Supported type nickel catalyst for producing hydrogen from decomposition of ammonia and preparation method
A nickel catalyst, supported technology, applied in molecular sieve catalysts, chemical instruments and methods, metal/metal oxide/metal hydroxide catalysts, etc., can solve the problems of easy inclusion of precursors and difficulty in controlling the pore structure of catalysts, etc. Achieve the effect of strong repeatability, high stability and high specific surface area
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Embodiment 1
[0030] Mix nickel nitrate (28.2g), nitric acid (1.98g), urea (19.3g), SBA-15 (1.95g) and deionized water to prepare a 300ml suspension, and then heat to 90°C. After stirring for 120 minutes the temperature was lowered to 25°C and filtered. The samples were washed several times with 100 ml of deionized water. The sample obtained was treated at 110° C. for 24 hours. Dried samples were fired at 550°C for 3 hours. Get 0.1g catalyst and put in quartz reactor, in 25% H 2 / He mixed gas atmosphere from room temperature to 500°C at 5°C / min, and activated at this temperature for 5 hours, then purged with helium and passed through high-purity ammonia for reaction. Under the reaction conditions of 600°C and space velocity of 30000ml / h.g-cat, the ammonia decomposition reaction results are as follows: the ammonia conversion rate is 92.1%, and the hydrogen formation rate is 30.8mmol / min.g cat ; The nickel particles in the active center are about 7.8 nanometers.
Embodiment 2
[0032] The stirring time of catalyst preparation is 180 minutes, and others are identical with embodiment 1. Under the reaction conditions of 600°C and space velocity of 30000ml / h.g-cat, the ammonia decomposition reaction results are as follows: the ammonia conversion rate is 96.2%, and the hydrogen formation rate is 32.2mmol / min.g cat ; The nickel particle in the active center is about 7.4 nanometers.
Embodiment 3
[0034] The reduction temperature is 600°C, and the others are the same as in Example 2. Under the reaction conditions of 600°C and space velocity of 30000ml / h.g-cat, the ammonia decomposition reaction results are as follows: the conversion rate of ammonia is 100%, and the formation rate of hydrogen is 33.5mmol / min.g cat ; The nickel particle of the active center is about 5.7 nanometers.
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