
سال
: 2012
چکیده: Perovskite-type Ba0.5Sr0.5Co0.8Fe0.1R0.1O3−δ (R=Al, Mn, Fe, Ce, Cr, Ni, Co) oxide membranes were exploited and synthesized. Oxygen behavior, order-disorder transition and phase stability of these composite oxides were investigated by combined analysis of X-ray diffraction (XRD), temperature programmed desorption (TPD), thermogravimetric-differential thermal analysis (TG–DTA). Oxygen permeation through these membranes was studied by the gas chromatography (GC) method using a high-temperature permeation cell in a wide temperature range from 700 to 950 °C. High permeation fluxes were observed for these materials. The high permeation flux was about 3.19 ml·min−1·cm−2 under air/He gradients at 950 °C, which was achieved for Ba0.5Sr0.5Co0.8Fe0.1Ni0.1O3−δ (BSCFNiO) membrane. The results of analysis showed no phase transition for BSCFNiO oxide with increasing temperature and XRD pattern of this material after O2-TPD indicated to sustain a pure perovskite structure after oxygen permeation process.
یو آر آی: https://libsearch.um.ac.ir:443/fum/handle/fum/3346663
کلیدواژه(گان): Perovskite,

Ceramic membrane
,


Oxygen separation
,


Phase stability
کالکشن :
  • ProfDoc
  • نمایش متادیتا پنهان کردن متادیتا
  • آمار بازدید

    Structure Stability and Oxygen Permeability of Perovskite-type Oxides of Ba0:5Sr0:5Co0:8Fe0:1R0:1O3¡± (R=Al, Mn, Fe, Ce, Cr, Ni, Co)

Show full item record

contributor authorEnsieh Ganji Babakhanien
contributor authorJafar Towfighien
contributor authorLaleh Shirazien
contributor authorعلی نخعی پورen
contributor authorAkbar Zamaniyanen
contributor authorZahra Shafaeien
contributor authorAli Nakhaei Pourfa
date accessioned2020-06-06T13:13:38Z
date available2020-06-06T13:13:38Z
date issued2012
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3346663
description abstractPerovskite-type Ba0.5Sr0.5Co0.8Fe0.1R0.1O3−δ (R=Al, Mn, Fe, Ce, Cr, Ni, Co) oxide membranes were exploited and synthesized. Oxygen behavior, order-disorder transition and phase stability of these composite oxides were investigated by combined analysis of X-ray diffraction (XRD), temperature programmed desorption (TPD), thermogravimetric-differential thermal analysis (TG–DTA). Oxygen permeation through these membranes was studied by the gas chromatography (GC) method using a high-temperature permeation cell in a wide temperature range from 700 to 950 °C. High permeation fluxes were observed for these materials. The high permeation flux was about 3.19 ml·min−1·cm−2 under air/He gradients at 950 °C, which was achieved for Ba0.5Sr0.5Co0.8Fe0.1Ni0.1O3−δ (BSCFNiO) membrane. The results of analysis showed no phase transition for BSCFNiO oxide with increasing temperature and XRD pattern of this material after O2-TPD indicated to sustain a pure perovskite structure after oxygen permeation process.en
languageEnglish
titleStructure Stability and Oxygen Permeability of Perovskite-type Oxides of Ba0:5Sr0:5Co0:8Fe0:1R0:1O3¡± (R=Al, Mn, Fe, Ce, Cr, Ni, Co)en
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsPerovskiteen
subject keywords

Ceramic membrane
en
subject keywords

Oxygen separation
en
subject keywords

Phase stability
en
journal titleJournal of Materials Science and Technologyfa
pages177-183
journal volume28
journal issue2
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1035525.html
identifier articleid1035525
  • درباره ما
نرم افزار کتابخانه دیجیتال "دی اسپیس" فارسی شده توسط یابش برای کتابخانه های ایرانی | تماس با یابش
DSpace software copyright © 2019-2022  DuraSpace