首页> 外国专利> AMMONIA DEPOSITION PRECIPITATION PROCESS FOR PRODUCING A COPPER-NICKEL/GAMMA-ALUMINA CATALYST, SAID CATALYST AND ITS USE IN THE CONVERSION OF EXHAUST GASES

AMMONIA DEPOSITION PRECIPITATION PROCESS FOR PRODUCING A COPPER-NICKEL/GAMMA-ALUMINA CATALYST, SAID CATALYST AND ITS USE IN THE CONVERSION OF EXHAUST GASES

机译:氨沉积沉淀方法,用于制备铜镍/γ-氧化铝催化剂,所述催化剂及其在废气转化中的用途

摘要

A process for the production of a catalyst comprising the steps of: dissolving the requisite quantities of copper nitrate and nickel nitrate in de-ionised water to provide a sub-0.30 molar aqueous solution of copper nitrate and nickel nitrate together in the ratio required; providing an ammoniacal solution by adding concentrated aqueous solution of ammonia in a quantity equal to between six and ten times the quantity required to realise both a 1:6 molar ratio for Cu2+ to ammonia and a 1:6 molar ratio for Ni2+ to ammonia; loading gamma alumina with 1 to 30% w/w of copper and nickel in a weight ratio of nickel to copper of 1:5 to 2:1 by suspending the requisite quantity of gamma alumina in said ammoniacal solution to achieve the required loading of copper and nickel; stirring the resulting gamma alumina suspension for at least 4 h at room temperature; then the volatile components evaporate under ambient conditions leaving dry loaded gamma alumina, which is calcined at a temperature of at least 260° C. for at least 30 min with a constant heating up rate; a catalyst or catalyst mixture, the catalyst or each catalyst in the catalyst mixture being obtainable by the above-mentioned process; and the use of the catalyst or catalyst mixture for the conversion of exhaust gases from an internal combustion engine into carbon dioxide, water and nitrogen.
机译:制备催化剂的方法,包括以下步骤:将所需量的硝酸铜和硝酸镍溶解在去离子水中,以所需的比例提供硝酸铜和硝酸镍的亚-0.30摩尔水溶液;通过将浓缩的氨水溶液加入到等于六倍至10倍的量,以实现1:6摩尔比对于Ni2 +至氨的1:6摩尔比的量增加〜10倍的量来提供氨的氨。用1至30%w / w加载铜和镍的铜和镍以镍为1:5至2:1的铜和镍通过悬浮在所述氨基溶液中的必需量的γ氧化铝以达到所需的铜负荷和镍;在室温下搅拌所得γ氧化铝悬浮液至少4小时;然后挥发性组分在环境条件下蒸发留下干燥负载的γ氧化铝,其在至少260℃的温度下煅烧至少30分钟的恒定加热速率;催化剂或催化剂混合物,催化剂或催化剂混合物中的每种催化剂可通过上述方法获得。并使用催化剂或催化剂混合物将废气从内燃机转化为二氧化碳,水和氮。

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