Improvements to raney copper methanol synthesis catalysts through zinc impregnation

H. Edward Curry-Hyde *, Mark S. Wainwright, David J. Young
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引用次数: 18

Abstract

The leaching of CuAl2 and a Cu-Al-Zn (43.5 wt.-%, Cu, 39.5 wt.-% Al, 17 wt.-% Zn) alloy in 6.1M sodium hydroxide and in 0.62M zincate in 6.1M sodium hydroxide has been investigated at 274 K and 303 K. The effects of leaching conditions on surface area development in the leached materials is also reported. The addition of zincate to the sodium hydroxide solution slows the leaching rate of both alloys, the greatest effect being observed for the Cu-Al-Zn alloy. The decrease in rate results in an increase in surface area. A competing process which causes rearrangement and growth of the copper crystallite limits the maximum attainable surface area, particularly at 303 K.

锌浸渍法对雷尼铜甲醇合成催化剂的改进
研究了CuAl2和Cu-Al-Zn (43.5 wt.-%, Cu, 39.5 wt.-% Al, 17 wt.-% Zn)合金在61 m氢氧化钠和62 m锌酸盐中在274 K和303 K下的浸出。还报道了浸出条件对浸出材料表面积发展的影响。在氢氧化钠溶液中加入锌酸盐减慢了两种合金的浸出速度,其中Cu-Al-Zn合金的浸出效果最大。速率的降低导致表面积的增加。导致铜晶体重排和生长的竞争过程限制了可获得的最大表面积,特别是在303 K时。
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