1) V2O5/TiO2
钒钛催化剂
1.
Using the non-calcined industrial metatitanic acid as a carrier,the aqueous solution consists of hydrogen peroxide and ammonium metavanadate as a pickling agent,a new method was adopted to prepare supported catalyst of V2O5/TiO2.
采用未煅烧的工业偏钛酸为钒钛催化剂的前驱体,以偏钒酸铵和双氧水的溶液为浸渍液,浸渍、焙烧制备了V2O5/TiO2,并采用XRD,BET以及XPS测试技术对产物进行了表征。
2) Phthalic anhydride
钒钛催化剂
3) V-Ti
钒钛
1.
It’s of great importance for a corporation’s economic effect to enhance the degree of self-sufficiency of roller,lower its consumption,make full use of natural resourses superiority and largen the service range of V-Ti iron.
提高轧辊自给率、降低轧辊消耗及充分利用资源优势,扩大钒钛生铁的应用范围,对提高企业的经济效益具有重要意义。
4) Vanadium、 Titanium
钒、钛
5) vanadium-titanium
钒钛
1.
According to the study on the parts of the slurry pump in domestic and abroad, this paper optimizies the component and structure of the parts of the slurry pump, confirms the material of the parts of the slurry pump which is more suitable for the mineral processing characteristic at the vanadium-titanium magnetite in the Mining Company of PG.
本文针对攀钢集团矿业公司渣浆泵过流件使用寿命较短、对正常生产造成了不利影响的状况,根据国内、外对渣浆泵过流件材料的研究情况,充分发挥公司内部钒钛资源优势,利用攀钢钒钛生铁为原料,优化了过流件化学成分和组织,确定了更适用于攀钢集团矿业公司钒钛磁铁矿选矿特点的渣浆泵过流件材料,确定了这种高铬铸铁过流件较佳的热处理工艺。
6) vanadium titanium cast iron
钒钛生铁
1.
Reason analysis of unstable results for analysis of vanadium titanium cast iron sample by atomic emission spectrometry and improvement on sampling method;
钒钛生铁试样光谱分析结果不稳定的原因分析和取样方法的改进
2.
Study on the sample of vanadium titanium cast iron for Atomic Emission Spectroscopy,The cause of analysis the result of analysis uncertainty through application modern statistics theory and evaluation of uncertainty with analysis of emission spectrometry vanadium in vanadium titanium cast iron.
采用原子发射光谱分析法测定钒钛生铁中钒含量,应用现代统计学理论对其分析结果不确定度的产生原因进行分析,同时对钒钛生铁中钒含量测定结果的不确定度进行了评定。
参考词条
补充资料:钒催化剂
分子式:
分子量:
CAS号:
性质:含氧化钒的催化剂,单独使用或载于载体上,或与钼、钛、铬、磷、钾、硫等的氧化物构成复杂体系,用于生产硫酸,萘或邻二甲苯氧化制苯酐,苯或正丁烯氧化制顺丁烯二酸酐,蒽转化为蒽醌等。
分子量:
CAS号:
性质:含氧化钒的催化剂,单独使用或载于载体上,或与钼、钛、铬、磷、钾、硫等的氧化物构成复杂体系,用于生产硫酸,萘或邻二甲苯氧化制苯酐,苯或正丁烯氧化制顺丁烯二酸酐,蒽转化为蒽醌等。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。