Bubble-assisted organic liquid film generator

A generator and bubble film technology, which is applied in the direction of liquid solution solvent extraction, etc., can solve the problems of uneven pressure distribution and unstable generation of gas phase and organic light phase, and achieve a compact device structure, convenient maintenance and management, and high integration. Effect

Active Publication Date: 2014-04-30
QINGDAO INST OF BIOENERGY & BIOPROCESS TECH CHINESE ACADEMY OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0007] In view of the deficiencies in the prior art, the object of the present invention is to provide a bubble-assisted organic liquid film generator to solve the problem of inabi

Method used

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  • Bubble-assisted organic liquid film generator

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0063] The bubble-assisted organic liquid film generator is used in an extraction tower with an inner diameter of 230 mm and an effective extraction height of 3 m for experimental verification. The organic light phase is a 1.54mol / L saponified P507-kerosene solution (volume ratio: P507: kerosene = 1:1), the water phase is a dilute solution with a La concentration of 100ppm and pH=2.5, and the feed rate of the organic light phase is 30L / h, the water phase is 100L / h, the gas phase pressure is 0.1MPa, and the specific load is 6. The inner diameter of the cavity of the generator shell is 210mm, the height is 125mm, the diameter of the bubble film generating hole is 0.4mm, the light phase distribution chamber is 40mm high, the light phase diversion hole and the surface of the air distribution plate are at a 45° oblique angle, and the internal diameter of the air distribution needle is 0.18mm, outer diameter 0.3mm, height 60mm, the distance between the air distributing needle and th...

Embodiment 2

[0065] The bubble-assisted organic liquid film generator is used in an extraction tower with an inner diameter of 230mm and an effective extraction height of 3m for experimental verification. The organic light phase is 1.54mol / L saponified P507-kerosene solution (volume ratio: P507: Kerosene=1:1), the water phase is a dilute solution with a La concentration of 100ppm and pH=2.5, the feed rate of the organic light phase is 30L / h, the water phase is 100L / h, the gas phase pressure is 0.1MPa, and the specific load is 6 . The inner diameter of the cavity of the generator shell is 210mm, the height is 125mm, the diameter of the bubble film generation hole is 0.8mm, the light phase distribution chamber is 40mm high, the light phase diversion hole and the surface of the air distribution plate are at a 45° oblique angle, and the internal diameter of the air distribution needle is 0.6mm, outer diameter 0.7mm, height 60mm, the distance between the air distributing needle and the surface o...

Embodiment 3

[0067] The bubble-assisted organic liquid film generator is used in an extraction tower with an inner diameter of 230mm and an effective extraction height of 3m for experimental verification. The organic light phase is 1.54mol / L saponified P507-kerosene solution (volume ratio: P507: Kerosene=1:1), the water phase is a dilute solution with a La concentration of 100ppm and pH=2.5, the feed rate of the organic light phase is 30L / h, the water phase is 100L / h, the gas phase pressure is 0.1MPa, and the specific load is 6 . The inner diameter of the cavity of the generator housing is 210mm, the height is 145mm, the diameter of the bubble film generation hole is 3.0mm, the light phase distribution chamber is 60mm high, the light phase diversion hole and the surface of the air distribution plate are at a 45° oblique angle, and the internal diameter of the air distribution needle is 2.6mm, outer diameter 2.9mm, height 60mm, the distance between the air distributing needle and the surface...

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Abstract

The invention relates to a bubble-assisted organic liquid film generator. Structures of a gas-phase gas distributing sieve and a gas-phase buffer room are adopted so that a high-speed airflow beam at an outlet of a gas-phase pipeline is rapidly dispersed in the gas-phase buffer room, and thus the stabilizing and the homogenizing of air pressure in gas distributing needles are achieved; a multi-level dispersed flow regulating and pressure stabilizing structure including a light-phase dispersing ring, a light-phase buffer room, a light-phase stream guidance hole, a light-phase stream guidance ring, a light-phase distribution room, a light-phase restrictor ring and the like is adopted, so as to realize the rapid dispersed circulation and the stable-pressure and balance output of light phase; the gas distributing needles are inserted in bubble film generating holes, so as to skillfully combine the light phase and gas phase in the bubble film generating holes, and thus a continuous bubble film is rapidly generated on the surface of a bubble film generating plate synchronously and stably in multiple holes.

Description

Technical field [0001] The invention belongs to the technical field of chemical separation, and particularly relates to a bubble-assisted organic liquid film generator. Background technique [0002] Solvent extraction is a relatively traditional industrial separation and extraction technology. It has the advantages of high selectivity, good separation effect, easy operation and strong applicability. Therefore, it is widely used in petroleum, chemical, pharmaceutical, metallurgy, environmental protection, biological engineering and New material preparation and other fields. With the continuous development of modern industry, the separation system is becoming more and more complex, the concentration of the components to be separated is lower and lower, the nature of the separation object is getting closer, and the environmental governance standards are becoming more and more stringent. Put forward higher requirements. [0003] The gas-assisted solvent extraction technology uses the...

Claims

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Application Information

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IPC IPC(8): B01D11/04
Inventor 黄焜刘杰吴怀之刘会洲程文涛吴美玲
Owner QINGDAO INST OF BIOENERGY & BIOPROCESS TECH CHINESE ACADEMY OF SCI
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