Method for modification and resource utilization of coal-oil coprocessing residues
A kerosene co-refining residue and recycling technology, applied in gasification process, petroleum industry, powder suspension method granulation, etc., can solve the problems of high viscosity, poor stability of coal-water slurry, high cohesion, etc. Achieve the effect of harmless treatment and resource utilization, high industrial application value and high treatment efficiency
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Embodiment 1
[0027] A method for resource utilization of kerosene co-refining residue modification is as follows:
[0028] (1) Injection micronization: The kerosene co-refining residue is cooled to 120°C after heat exchange to maintain its fluidity. After being mixed with air by a high-pressure pump, it passes through a nickel-based alloy trumpet-shaped nozzle with an aperture of 0.1-1mm. The upper part of the nozzle is equipped with an air flow channel and a residue flow channel. The two channels converge at the upper part of the nozzle, and are sprayed at high speed by the air flow to disperse the residue into particles with a particle size of 0.1~1mm.
[0029] (2) Surface impregnation modification: the particles are injected into the modified dipping pool at the lower part of the nozzle. The pool contains an aqueous solution containing a polymer surface modifier. The concentration of the aqueous solution is 2%, and the raw material composition of the polymer surface modifier is : 1% mal...
Embodiment 2
[0033] A method for resource utilization of kerosene co-refining residue modification is as follows:
[0034] (1) Injection micronization: The kerosene co-refining residue is cooled to 140°C after heat exchange to maintain its fluidity. After being mixed with air by a high-pressure pump, it passes through a nickel-based alloy trumpet-shaped nozzle with an aperture of 1-10mm. The upper part of the nozzle has an air flow channel and a residue flow channel. The two channels converge at the upper part of the nozzle, and are sprayed at high speed by the air flow to disperse the residue into particles with a particle size of 1-10mm.
[0035] (2) Surface impregnation modification: the particles are injected into the modified dipping pool at the lower part of the nozzle. The pool contains an aqueous solution containing a polymer surface modifier. The concentration of the aqueous solution is 1%, and the raw material composition of the polymer surface modifier is : 5% maleic acid, 43%C ...
Embodiment 3
[0039] A method for resource utilization of kerosene co-refining residue modification is as follows:
[0040] (1) Injection micronization: The kerosene co-refining residue is cooled to 150°C after heat exchange to maintain its fluidity. After being mixed with air by a high-pressure pump, it passes through a nickel-based alloy trumpet-shaped nozzle with an aperture of 0.1-2mm. The upper part of the nozzle has an air flow channel and a residue flow channel. The two channels converge at the upper part of the nozzle, and are sprayed by the air at high speed to disperse the residue into particles with a particle size of 0.1~2mm.
[0041] (2) Surface impregnation modification: the particles are injected into the modified dipping pool at the lower part of the nozzle. The pool contains an aqueous solution containing a polymer surface modifier. The concentration of the aqueous solution is 3%, and the raw material composition of the polymer surface modifier is : 2% maleic acid, 10% C 10~...
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