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1)  titanium pyrophosphate
焦磷酸钛
1.
An inorganic ion exchanger amorphous titanium pyrophosphate was synthesized with sodium pyrophosphate.
报导了焦磷酸钛(TiPP)的合成。
2.
In this paper, the aliphatic amines are separated with the ligand\|exchange gas chromatography,in which amorphous titanium pyrophosphate in the form of transition\|metallic ions is used as the stationary phase,nitrogen containing ammonia and water vapor as the mobile phase.
报道了以焦磷酸钛( Ti P P)作金属离子的载体,制成固定相,以含氨和水汽的高纯氮气为载气,用配体交换气相色谱法分离脂肪胺混合物的工作。
3.
The results show that,beside amorphous carbon,in the structure of expanding carbonaceous char,there is also titanium pyrophosphate which plays an important role in the fire proof function of intumescent coating.
研究结果表明:在膨胀炭质层中,除存在无定形炭以外,还存在一种对基材的防火起较大作用的化合物——焦磷酸钛
2)  ammonium titanium phosphate
磷酸钛铵
1.
Nanometer size ammonium titanium phosphate was obtained by grinding Ti(SO4)2 and(NH4)3PO4·3H2O via solid-state reaction at room temperature,then mixture was kept at 80 ℃ for 96 h,washed with water to remove soluble inorganic salts and dried at 80 ℃.
3H2O为原料,在室温下研磨反应混合物,进行固相反应,然后在80℃下密封保温反应96 h,用水洗去混合物中的可溶性无机盐,80℃下烘干,即得纳米级磷酸钛铵产品。
3)  titanium phosphate
磷酸钛
1.
Preparation and performance of titanium phosphate with different mesoporous structure
不同介孔结构的磷酸钛的制备及性能
2.
Biosynthesis and characterization of the layered titanium phosphate
层状磷酸钛的仿生合成与表征
3.
The study of solution of Titaniumphosphateand the study of testing methodsabout content of Titaniumdioxide in titanium phosphateComparingthe quota with the similar products abroad,the result is satisfactory.
研究了磷酸钛的溶解及磷酸钛中的二氧化钛含量的测试方法,与国外同类产品指标相比,测试结果满意。
4)  caesium titanium phosphate
磷酸铯钛
5)  α Titanium hydrophosphate
α-磷酸钛
1.
Crystalline samples of α Titanium hydrophosphate (abbreviated as α TiP) were prepared by hydrothermal method and characterized by XRD, IR, HREM and TG DSC.
用水热法合成了具有良好结晶度和大层间距的 α-磷酸钛晶体 (记为 α- Ti P) ,并用 XRD,HREM,IR及 TG/DSC等方法对其进行了表征。
6)  calcium-titanium-phosphate
磷酸钙钛
补充资料:焦磷酸钛
分子式: TiP2O4 
CAS号:

性质: 白色晶体,立方晶系。密度3.106g/cm3。不溶于水。用于制作反射紫外线的颜料,900℃下用水合二氧化钛和五氧化二磷反应制取。

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