نتایج جستجو برای: vanadium conversion treatment

تعداد نتایج: 1503767  

Journal: :Biochimica et biophysica acta 2003
Tatsuya Ueki Takahiro Adachi Sonoko Kawano Masato Aoshima Nobuo Yamaguchi Kan Kanamori Hitoshi Michibata

Since the beginning of the last century, it has been known that ascidians accumulate high levels of a transition metal, vanadium, in their blood cells, although the mechanism for this curious biological function remains unknown. Recently, we identified three vanadium-binding proteins (vanabins), previously denoted as vanadium-associated proteins (VAPs) [Zool. Sci. 14 (1997) 37], from the cytopl...

Journal: :Crystals 2023

The multifunctional platform response to the tumor microenvironment (TME) is critical for high-precision diagnosis and treatment of cancer with low systemic toxicity. In this regard, vanadium-doped carbon dots (V−CDs) have been developed TME-activated fluorescence imaging chemodynamic therapy (CDT). Due Forster resonance energy transfer caused by doped vanadium, obtained V−CDs displayed quenche...

Journal: :Batteries 2023

Large-scale energy storage using sodium ion batteries (SIBs) as a hub for the conversion of renewable has become topic great importance. However, application SIBs is hindered by low density arising from inferior capacity and operation voltage. In this regard, vanadium-based phosphate polyanions with multiple valence changes (III–V), high redox potential, abundant resources, spacious frame struc...

Journal: :Nanoscale 2014
Taizhong Huang Shun Mao Guihua Zhou Zhenhai Wen Xingkang Huang Suqin Ci Junhong Chen

A creative hydrothermal synthesis method followed by calcination for vanadium nitride (VN) is reported. The oxygen reduction reaction (ORR) study of the catalyst shows that VN possesses a comparable catalytic performance to commercial Pt/C catalyst. The ORR catalytic activity study of vanadium nitride, vanadium carbonitride, and vanadium carbide reveals that tuning anions offers a promising rou...

Journal: :Catalysts 2021

V-TiO2 photocatalyst with 0 ≤ V 20 mol% was prepared via the sol–gel method based on mixed oxide titanium–vanadium nanoparticles size and composition control. The vanadium–titanium oxo-alkoxy nanonoparticles were generated in a chemical micromixing reactor, coated glass beads liquid colloid deposition underwent to an appropriate thermal treatment forming crystallized nanocoatings. X-ray diffrac...

2007
S. L. Hansard C. B. Ammerman P. R. Henry

Sixteen ram lambs were fed 0, 50 or 200 ppm supplemental vanadium daily as NH4VO3 for 90 d and coccygeal vertebrae were sampled at 0, 15, 30, 6 0 a n d 90 d after the imposition of dietary treatments. Vertebral vanadium content was elevated (P<.05) after exposure to 200 ppm added vanadium in the diet for 15 d, but nonsignificant increases occurred thereafter. Increasing dietary vanadium increas...

Journal: :Journal of inorganic biochemistry 1988
S Lee K Kustin W E Robinson R B Frankel K Spartalian

The magnetic properties of intact and freeze-dried blood cells of the tunicate Ascidia nigra and of model vanadium(III) and (IV) compounds as polycrystalline solids and in aqueous solution have been measured up to 50 kOe with a SQUID susceptometer. Corrections for the samples' diamagnetism were extracted from the temperature dependence of the data without any further assumptions. For vanadium(I...

Journal: :Journal of environmental monitoring : JEM 2006
B Gummow J van den Broek W F A Kirsten C J Botha J P T M Noordhuizen J A P Heesterbeek

Various potential biomarkers were sampled for vanadium every 3-4 months from Bos indicus beef cattle farmed extensively immediately adjacent (high exposure (HE) group) and two km away (low exposure (LE) group) from a vanadium processing plant, respectively. Vanadium intake (mg vanadium kg(-1) bwt d(-1)) was modelled using environmental and physiological data as inputs. The vanadium intake range...

Journal: :Chemical reviews 2004
Debbie C Crans Jason J Smee Ernestas Gaidamauskas Luqin Yang

6.1.2. Aqueous V(III) Chemistry 877 6.1.3. Oxidation State of Vanadium in Tunicates 878 6.1.4. Uptake of Vanadate into Tunicates 879 6.1.5. Vanadium Binding Proteins: Vanabins 879 6.1.6. Model Complexes and Their Chemistry 880 6.1.7. Catechol-Based Model Chemistry 880 6.1.8. Vanadium Sulfate Complexes 881 6.2. Fan Worm Pseudopotamilla occelata 883 7. Vanadium Nitrogenase 883 7.1. Nitrogenases 8...

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