Tungsten Oxide

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Analytical Reagent Sodium Tungstate 481

Analytical reagent sodium tungstate is referred to as sodium tungstate that meets the purity standards, which ensures the scientific precision and reliability of chemical analysis, chemical reaction or physical testing. Coprecipitation Separation of Trace Impurities in Sodium Tungstate and Determination by ICP-AES Using lanthanum hydroxide as co-precipitant, trace metal impurity elements (calcium, cadmium, zinc, iron, manganese, nickel, and zinc) in sodium tungstate were coprecipitated, separated, enriched, and measured by ICP-AES (Inductively Coupled Plasma-Atomic Emission Spectrometry). Analytical reagent means the sodium…

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Sodium Tungstate Crystal 490

Sodium tungstate crystal may be prepared by the crystallization of sodium tungstate solution. Removal of Arsenic and Silicon from Sodium Tungstate Solution by Crystallization The removal of arsenic and silicon from impure Na2WO4 solution was investigated by crystallization using the liquors (m(As)/m(WO3)=0.32×10-3~2.94×10-3, m(Si)/m(WO3)=1.26×10-3~5.84×10-3) from middle-grade mixed wolframite and scheelite concentrate decomposed with NaOH by mechanical activation and tungsten residue leached by traditional digestion. The influences of the crystallization ratio and the addition of Al2O3 on removing impurities of As and…

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Sodium Polytungstate 637

Sodium polytungstate has been found to be used as heavy-liquid to separate and concentrate materials by density with the deepening of research. For example, it can be used to separate the worn carbon composites in brake pads. Sodium polytungstate is a kind of inorganic heavy-liquid with the characteristics of high density and cyclic utilization. And it is nontoxic and easily prepared. Also, the sodium polytungstate density separation operation is simple and stable, and most importantly the physic-chemical property of matter…

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Sodium Tungstate Solution 442

Sodium tungstate solution containing high impurities should be purified. Purification of Sodium Tungstate Solution with High Impurities Sodium tungstate solution out of sodium phosphate decomposition of scheelite contains high impurities. To solve this problem, the purifying effects of fluoride (F), phosphorous (P), silicon (Si) and arsenic (As) by basic magnesium carbonate was studied. Effects of basic magnesium carbonate dosage, pH value, reaction temperature, reaction time on impurities purifying were researched. The removal mechanism of impurities was also researched. The results…

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Reagent Grade Sodium Tungstate 336

Reagent grade sodium tungstate, RG sodium tungstate for short, may be applied for precision analysis and scientific research. Reagent-grade chemical substances are labeled red. There are a variety of chemical reagents, so that it is difficult to prepare them into multiple grades or different specifications at the same time. So, it is hard to obtain reagents of the required purity or grade sometimes. And therefore, it is of significance for users to know how to purify reagents. There are many…

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Orthorhombic Tungsten Trioxide Nanoflake 554

Orthorhombic tungsten trioxide nanoflake may be prepared by hydrothermal method. And the influencing factors on the photocatalytic reaction were studied using photocatalytic degradation of methylene blue by the synthesized WO3 as model. And the photocatalytic properties of orthorhombic WO3 nanoflake were studied by determining the chemical oxygen demand (COD) of methine blue before and after photocatalytic degradation by potassium dichromate method. Hydrothermal Method to Prepare Orthorhombic Tungsten Trioxide Nanoflake The chemical reagents used were of analytical grade and were not…

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Monoclinic Tungsten Trioxide Nanoflake 662

Monoclinic tungsten trioxide nanoflake may be prepared by chemical precipitation method. Chemical Precipitation Method to Prepare Monoclinic Tungsten Trioxide Nanoflake The chemical reagents used are all analytical reagents (AR) and not purified before use. 1. Weigh 3.0g Na2WO3 and 0.005g CTAB (cetyl trimethyl ammonium bromide), dissolved in 10mL distilled water. Slowly drop 3mL of this solution into 5mL 3mol•L-1 HCL and stir for 1 ~2h. 2. After centrifugal settling of the reacted solution, wash it repeatedly with distilled water and…

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Tungsten Trioxide Nanoflake 500

Tungsten trioxide nanoflake has potential application prospects in the treatment of organic dye contaminated water. Why does tungsten trioxide nanoflake have potential application prospects in the treatment of organic dye pollution water? The sewage discharge in China is large, and the sewage treatment rate in urban is only 30%, which means that a large amount of untreated sewage is discharged directly to become a secondary source of pollution to the environment, therefore most of the rivers, lakes and urban groundwater…

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Tungsten Oxide Nanorod 492

Tungsten oxide nanorod may be prepared through a hydrothermal process at 180°C by using sodium sulfate (Na2SO4) as a directing reagent, and may be applied in the photocatalytic degradation of RB under visible light irradiation. Synthesis of Tungsten Trioxide Nanorod 1. Dissolve 2.77g sodium tungstate and 4.77g Na2SO4 in 67.5ml water and stir completely. 2. Adjust the pH to 1.5 with 3mol/L hydrochloric acid (HCL) and stir for 30min. 3. Heat the above solution at 180°C for 48 h. 4.…

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Hexagonal Tungsten Trioxide Nanowire 476

Hexagonal tungsten trioxide nanowire may be synthesized by hydrothermal method using Na2WO4•2H2O and HCl as raw materials, K2C2O4 and K2SO4 as structure-directing agents respectively. The hydrothermal reaction was conducted at 150°C for 12h. The structure of hexagonal WO3 nanowire obtained presents complex net structure with higher specific surface area, which improves the photocatalytic activity of the material. The presence of two additives, K2C2O4 and K2SO4, proved that K+ plays an important role in guiding the growth of WO3 nanowire. The…

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