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1)  centrifugal counter-current extractor
离心式向流萃取器
2)  Podbielniak extractor
波式离心萃取器
3)  centrifugal extractor
离心萃取器
1.
Rare-earth extraction with the cylindrical centrifugal extractor;
圆筒式离心萃取器稀土萃取的试验研究
2.
By centrifugal extractor,under the condations of 1 L/h of flow volume,2/1 of phase rate,4000 r/min of centrifugal speed,5.
利用离心萃取器,在流量1 L/h,相比(Vo/Va)=2/1,离心转速4000 r/min,水相料液pH=5。
3.
The structure,working process and performance of centrifugal extractor are described and its applications in non-ferrous metallurgy are reviewed,such as separations of In and Fe,Ni and Co,Zr and Hf,and rare earths,extraction of Ge from zinc sulphate solution,and treatment of poor gold-bearing liquor from gold metallurgy.
介绍离心萃取器的结构、工作过程和性能,综述其在有色冶金中的应用,如铟铁分离、镍钴分离、锆铪分离、稀土元素分离、从硫酸锌溶液中提取锗、氰化浸金贫液处理,所有这些应用都获得满意结果。
4)  centrifugal contactor
离心萃取器
1.
Study on treating p-nitrophenol wastewater with HL-centrifugal contactor;
用HL离心萃取器处理含对硝基酚废水的研究
2.
The hold up volumes of aqueous phase and organic phase in an annular centrifugal contactor were measured by the liquid fast discharging method,and the interface radii were calculated from the hold up volumes using a suitable model of phase distribution.
系统研究了转速、流比、重相堰直径、流量、两相密度差和粘度6个参数对环隙式离心萃取器界面半径的影响。
3.
The process also included Co recovery, Pb removal by ion exchange, Research work is colnposed of extraction experim-nt ,bench-scale test and pilot test carried out in centrifugal contactors.
本流程进行了萃取平衡试验,并用离心萃取器进行了台架试验和半工业试验,结果表明,本流程是切实可行的。
5)  Luwesta extractor
路伟斯塔萃取器(室式离心萃取器)
6)  cylindrical centrifugal extractor
圆筒式离心萃取器
1.
According to the characteristics of aqueous two phase systems, a φ20 cylindrical centrifugal extractor was selected as the equipment for extractive purification of α-amylase.
根据双水相体系的特点,选择了Ф20(环)圆筒式离心萃取器进行a-淀粉酶的双水相体系萃取实验,考察了萃取器的水力学特性,确定了萃取操作范围,并考察了萃取器转鼓转速、总流量对体系传质特性、a-淀粉酶失活和收率的影响。
补充资料:环隙式离心萃取器
分子式:
CAS号:

性质:单级接触设备。由运动的转鼓和静止的外壳组成,两者之间形成一个环隙。当两相由进口流入环隙,在高速转动的转鼓带动下,两相在环隙内混合。混合液从转鼓底部小孔吸入转鼓内,在离心力作用下分相。轻、重两相通过各自相堰,收集在轻、重相收集环中,分别上行或下行流入下一级,形成多级逆流萃取。离心萃取器是一种高效萃取设备。优点是级效率高,生产能力大,存留量小,停留时间短,特别适用于处理高燃耗,高放射性泛燃料。它的缺点是有高速运动部件,加工安装要求高,设备及维修费用高。

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