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1)  Feclinoptilolite
铁型斜发沸石
1.
Thermal stability of Feclinoptilolite(FeCp)and its complexing action for soluble sulfides and carbonates were studied by means of chemical analysis,Xray diffraction and scanning electron micrograph.
用化学分析、X射线粉晶衍射及扫描电子显微镜等方法,研究了铁型斜发沸石(简称为FeCp)的热稳定性及其对可溶性硫化物和碳酸盐的复合作用。
2)  iron-active clinoptilolite
铁活化斜发沸石
3)  NH+4-form clinoptilolite
铵型斜发沸石
1.
NH+4-form clinoptilolite was prepared with the hot immersed method,the ion exchange capacity and efficiency of ion exchange reaction 2NH+4(Z)Cu2+(S) were investigated with the hydrothermal method.
用热浸煮法制备了铵型斜发沸石,用水热离子静态交换反应考察了铵型沸石上2NH4+Cu2+离子交换平衡时的平衡交换容量、交换效率。
4)  ammonia ion typed clinoptilolite
氨型斜发沸石
5)  Na-clinoptilolite
钠型斜发沸石
1.
The control mechanism of Na+—K+ ion-exchange on Na-clinoptilolite, which relies mainly on liquid film diffusion, has been found out by the shallow-bed method.
利用浅床实验法研究查明了钠型斜发沸石Na~+–K~+离子交换过程以液膜扩散为主的控制机理,依据传质膜理论,推导出液膜控制下的离子交换传质速率模型,并测定了离子交换动力力学曲线和过程传质系数。
2.
The study results on the ion-exchange isotherms, the effect of temperature on corrected selectivity coefficient and Kielland diagram at 10℃, 25℃, 50℃ and 75℃ showed that Na-clinoptilolite has high selectivity to potassium in Na+-K+ mixed solution.
18mmol/100g 沸石;通过 10℃、25℃、50℃、75℃钠型斜发沸石 Na+–K+离子交换等温线、温度对选择性校正系数的影响及 Kielland 图研究表明:钠型斜发沸石对钠钾混合体系中的钾具有很高的选择性,且随着温度的上升,沸石对钾的选择性下降,并回归出 Langmuir 模型;依据热力学平衡原理,导出了钠型斜发沸石 Na+–K+离子交换过程平衡常数表达式,并计算出该过程的焓、吉布斯自由能和熵变化,进一步验证该过程可自发进行,且为放热反应,低温有利于钾离子吸附。
6)  Ca~(2+)-clinoptilolite
钙型斜发沸石
1.
The removal of ammonia from wastewater by Ca~(2+)-clinoptilolite is introduced togather with some discussion of the capacity of absorption of Ca~(2+)- clinoptilolite in the NH_3-N wastewater, the isotherm of elution process and the Ca~(2+)- clinoptilolite's lose in the solution of Ca(OH)_2.
介绍了用钙型斜发沸石处理氨氮废水的方法,研究了钙型斜发沸石对氨氮废水的吸附性能、洗脱蒸氨曲线和斜发沸石在氢氧化钙溶液中的损失。
补充资料:含钙-铁-镁-钒的沸石
CAS:68918-02-5
中文名称:含钙-铁-镁-钒的沸石
英文名称:Zeolites, calcium-iron-magnesium-vanadium-contg.; Calcium-iron-magnesium-vanadium containing; Zeolites,calcium-iron-magnesium-vanadium-contg.
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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