Schwertmannite for removing phosphorus in sewage and efficient synthesis method of Schwertmannite
A Shishi mineral, high-efficiency technology, applied in the direction of water pollutants, water/sewage treatment, chemical instruments and methods, etc., can solve the problems of harsh conditions and procedures, long process flow, low synthesis efficiency, etc., to achieve low cost, The effect of convenient operation and improved synthesis efficiency
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Embodiment 1
[0038] In this embodiment, the process of efficiently synthesizing Shi's minerals from acidic mine wastewater includes the following steps:
[0039] (1) Filter out impurities: filter out suspended particles in acid mine wastewater. The water sample used in this example was collected from acid mine wastewater discharged from a pyrite smelter in South China, with a pH of 2.72 and a dissolved iron content of 895 mg / L, of which Fe 2+ The content is 436mg / L, SO 4 2- Content 5200mg / L.
[0040](2) Alkali regulates the formation of Shi's minerals: the filtered wastewater was aerated for 2 days, added caustic soda (1.5g / L), stirred at 150rpm for 3h, the pH of the measurement system was 3.82, and the total iron precipitation rate was 98 %, to obtain precipitate;
[0041] (3) Mineral collection: the obtained precipitate was collected by filtration with a 0.45 μm filter membrane, washed with dilute sulfuric acid (pH=4.0) and deionized water for 2 times, and dried in a drying oven at 6...
Embodiment 2
[0058] The process of efficiently synthesizing Shi's minerals from acid mine wastewater and the application of phosphorus removal in wastewater includes the following steps:
[0059] (1) Filtration to remove impurities: the water sample used in this example is collected from an acid reservoir downstream of a metal mine open-pit mining plant in the Jianghuai area, with a pH of 2.12 and a soluble iron content of 1260 mg / L, SO 4 2- Content 6000mg / L, filter to remove suspended particles in acid mine wastewater.
[0060] (2) Alkali regulates mineral formation: the filtered acidic mine wastewater was aerated for 3 days, added magnesium oxide (5g / L), stirred at a stirring speed of 100rpm for 5h, the pH of the measurement system was 2.86, and the total iron precipitation rate was 90 %, to obtain precipitate;
[0061] (3) Mineral collection: The obtained precipitate was collected by filtration with a 0.45 μm filter membrane, washed with sulfuric acid solution (pH=3.0) and deionized w...
Embodiment 3
[0064] The process of efficiently synthesizing Shi's minerals from acid mine wastewater and the application of phosphorus removal in wastewater includes the following steps:
[0065] (1) Filtration to remove impurities: the water sample used in this example is collected from the acid pit water of a copper smelter in the Jianghuai area, with a pH of 1.69, a soluble iron content of 1600 mg / L, and SO 4 2- Content 6800mg / L, filter to remove suspended particles in acid mine wastewater.
[0066] (2) Alkali regulates mineral formation: the filtered acidic mine wastewater was aerated for 1 day, added liquid caustic soda (1.2g / L), stirred at a stirring speed of 300rpm for 4h, the pH of the measurement system was 2.0, and the total iron precipitation rate was about 92%, obtain precipitate;
[0067] (3) Mineral collection: The obtained precipitate was collected by filtration with a 0.45 μm filter membrane, washed with sulfuric acid solution (pH=2.5) and deionized water for 3 times, dri...
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