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1)  kdp model
磷酸二氢钾模型
2)  potassium dihydrogen phosphate
磷酸二氢钾
1.
Study on K_2O recovery in production of potassium dihydrogen phosphate with monocalcium phosphate;
用磷酸二氢钙生产磷酸二氢钾的钾收率研究
2.
Determination of Mercury in Potassium Dihydrogen Phosphate by Cold Atomic Absorption Spectrometry;
冷原子吸收光谱法测定磷酸二氢钾中的汞
3.
Study on the crystallization metastable zone width of potassium dihydrogen phosphate;
磷酸二氢钾结晶介稳区宽度的研究
3)  potassium dihydrogenphosphate
磷酸二氢钾
1.
The improvements of concentration technology and neutralization temperature of potassium dihydrogenphosphate have made that the reaction period is shortened,the consumption of the energy and the cost are reduced and the economic benefits is very clear.
介绍了磷酸二氢钾浓缩工艺,中和温度的改进,使反应周期缩短,降低成本及能源消耗,经济效益显著。
4)  dipotassium hydrogen phosphate
磷酸氢二钾
1.
A hydrophilic organic phase/salt containing aqueous system is formed by ethanol and dipotassium hydrogen phosphate and water.
以乙醇、磷酸氢二钾和水形成亲水有机相 /含盐水体系 。
2.
In this study,the aqueous two-phase systems containing acetone and dipotassium hydrogen phosphate was adopted to extract chlorogenic acid.
实验采用与水互溶的有机溶剂新型双水相萃取体系即丙酮/K2HPO4·3H2O盐体系研究丙酮加入量与K2HPO4·3H2O加入量对绿原酸分配的影响,确定丙酮/磷酸氢二钾体系萃取绿原酸的最佳条件是:双水相体系的总量为10ml,V丙酮8ml、V水2ml、磷酸盐的质量0。
5)  potassium hydrogen phosphate
磷酸氢二钾
1.
By applying turbidity analysis, the equilibrium solubility of a ternary system of isopropyl alcohol and potassium hydrogen phosphate and water as well as the data of liquid liquid equilibrium of that system are determined at 35 ℃ and atmospheric pressure.
用浊点法测定在常压和 35℃下 ,异丙醇 -磷酸氢二钾 -水三元体系的平衡溶解度 ,及该体系的液液相平衡数据 。
6)  KH_2PO_4
磷酸二氢钾
1.
One-pot Synthesis of 3,4-dihydropyrimidin-2(1H)-one Using KH_2PO_4 as a Catalyst;
磷酸二氢钾催化下合成3,4-二氢嘧啶-2(1H)-酮
2.
Effects of foliage applications of KH_2PO_4 and glucose on photosynthesis and sucrose metabolism of tomato;
叶面喷施磷酸二氢钾与葡萄糖对番茄光合速率和蔗糖代谢的影响
3.
The Effects of Salicylic Acid ,Boric Acid and KH_2PO_4 Treatment on Freesia refracta Growth and Development;
喷施水杨酸、硼酸和磷酸二氢钾对小苍兰生长发育的影响
补充资料:磷酸二氢钾
KH2P04
    无色或白色带光泽的斜方晶系结晶体。密度2.338g/cm3。熔点252.6℃。溶于水,水溶液呈酸性,不溶于醇。有吸湿潮解性。加热到400℃时。熔成透明的液体,冷却后即固化为不透明的玻璃状物质偏磷酸钾。
    应用  是一种高效磷钾复合肥料,适用于各种土壤和作物。工业和医药上用作细菌培养剂、酿造酵母培养剂、尿酸化营养剂。食品工业用于制造烘焙粉、味精、发酵粉。化学工业用作缓冲溶液及生产偏磷酸钾的原料。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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