Method for comprehensively utilizing red mud and high-phosphorus iron ore
A high-phosphorus iron ore and red mud technology, which is applied in the field of red mud and high-phosphorus iron ore solid-state dephosphorization and iron extraction technology, can solve the problems of environmental pollution, red mud cannot be used, etc., to reduce the phosphorus content and facilitate industrialization The effect of low promotion and production cost
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Embodiment 1
[0032] A method for comprehensive utilization of red mud and high phosphorus iron ore of the present invention comprises the following preparation steps:
[0033] a. Mix 1kg high-phosphorus iron ore, 10g red mud and 10g coal powder evenly, wherein the main components of red mud are: SiO2 is 12wt%, CaO is 3.5wt%, Fe 2 o 3 38wt%, Al 2 o 3 18wt%, Na 2 O is 9 wt %, TiO 2 1.5wt%; high phosphorus iron ore main components: TFe is 50wt%, Al 2 o 3 is 5wt%, P is 1.28wt%;
[0034] b. Heat the mixed material described in step a to 100°C and keep it warm for 10 minutes;
[0035] c, after the step b reaction finishes, drop to room temperature, filter the liquid after soaking in water for 10min, and reclaim it for the preparation of phosphate fertilizer;
[0036] d, the solid filtered out in step c is subjected to magnetic separation to obtain hematite; the obtained non-magnetic part is a mixture of aluminum, silicon, titanium and other valuable metal salts in high phosphorus iron or...
Embodiment 2
[0039] A method for comprehensive utilization of red mud and high phosphorus iron ore of the present invention comprises the following preparation steps:
[0040] a. Mix 1kg of high-phosphorus iron ore, 500g of red mud and 100g of coal powder evenly, wherein the main components of red mud are: SiO2 is 12wt%, CaO is 3.5wt%, Fe 2 o 3 38wt%, Al 2 o 3 18wt%, Na 2 O is 9 wt %, TiO 2 1.5wt%; high phosphorus iron ore main components: TFe is 50wt%, Al 2 o 3 is 5wt%, P is 1.28wt%;
[0041]b. Heat the mixed material described in step a to 500°C and keep it warm for 300min;
[0042] c, after the completion of the reaction in step b, cool down to room temperature, soak in circulating water for 60min and filter out the liquid;
[0043] d. The solid filtered out in step c is separated by magnetic separation to obtain magnetite; aluminum, titanium, rare scattered metals and rare rare earth metals in the high phosphorus iron ore and red mud enter the non-magnetic part for recycling. ...
Embodiment 3
[0046] A method for comprehensive utilization of red mud and high phosphorus iron ore of the present invention comprises the following preparation steps:
[0047] a. Mix 500g of high-phosphorus iron ore, 500g of red mud and 500g of coal powder evenly, wherein the main components of red mud are: SiO2 is 12wt%, CaO is 3.5wt%, Fe 2 o 3 38wt%, Al 2 o 3 18wt%, Na 2 O is 9 wt %, TiO 2 1.5wt%; high phosphorus iron ore main components: TFe is 50wt%, Al 2 o 3 is 5wt%, P is 1.28wt%;
[0048] b. Heat the mixed material described in step a to 900°C and keep it warm for 120min;
[0049] c, after the completion of the reaction in step b, drop to room temperature, soak in water for 120min and filter out the liquid;
[0050] d. The solid filtered out in step c is separated by magnetic separation to obtain iron concentrate; the aluminum and titanium in the high phosphorus iron ore and red mud enter the non-magnetic part for recycling.
[0051] After analysis and testing, the obtained ...
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