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首页> 外文期刊>Journal of Membrane Science >Comparative performance of non-dispersive solvent extraction using a single module and the integrated membrane process with two hollow fiber contactors
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Comparative performance of non-dispersive solvent extraction using a single module and the integrated membrane process with two hollow fiber contactors

机译:使用单个模块进行非分散溶剂萃取和使用两个中空纤维接触器的集成膜工艺的比较性能

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摘要

Hollow fiber non-dispersive solvent extraction (HFNDSX) was carried out with one module (batch process) using (0.562 M) 18 % LIX79-heptane by passing Ag(CN)(2-) alkaline feed through the tube side and organic extractant through the shell side in counter-current mode. Similarly, stripping was done by passing NaOH through the tube side and loaded organic through the shell side using the same module after washing (in batch operation). On the other hand, in the integrated membrane process (IMP), non-dispersive solvent extraction of silver cyanide and stripping of silver cyanide from organic complex were performed simultaneously using two hollow microporous hydrophobic polypropylene fiber contactors each for extraction and stripping, respectively. The overall mass transfer coefficient obtained in the integrated process was observed to be greater than the values of the mass transfer coefficient (K-Ag(E)) obtained with the single module (no stripping). The various hydrodynamic and chemical parameters, such as linear flow velocity of the feed aqueous phase (3.07 cm/s greater than or equal to v(f) greater than or equal to 0.92 cm/s), linear flow velocity of the organic phase (1.18 cm/s greater than or equal to v(f) > 0.39 cm/s), NaCN concentration in the feed, pH variation in the aqueous feed and NaOH concentration in the stripping phase, were optimized in the single module. Some selective experiments were performed with two modules in order to compare the performance of IMP with that of HFNDSX. The mass transfer coefficients were calculated under different hydrodynamic and chemical conditions with a single module, and rate-controlling steps in extraction and stripping were identified. Similarly, the mass transfer coefficients were evaluated using IMP and attempts were made to solve operational problems with HFNDSX using a single module in counter-current mode. (C) 2004 Elsevier B.V. All rights reserved.
机译:通过使(Ag)(CN)(2-)碱性进料通过管壁并通过有机(有机)萃取,使用(0.562 M)18%LIX79 /正庚烷通过一个模块(分批工艺)进行中空纤维非分散溶剂萃取(HFNDSX)萃取剂以逆流方式通过壳侧。同样,在洗涤后(分批操作),使用相同的模块,通过使NaOH通过管侧并使有机物通过壳侧进行汽提来进行汽提。另一方面,在集成膜方法(IMP)中,使用两个空心微孔疏水聚丙烯纤维接触器分别分别进行萃取和剥离,同时进行氰化银的非分散溶剂萃取和从有机络合物中剥离氰化银。观察到在集成过程中获得的总传质系数大于单个模块(无汽提)获得的传质系数(K-Ag(E))的值。各种流体动力学和化学参数,例如进料水相的线性流速(大于或等于v(f)的3.07 cm / s大于或等于0.92 cm / s),有机相的线性流速(在单个模块中优化了1.18 cm / s(大于或等于v(f)> 0.39 cm / s),进料中的NaCN浓度,水性进料中的pH变化和汽提阶段的NaOH浓度。为了比较IMP和HFNDSX的性能,对两个模块进行了一些选择性实验。通过一个模块在不同的水动力和化学条件下计算传质系数,并确定了萃取和汽提中的速率控制步骤。同样,使用IMP评估了传质系数,并尝试使用单个模块以逆流模式解决HFNDSX的操作问题。 (C)2004 Elsevier B.V.保留所有权利。

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