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1)  potassium dioxalatooxotitanate
草酸钛钾
2)  potassium dioxalatooxotitanate
二草酸合钛氧化钾
3)  potassium titanate
钛酸钾
1.
Transesterification of DMC and EHOH over potassium titanate for synthesis of di-2-ethyl hexyl carbonate(DEHC);
钛酸钾催化DMC酯交换反应合成碳酸二异辛酯的研究
2.
KOH sub-molten salt method was studied for preparing potassium titanate whiskers and titanium dioxide by using titaniferous slag as the raw material.
研究了以高钛渣为原料、采用KOH亚熔盐法制备钛酸钾晶须和二氧化钛的新方法,探讨了反应温度、初始KOH浓度、反应时间和碱矿比等因素对钛酸钾晶须形貌的影响。
3.
This experiment adopts KOH alkali treatment, so as to appear in situ potassium titanate layer on titanium alloy surface, and form firm chemical bond equal to with titanium alloy matrix.
本实验采用KOH碱处理,以便在钛合金表面原位自生出钛酸钾层,并与钛合金基体形成牢固的化学键合。
4)  potassium-bismuth titanate
钛酸铋钾
5)  potassium hexatitanate
六钛酸钾
1.
Preparation of extra-fine potassium hexatitanate whiskers starting from metatitanic acid by calcination method;
偏钛酸为原料烧结法制备超细六钛酸钾晶须
2.
The results indicate that potassium hexatitanate has better thermal stability than potassium tetratitanate.
结果表明:四钛酸钾(K2Ti4O9)的热稳定性低于六钛酸钾(K2Ti6O13)的。
3.
In order to study the mechanism of potassium hexatitanate (K2Ti6O13) synthesized by the calcination method,the phase transformation and micrographs were studied using X-ray diffractometer and scanning electron microscope.
实验发现:在约950℃,四钛酸钾(K2Ti4O9)开始出现亚稳转变,1100℃以上保温2h后,其临界转变基本完成,说明K2Ti4O9是高温亚稳相,低于临界反应温度合成的六钛酸钾(K2Ti6O13)是由K2Ti4O9的亚稳相转变获得的。
6)  potassium tetratitanate
四钛酸钾
1.
The results indicate that potassium hexatitanate has better thermal stability than potassium tetratitanate.
结果表明:四钛酸钾(K2Ti4O9)的热稳定性低于六钛酸钾(K2Ti6O13)的。
2.
The test results indicate that meta-stable transformation of potassium tetratitanate begins at 950 ℃ or so,then finishes completely at higher than 1 100 ℃ and maintained for 2 h.
实验发现:在约950℃,四钛酸钾(K2Ti4O9)开始出现亚稳转变,1100℃以上保温2h后,其临界转变基本完成,说明K2Ti4O9是高温亚稳相,低于临界反应温度合成的六钛酸钾(K2Ti6O13)是由K2Ti4O9的亚稳相转变获得的。
补充资料:草酸钛钾
分子式:K2TiO(C2O4)2·2H2
CAS号:

性质:又称草酸钛钾。无色有光泽晶体。溶于水。由氢氧化钛与草酸、草酸钾作用而得。用作棉织物和皮革染色的媒染剂。

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