Slow release fertilizer production technology and using method of slow release fertilizer
A production technology and biomass technology, applied in the field of slow-release fertilizer production, can solve the problems of difficult control of reaction conditions, accelerated soil acidification, and many influencing factors, so as to effectively adjust the physical and chemical properties of soil, prevent water loss, and improve nutrient composition Effect
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Embodiment 1
[0022] A preparation method of a biochar substrate, comprising the following steps:
[0023] 1) Crush the corn cob into 100 mesh powder;
[0024] 2) Mix 1g of the above powder with 10ml of 1% ammonium sulfate solution and 15ml of 1% ammonium acetate solution under hydrothermal conditions, in 20ml of buffer solution (4.3mmol / L Na 2 HPO 4 , 1.4mmol / L KH 2 PO 4 ) under protection, carry out hydrothermal reaction at 140°C for 3 hours;
[0025] 3) Wash the developed material three times with water, and take the residue;
[0026] 4) The residue was heated to 350°C at a heating rate of 2.5°C under anaerobic conditions, and calcined at high temperature for 3 hours to obtain -COOH, -SO 3 Biochar with H functional groups;
[0027] 5) Soak 1g of the above biochar in 10ml 3% potassium nitrate solution for 5 hours, filter, and dry at 120°C for 3 hours;
[0028] 6) Soak the above drying material in 10ml 1% ammonium hydrogen phosphate solution for 5 hours, filter, and dry at 120°C for...
Embodiment 2
[0033] A preparation method of a biochar substrate, comprising the following steps:
[0034] 1) Crush wheat straw into 100-mesh powder;
[0035] 2) Mix 1g of the above powder with 10ml of 1.5% ammonium sulfate solution and 15ml of 1.3% ammonium acetate solution under hydrothermal conditions, in 20ml of buffer solution (4.3mmol / L Na 2 HPO 4 , 1.4mmol / L KH 2 PO 4 ) under the protection of 160 ° C for 3 hours of hydrothermal reaction;
[0036] 3) Wash the developed material three times with water, and take the residue;
[0037] 4) The residue was heated to 400°C at a heating rate of 2.5°C under anaerobic conditions, and calcined at a high temperature for 2.5 hours to obtain -COOH, -SO 3 Biochar with H functional groups;
[0038] 5) Soak 1g of the above biochar in 10ml 3% potassium nitrate solution for 5 hours, filter, and dry at 120°C for 3 hours;
[0039] 6) Soak the above drying material in 10ml 1% ammonium hydrogen phosphate solution for 5 hours, filter, and dry at 120°...
Embodiment 3
[0044] A preparation method of a biochar substrate, comprising the following steps:
[0045] 1) Crush landscaping waste into 100-mesh powder;
[0046] 2) Mix 1g of the above powder with 10ml of 2% ammonium sulfate solution and 15ml of 1.5% ammonium acetate solution under hydrothermal conditions, in 20ml of buffer solution (4.3mmol / L Na 2 HPO 4 , 1.4mmol / L KH 2 PO 4 ) under the protection of 160 ° C for 3 hours of hydrothermal reaction;
[0047] 3) Wash the developed material three times with water, and take the residue;
[0048]4) The residue was heated to 300°C at a heating rate of 2.5°C under anaerobic conditions, and calcined at high temperature for 3 hours to obtain -COOH, -SO 3 Biochar with H functional groups;
[0049] 5) Soak 1g of the above biochar in 10ml 3% potassium nitrate solution for 5 hours, filter, and dry at 120°C for 3 hours;
[0050] 6) Soak the above drying material in 10ml 1% ammonium hydrogen phosphate solution for 5 hours, filter, and dry at 120°C...
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