Cold trap

For the atmospheric phenomenon, see Cold trap (astronomy).

In vacuum applications, a cold trap is a device that condenses all vapors except the permanent gases into a liquid or solid.[2] The most common objective is to prevent vapors being evacuated from an experiment from entering a vacuum pump where they would condense and contaminate it. Particularly large cold traps are necessary when removing large amounts of liquid as in freeze drying.

Cold traps also refer to the application of cooled surfaces or baffles to prevent oil vapours from flowing from a pump and into a chamber. In such a case, a baffle or a section of pipe containing a number of cooled vanes, will be attached to the inlet of an existing pumping system. By cooling the baffle, either with a cryogen such as liquid nitrogen, or by use of an electrically driven Peltier element, oil vapour molecules that strike the baffle vanes will condense and thus be removed from the pumped cavity.

Applications

Pumps that use oil either as their working fluid (diffusion pumps), or as their lubricant (mechanical rotary pumps), are often the sources of contamination in vacuum systems. Placing a cold trap at the mouth of such a pump greatly lowers the risk that oil vapours will backstream into the cavity.

Cold traps can also be used for experiments involving vacuum lines such as small-scale very low temperature distillations/condensations. This is accomplished through the use of a coolant such as liquid nitrogen or a freezing mixture of dry ice in acetone or a similar solvent with a low melting point.

When performed on a larger scale, this technique is called freeze-drying, and the cold trap is referred to as the condenser.

Cold traps are also used in cryopump systems to generate hard vacua by condensing the major constituents of the atmosphere (nitrogen, oxygen, carbon dioxide and water) into their liquid or solid forms.

Main article: cryopump

Hazards

Care should be taken when using a cold trap not to condense liquid oxygen (a light blue liquid) into the cold trap. Liquid oxygen is potentially explosive (i.e., with a fuel and source of ignition), and this is especially true if the trap has been used to trap solvent. Liquid oxygen can be condensed into a cold trap if a pump has sucked air through the trap when the trap is very cold, e.g. when cooled with liquid nitrogen.

Construction

Cold traps (C in the figure) usually consist of two parts: The bottom is a large, thick round tube with ground-glass joints (B in the figure), and the second is a cap (A in the figure), also with ground-glass connections. The length of the tube is usually selected so that, when assembled, the total reached is about half the length of the tube.

Arrangement

Cold traps should be assembled such that the down tube is connected to the source of gas whilst the cap is connected to the source of vacuum.[3][4] Reversing this, connecting the down tube to the source of vacuum, places the inlet of the vacuum directly above the condensate, increasing the chances of vapour phase condensate moving up the (uncooled) down tube (towards the pump) or, should the trap begin to fill to an appreciable volume, liquid phase condensate being pulled into the pump.

Types of cold traps

Generally speaking, there are three types of cold traps: dry-ice cold traps, liquid-nitrogen cold traps, and mechanic cold traps. Comparatively, dry-ice cold traps are the cheapest and the mechanic cold traps are the most expensive.

Dry-ice traps with dry ice and alcohol have good abilities to capture, condense and freeze gases and solvents.Additionally, in the trap well, the temperature can reach into -75 degrees C. Later, the user also has the convenience to clear the material out and dispose of them.

Liquid nitrogen cold traps connected to pumps are able to freeze gas molecules, turn the molecules from a gas status into a crystalline status even without the liquid status occurring. When the pump is working, it is usually at the great speed, so that it can frost the molecules and the molecules is independent of the flow of the vacuum pump. Similarily, the user also has the convenience to clear the material out and dispose of them.

As for the most expensive one, the mechanic cold traps, the most important characteristic is they are like mini refrigerators which specialize in gathering molecules and freezing them into a chamber-type and use the way of mechanism to produce cold temperature.Similarily, the user later also has the convenience to clear the material out and dispose of them [5]

See also

References

  1. Errington, R. M. (1997). Advanced practical inorganic and metalorganic chemistry (Google Books excerpt). London: Blackie Academic & Professional. p. 51. ISBN 0-7514-0225-7.
  2. Laurence M. Harwood, Christopher J. Moody (13 Jun 1989). Experimental organic chemistry: Principles and Practice (Illustrated ed.). WileyBlackwell. pp. 41–42. ISBN 978-0-632-02017-1.
  3. An Aldrich manifold including a preformed cold trap
  4. A preformed cold trap from Chemglass
  5. "Cold traps".
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