A kind of potassium feldspar selection method

A potassium feldspar and flotation technology, which is applied in the field of potassium feldspar selection, can solve the problems of acid leaching and flotation effluents with high toxicity, environmental pollution, and failure to remove mica.

Active Publication Date: 2021-06-08
贺州市骏鑫矿产品有限责任公司
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  • Abstract
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  • Claims
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Problems solved by technology

[0003] At present, the iron removal methods of feldspar are mainly magnetic separation, acid leaching and flotation, but magnetic separation has high requirements on equipment, and the discharge from acid leaching and flotation is highly toxic and pollutes the environment seriously. New Process Research", Tang Kai et al., "Contemporary Chemical Industry", 2008, 37(5): 456-458, the research suggests that soaking in sulfuric acid at 90°C can remove most of the iron impurities, and at the same time, potassium oleate, twelve Potassium alkylbenzene sulfonate, AES and AOS are used as flotation reagents for continuous treatment, which can remove iron, but a large amount of acid liquid and flotation reagents will harm the environment
[0004] The content of mica in mineral rocks is low, but it has a great influence on the whiteness and quality of feldspar ore, and mica is a silicate mineral with layered structure, acid and alkali resistance, stable chemical properties, and difficult to be removed
At present, mica removal methods are mainly as follows: under certain conditions, mineral dressing agents are used to capture mica and separate it from feldspar. Commonly used floating agents are chemical agents such as surfactants and ionic collectors. Most of the agents are Toxic substance, large amount of use and discharge will pollute the environment
For example, Chinese patent 201710843849.9 discloses a production and preparation method of potassium feldspar powder. Impurities are removed through a series of physical methods such as raw ore cleaning, screening, crushing, grinding, magnetic separation and dehydration to obtain potassium with less iron and high whiteness. Feldspar, but failed to remove mica, and the purity is not high; such as the literature "Research on the Whitening of Mica in Feldspar Mine", Pan Dawei et al., "Chinese Ceramics", 2015 (1): 54-57, the research believes that the mass ratio is adopted The mixture of dodecylamine and octadecylamine of 2:1 is used as a flotation agent to remove mica in feldspar ore, but dodecylamine is a toxic agent, and a large amount of use and discharge will pollute the environment. Therefore, the application is based on The above-mentioned published documents improve the preparation and impurity removal methods of potassium feldspar
In addition, the content of biotite in potassium feldspar in Hezhou area of ​​Guangxi is very high, which seriously affects the whiteness of feldspar, and there is no special method for removing biotite in the prior art. This application aims to find out the characteristics of potassium feldspar mica in Hezhou area. An environmentally friendly and powerful biotite removal method to improve the quality of potassium feldspar products in this area

Method used

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  • A kind of potassium feldspar selection method

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Embodiment 1

[0021] In this embodiment, a method for beneficiating potassium feldspar includes raw ore cleaning, screening, crushing, ore grinding, flotation and dehydration, and the flotation includes primary flotation and secondary flotation;

[0022] The primary flotation is as follows: add water to the 200-mesh fine sand particles obtained by grinding to adjust the concentration of 25% pulp, adjust the pH of the pulp to 3, add the extract of 8% of the mass of the pulp, and stir for 2 minutes , then add the coconut extract with 4% of the mass of the pulp, stir until foaming, scrape off the foam, rinse with clear water, dehydrate to a water content of 25%, and obtain deironized ore; The content is 109mg / 100g, and the volume concentration of coconut oil in the coconut extract is 90%.

[0023] The secondary flotation is as follows: adding water to the de-ironized ore to adjust the concentration of 35% pulp, and adjusting the pH of the pulp to 1, adding medicaments with a mass of 3% of the ...

Embodiment 2

[0030] In this embodiment, a method for beneficiating potassium feldspar includes raw ore cleaning, screening, crushing, ore grinding, flotation and dehydration, and the flotation includes primary flotation and secondary flotation;

[0031] The primary flotation is as follows: add water to the 250-mesh fine sand particles obtained by grinding to adjust the concentration of 35% pulp, adjust the pH of the pulp to 5, add the extract of 11% of the mass of the pulp, and stir for 4 minutes , then add the coconut extract with 9% of the mass of the pulp, stir until foaming, scrape off the foam, rinse with clear water, dehydrate to a water content of 20%, and obtain de-iron ore; The content of cyanine polysaccharide is 120mg / 100g, and the volume concentration of coconut oil in the coconut extract is 95%.

[0032] The secondary flotation is as follows: adding water to the de-ironized ore to adjust the concentration of 45% pulp, and adjusting the pH of the pulp to 2, adding medicaments w...

Embodiment 3

[0039] In this embodiment, a method for beneficiating potassium feldspar includes raw ore cleaning, screening, crushing, ore grinding, flotation and dehydration, and the flotation includes primary flotation and secondary flotation;

[0040] The primary flotation is: add water to the 300-mesh fine sand particles obtained by grinding to adjust the concentration of 30% pulp, adjust the pH of the pulp to 4, add the extract of 9% of the mass of the pulp, and stir for 3 minutes , then add the coconut extract with 6% of the mass of the pulp, stir until foaming, scrape off the foam, rinse with clear water, and dehydrate to a water content of 18% to obtain de-iron ore; The polysaccharide content is 105mg / 100g, and the coconut oil volume concentration in the coconut extract is 92%.

[0041] The secondary flotation is as follows: add water to the de-ironized ore to adjust the concentration of 40% pulp, and adjust the pH of the pulp to 1.5, then add a medicament with a mass of 4% of the p...

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Abstract

The invention discloses a potassium feldspar refining method and relates to the technical field of potassium feldspar processing. The method includes raw ore cleaning, screening, crushing, ore grinding, flotation and dehydration. The flotation includes primary flotation and secondary flotation. The primary flotation is to adjust the ore sand to 25-35% ore pulp, and adjust the pH to 3 ‑5, add 8‑11% safflower extract, stir, add 4‑9% coconut extract, stir until foaming, scrape off the foam; the second flotation is: adjust the ore sand to 35‑45% pulp, Adjust the pH to 1-2, add 3-5% medicament, stir until foaming, scrape off the foam, and dehydrate; quaternary ammonium salt. The invention effectively removes iron impurities and biotite in feldspar, and can produce potassium feldspar powder with high whiteness, and the floating agent used is environmentally friendly, non-toxic and pollution-free, and the obtained potassium feldspar powder has a whiteness of over 61%. superior to traditional methods.

Description

【Technical field】 [0001] The invention relates to the technical field of potassium feldspar processing, in particular to a method for selecting potassium feldspar. 【Background technique】 [0002] Potassium feldspar is a kind of feldspar, which is a common feldspar mineral and is a potassium aluminum silicate. Potassium feldspar is generally a glassy crystal, and it is one of the main raw materials for making glass and ceramics. In recent years, with the rapid development of my country's ceramic industry and glass industry, the demand for high-purity potassium feldspar continues to increase. Iron minerals, titanium oxides, mica, and quartz are the main impurities in potassium feldspar. Mica is mainly biotite, iron lepidolite, and green mica, which affect the whiteness, dielectric properties, and chemical stability of ceramics. [0003] At present, the iron removal methods of feldspar are mainly magnetic separation, acid leaching and flotation, but magnetic separation has hi...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B03D1/02
CPCB03D1/02
Inventor 邓培有
Owner 贺州市骏鑫矿产品有限责任公司
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