Products Parameters
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Model |
Flake Vanadium pentoxide |
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Material |
V2O5 |
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Function |
Alloy additive |
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Diameter size |
Width 20-80mm; Thickness 2-8mm |
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The Highest Grade Vanadium Pentoxide Flake |
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Packing: 250kg steel drum |
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Shape: Fused Flake Type |
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Sales Quantity: 500MT/month |
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* The above production quantity depends on the metal content of the waste catalyst. |
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Products Description
Flake vanadium pentoxide is an important industrial raw material. Flake vanadium pentoxide is mainly used as a catalyst or adsorbent in wastewater treatment. Its specific application process may vary depending on factors such as wastewater composition, treatment objectives and technical routes. The following is a general wastewater treatment process involving the potential application of flake vanadium pentoxide:

First, the wastewater is introduced into the regulating tank to adjust the water volume and balance the water quality in preparation for subsequent treatment steps. Flake vanadium pentoxide is added to the wastewater treatment system as a catalyst. Vanadium pentoxide can catalyze oxidation reactions and convert organic or inorganic pollutants in wastewater into harmless or low-toxic substances. By adding oxidants (such as hydrogen peroxide, ozone, etc.) and controlling appropriate reaction conditions (such as temperature, pH value, etc.), the pollutants in the wastewater undergo oxidation reactions under the catalytic action of flake vanadium pentoxide, reducing their toxicity and biodegradability. Flake vanadium pentoxide or its composite material is used as an adsorbent to adsorb heavy metal ions, organic matter and other pollutants in wastewater. The wastewater is passed through an adsorption column or reaction tank filled with flaky vanadium pentoxide adsorbent, so that the pollutants in the wastewater are adsorbed onto the surface of the adsorbent. The selection and dosage of the adsorbent need to be adjusted according to the wastewater composition and treatment objectives.

After catalytic oxidation and adsorption treatment, the solid matter (including catalysts and adsorbents) in the wastewater is separated from the liquid. Separation methods may include precipitation, filtration, centrifugation, etc. For flaky vanadium pentoxide catalysts or adsorbents, recovery and regeneration can be considered. Through appropriate treatment processes (such as washing, drying, roasting, etc.), the catalyst or adsorbent can be restored to activity and the treatment cost can be reduced. The treated wastewater needs to be tested to ensure that it meets the discharge standards or reuse requirements. If the quality of the wastewater meets the reuse standards, it can be considered to be used in other links in the production process to achieve the recycling of water resources.

When using flake vanadium pentoxide for wastewater treatment, attention should be paid to its toxicity and environmental impact, and safe operating procedures and environmental protection regulations should be strictly followed. The wastewater treatment process should be adjusted and optimized according to actual conditions to achieve the best treatment effect and economy.
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