Method for preparing environment friendly catalyst with gold carried
An environmentally friendly, catalyst technology, applied in catalyst activation/preparation, chemical instruments and methods, metal/metal oxide/metal hydroxide catalysts, etc., can solve problems such as consumption of large distilled water, waste of water resources, and difficulty in post-processing , to achieve the effect of reducing energy consumption, reducing preparation cost and reducing preparation time
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Embodiment 1
[0015] Evenly mix 10 ml of 1M ferric nitrate solution and 0.2 ml of 0.3 M chloroauric acid solution, place in a water bath at 20° C., and add 30 ml (wt) 10% sodium carbonate solution dropwise under vigorous stirring to form a co-precipitation. Adjust the pH value to 8, continue stirring for 2 hours, let stand for 3 hours, filter, and let the catalyst dry naturally at room temperature for 24 hours to obtain catalyst cat1. Its chlorine-gold atomic ratio is greater than or equal to 2 detected by XPS.
Embodiment 2
[0017] Mix 10ml of 0.5M ferric nitrate solution with 0.2ml of 0.2M chloroauric acid solution, place in a 70°C water bath, and add 20ml (wt) 10% sodium carbonate solution dropwise under vigorous stirring to form a co-precipitation. Adjust the pH value to 10, continue to stir for 2 hours, let stand for 3 hours, filter, and dry at 80°C for 5 hours to obtain catalyst cat2. Its chlorine-gold atomic ratio is greater than or equal to 2 detected by XPS.
Embodiment 3
[0019] Mix 20ml of 0.1M ferric nitrate solution with 0.1ml of 0.01M chloroauric acid solution, place in a water bath at 50°C, and add 10ml (wt) 5% sodium carbonate solution dropwise under vigorous stirring to form a co-precipitation. Adjust the pH to 9, continue to stir for 2 hours, let stand for 3 hours, filter, and dry at 50°C for 5 hours to obtain the catalyst cat3. Its chlorine-gold atomic ratio is greater than or equal to 2 detected by XPS.
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