Method for preparing alkaline cobalt carbonate under hyper-gravity hydrothermal condition
A technology of supergravity and cobalt carbonate, applied in the direction of cobalt carbonate and nanotechnology, can solve the problems of structural relaxation and poor uniformity, and achieve the effect of simple equipment and easy control of reaction
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Embodiment 1
[0026] figure 1 It is a structural diagram of a high-gravity hydrothermal reaction equipment, wherein: 1. Furnace shell, 2 insulation bricks, 3 heating wires, 4 anti-riot cylinder, 5 autoclave, 6 fixed bracket, 7 cooling water pipe, 8 rotating shaft, 9 motor, 10 wind blade.
[0027] The structure of the equipment includes a centrifugal device, a high-pressure reaction kettle, and a temperature control furnace, wherein the centrifugal device includes a motor and a fixed bracket fixed on the motor shaft; the temperature control furnace includes a temperature controller, an electric heating wire, an insulation material and a furnace shell; the autoclave Including kettle lid, kettle body and PTFE lining. The fixed bracket of the centrifugal device is located in the cavity of the temperature control furnace, and the high-pressure reaction kettle is installed on the fixed bracket of the centrifugal device.
Embodiment 2
[0029] Basic cobalt carbonate (Co 2 (OH) 2 CO 3 ) preparation: its preparation steps are:
[0030] Step 1: Add a certain amount of cobalt chloride to 5 milliliters of deionized water to form a cobalt chloride solution with a concentration of 0.5 mol / l;
[0031] Step 2: Add a certain amount of urea to the solution in step 1, adjust the pH value to dissolve it, and require the molar ratio of cobalt chloride and urea to be 1:5;
[0032] Step 3: Add 2 milliliters of dichlorobenzene to the solution in step 2;
[0033] Step 4: Put the mixed solution in step 3 into the autoclave, seal the autoclave, and fix it on figure 1 on a fixed stand in the hypergravity reaction apparatus shown. Then heat up to 120-150°C, keep warm for half an hour, cool down and cool down, after the reaction, the shape of basic cobalt carbonate obtained is a sheet structure, such as figure 2 .
Embodiment 3
[0035] Basic Cobalt Carbonate (Co(OH) 1.02 (CO 3 ) 0.48 0.29H 2 O) preparation: its preparation steps are:
[0036] Step 1: Add a certain amount of cobalt nitrate to 5 ml of deionized water to prepare a cobalt nitrate solution with a concentration of 0.1mol / l;
[0037] Step 2: Add a certain amount of urea to the solution in step 1, adjust the pH value to dissolve it, and require the molar ratio of cobalt nitrate and urea to be 1:2;
[0038] Step 3: add 2 milliliters of bromobenzene in the solution of step 2;
[0039] Step 4: Put the mixed solution in step 3 into the autoclave, seal the autoclave, and fix it on figure 1 on a fixed stand in the hypergravity reaction apparatus shown. Then heat up to 120-150°C, keep the heat for half an hour, cool down and cool down, and after the reaction, the shape of basic cobalt carbonate obtained is a flower-like structure, such as image 3 .
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