Preparation method of nickel based metal load type catalyst
A supported catalyst, base metal technology, applied in metal/metal oxide/metal hydroxide catalysts, chemical instruments and methods, physical/chemical process catalysts, etc., can solve the cumbersome preparation process, increased energy consumption, metal loading The problem of multiple intermediate calcination steps of the type catalysts, to achieve the effect of simplifying the activation process, reducing energy consumption, high catalytic activity and selectivity
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Publication Date
- 2012-06-27
Smart Images
Figure 1
Abstract
Description
(1) Technical field
[0001] The present invention relates to a kind of preparation method of nickel-based metal supported catalyst, particularly relate to a kind of hydrotalcite containing Ni in H 2 Construction of metal-supported catalysts by direct reduction activation under atmosphere. (2) Background technology
[0002] Hydrotalcite is a kind of layered anionic clay (Layered Double Hydroxides, referred to as LDHs), the general chemical formula is [M 2+ 1-x m 3+ x (OH) 2 ](A n- ) x / n mH 2 O, where M 2+ and M 3+ Represent divalent and trivalent metal ions, such as Mg 2+ , Zn 2+ 、Co 2+ 、Ni 2+ and Al 3+ , Fe 3+ and other metal cations; x is M 3+ / (M 2+ +M 3+ ) Molar ratio, 0.20~0.40; A n- is an intercalation anion, such as CO 3 2- , NO 3 - , heteropolyanions, metal complex ions, etc. Due to the unique layer cation adjustability and interlayer anion exchangeability of this kind of material, it has great application potential in catalysis, adsorption, ion...
Examples
Embodiment 1
[0021]Example 1: 1.5g NiMgAl-LDHs hydrotalcite is loaded into a stainless steel reactor, and reduced by pure hydrogen, the hydrogen flow rate is 30ml / min, the reduction temperature is programmed from room temperature to 500°C, and the heating rate is 5°C / min, keeping 2h. The catalyst after direct reduction activation is recorded as NiMgAl-LDHs-500(R).
Embodiment 2
[0022] Example 2: 1.5g NiMgAl-LDHs hydrotalcite is loaded into a stainless steel reactor, and reduced by pure hydrogen, the hydrogen flow rate is 30ml / min, the reduction temperature is programmed from room temperature to 550°C, and the heating rate is 5°C / min, keeping 2h. The catalyst after direct reduction activation is recorded as NiMgAl-LDHs-550(R).
Embodiment 3
[0023] Example 3: 1.5g NiMgAl-LDHs hydrotalcite is loaded into a stainless steel reactor, and reduced by pure hydrogen, the hydrogen flow rate is 30ml / min, the reduction temperature is programmed from room temperature to 600°C, and the heating rate is 5°C / min, keeping 2h. The catalyst after direct reduction activation is recorded as NiMgAl-LDHs-600(R).