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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Temperature-programmed and X-ray diffractometry studies of hydrogen-reduction course and products of WO3 powder: Influence of reduction parameters
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Temperature-programmed and X-ray diffractometry studies of hydrogen-reduction course and products of WO3 powder: Influence of reduction parameters

机译:氢气还原过程和WO3粉末产物的温度编程和X射线衍射研究:还原参数的影响

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摘要

The hydrogen-reduction course and products of synthetic tungsten(VI) oxide (WO_3) were examined by means of temperature-programmed reduction (TPR) and X-ray powder diffractometry (XRD) studies. A set of model tungsten compounds was procured and examined similarly for reference purposes. Results obtained could help resolving two subsequent reduction stages: (i) a low-temperature stage (<1050 K) through which WO_3 is reduced to the tetravalent state (WO_2) via formation and subsequent reduction of intermediate WO_(2.96), WO_(2.9), WO_(2.72) oxides; and (ii) a high-temperature stage (>1050 K) through which WO_2 thus produced is reduced to the metallic state (Wo) via two intermediate oxide species (tentatively, WO and W_2O-W_3O). Reduction events involved in the high-temperature stage were found to be relatively more sensitive to the reduction parameters; namely, the starting oxide mass, heating temperature and rate, and gas flow rate and composition. They were also found to require lower activation energies than those required by events occurring throughout the low-temperature stage, a fact that may suspect compliance of the high-temperature reduction events to autocatalytic effects.
机译:通过程序升温还原(TPR)和X射线粉末衍射(XRD)研究,研究了合成钨(VI)氧化物(WO_3)的氢还原过程和产物。采购了一组模型钨化合物,并进行了类似的检查,以供参考。获得的结果可以帮助解决两个后续的还原阶段:(i)低温阶段(<1050 K),通过该阶段WO_3通过形成并随后还原中间体WO_(2.96),WO_(2.9)还原为四价态(WO_2)。 ),WO_(2.72)氧化物; (ii)高温阶段(> 1050 K),由此产生的WO_2通过两个中间氧化物(暂定为WO和W_2O-W_3O)还原为金属态(Wo)。发现高温阶段的还原事件对还原参数相对更敏感。即,起始氧化物的质量,加热温度和速率,以及气体流速和组成。还发现它们所需的活化能比整个低温阶段发生的事件所需的活化能要低,这可能怀疑高温还原事件是否符合自催化作用。

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