Fe/C composite porous structure material as well as preparation method and application thereof
A technology of porous structure and mixed materials, applied in chemical instruments and methods, biological water/sewage treatment, restoration of contaminated soil, etc., can solve the problems of low calorific value of liquid fuel, complex composition, carbon deposition in boilers, etc., and achieve improvement Particle strength, large pore volume, enhanced sintering effect
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Embodiment 1
[0038] In this example, first prepare the Fe / C composite porous structure material according to the following steps:
[0039] (1) Select a limonite ore sample with an iron grade of 48.9%, crush it and pass through a 0.1mm sieve to obtain limonite powder; crush rape straw and pass through a 1mm sieve to obtain straw powder;
[0040] (2) Weighing the limonite powder and straw powder according to the mass ratio of 1:3 and mixing them evenly to obtain the mixture;
[0041] (3) above-mentioned mixture is added in the hopper of screw extruder molding machine, extruded and formed into the rod-shaped particle of diameter 5mm;
[0042] (4) Roast the formed rod-shaped particles in a tube furnace at 750°C for 25 minutes in a hydrogen atmosphere, and then naturally cool to room temperature in an oxygen-free atmosphere to obtain Fe / C composite porous structure material.
[0043] figure 1 The X-ray diffraction pattern of the Fe / C composite porous structure material powder prepared for thi...
Embodiment 2
[0047] In this example, first prepare the Fe / C composite porous structure material according to the following steps:
[0048] (1) crush siderite ore with an iron grade of 40.31%, and pass through a 0.1mm sieve to obtain siderite powder; crush rape straw and pass through a 1mm sieve to obtain straw powder;
[0049] (2) Weigh the deposited siderite powder and the straw powder according to the mass ratio of 1:5 and mix them evenly to obtain the mixture;
[0050] (3) above-mentioned mixture is added in the hopper of screw extruder molding machine, extruded and formed into the rod-shaped particle of diameter 5mm;
[0051] (4) Roast the formed rod-shaped particles in a tube furnace at 750°C for 30 minutes in a hydrogen atmosphere, and then naturally cool to room temperature in an oxygen-free atmosphere to obtain Fe / C composite porous structure material.
[0052] image 3 The X-ray diffraction pattern of the Fe / C composite porous structure material powder prepared for this exampl...
Embodiment 3
[0056] In this example, first prepare the Fe / C composite porous structure material according to the following steps:
[0057] (1) Crushing the oolitic hematite ore with an iron grade of 52.4% and passing it through a 0.1mm sieve to obtain oolitic hematite powder; crushing the rape straw and passing it through a 1mm sieve to obtain the straw powder;
[0058] (2) Weigh the oolitic hematite powder and the straw powder according to the mass ratio of 1:4 and mix them evenly to obtain the mixture;
[0059] (3) above-mentioned mixture is added in the hopper of screw extruder molding machine, extruded and formed into the rod-shaped particle of diameter 5mm;
[0060] (4) Roast the formed rod-shaped particles in a tube furnace at 750°C for 30 minutes in a hydrogen atmosphere, and then naturally cool to room temperature in an oxygen-free atmosphere to obtain Fe / C composite porous structure material.
[0061] Figure 5 The X-ray diffraction pattern of the Fe / C composite porous structu...
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