Provided herein is a heat exchanger configured to heat or cool a liquid, vapor or other medium. The heat exchanger includes a coil of piping comprising a refrigerant from a chiller with the coil of piping defining a cylindrical space in a center portion of the coil of tubing. A return pipe receives the refrigerant from the coil of piping and returns to the chiller via a path through a central axis of the cylindrical space. An insert tube that has at least two connection points to the return pipe substantially fills the cylindrical space inside of the coil of piping and surrounding the return pipe. The coil of piping and the insert tube contact a fluid to be cooled or heated. The increased surface area for the heat exchanger provided by the insert tube causes additional heat to be exchanged with the fluid than a heat exchanger alone.
F28D 7/02 - Heat-exchange apparatus having stationary tubular conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the conduits being helically coiled
Provided herein are compact chiller and cooler apparatuses, devices and systems. Chiller apparatuses disclosed herein can have a refrigeration system contained in a central housing with an external heat exchanger or “cold finger” that is universally applicable to cooling various sizes and configurations of water baths and laboratory applications needing a cooling capacity. Chiller apparatuses disclosed herein can be universally used with rotary evaporators, vacuum ovens, centrifugal concentrators, and freeze dryers.
Falling film evaporator systems, devices, and methods are disclosed in the present application. In some embodiments, the falling film evaporator system can include a hollow cylindrical glass tube configured to enclose the major parts of the falling film evaporator system. Furthermore, in some embodiments, inserted into the cylindrical glass tube is another hollow evaporator tube with a dispensing bowl at the top, a reservoir of the dispending bowl facing the inside top of the cylindrical glass tube. Inserted into the hollow evaporator tube is a heating element configured to heat the hollow evaporator tube such that an outside surface of the evaporator tube is heated. At the top of the hollow cylindrical glass is an inlet where liquid flows into the dispensing bowl, spilling over the edges of the bowl, generating a thin film of liquid that is evaporated as it falls down the outside surface of the evaporator tube.
Provided herein are integrated distillation apparatuses configured as stand-alone fully integrated systems having a reduced footprint. Integrated distillation apparatuses can have a rotary evaporator, a condenser, and an integrated refrigeration system or chiller, as well as an integrated water bath and vacuum pump, all of which can be integrated into a central frame and/or housing assembly. Integrated distillation apparatuses can be configured such that the rotary evaporator is movably attached to a frame structure and configured to be vertically translatable in position, whereas the condenser can be affixed to the structure by an arm extending from the structure and adjacent to the rotary evaporator, and wherein the refrigeration system can be in fluid communication with the condenser.
B01D 3/08 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in rotating vesselsAtomisation on rotating discs
B01D 5/00 - Condensation of vapoursRecovering volatile solvents by condensation
B01D 3/02 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in boilers or stills
Falling film evaporator systems, devices, and methods are disclosed in the present application. In some embodiments, the falling film evaporator system can include a hollow cylindrical glass tube configured to enclose the major parts of the falling film evaporator system. Furthermore, in some embodiments, inserted into the cylindrical glass tube is another hollow evaporator tube with a dispensing bowl at the top, a reservoir of the dispending bowl facing the inside top of the cylindrical glass tube. Inserted into the hollow evaporator tube is a heating element configured to heat the hollow evaporator tube such that an outside surface of the evaporator tube is heated. At the top of the hollow cylindrical glass is an inlet where liquid flows into the dispensing bowl, spilling over the edges of the bowl, generating a thin film of liquid that is evaporated as it falls down the outside surface of the evaporator tube.
Integrated rotary evaporator apparatuses are provided. Such rotary evaporators include a vertically oriented evaporator for evaporating a sample to form a sample evaporate, a mixing apparatus for mixing the sample in the evaporator, a condenser for condensing the evaporated sample into a condensate, a collection vessel for collecting the condensate, a vacuum pump to create a vacuum in the evaporator, and a refrigeration system integrated into the condenser, where all components are integrated into a single apparatus. Standalone large-scale chillers for cooling a liquid, vapor or other medium are also provided. Such chillers include a heat exchanger or evaporator, a condenser, a compressor, and a temperature controller, all integrated into a single standalone chiller usable with any vessel or reservoir containing liquids, vapors or other medium from which heat is to be removed. Methods of using such devices to distill, evaporate and/or cool a sample or medium are provided.
B01D 3/08 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in rotating vesselsAtomisation on rotating discs
40 - Treatment of materials; recycling, air and water treatment,
Goods & Services
Manufacture of rotary evaporators, chilling apparatus and accessories to the order and specification of others including use with cannabis products solely derived from hemp with a delta-9 tetrahydrocannabinol THC concentration of not more than 0.3 percent on a dry weight basis
12.
Distillation and rotary evaporation apparatuses, devices and systems
Provided herein are integrated distillation apparatuses configured as stand-alone fully integrated systems having a reduced footprint. Integrated distillation apparatuses can have a rotary evaporator, a condenser, and an integrated refrigeration system or chiller, as well as an integrated water bath and vacuum pump, all of which can be integrated into a central frame and/or housing assembly. Integrated distillation apparatuses can be configured such that the rotary evaporator is movably attached to a frame structure and configured to be vertically translatable in position, whereas the condenser can be affixed to the structure by an arm extending from the structure and adjacent to the rotary evaporator, and wherein the refrigeration system can be in fluid communication with the condenser.
B01D 3/08 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in rotating vesselsAtomisation on rotating discs
B01D 5/00 - Condensation of vapoursRecovering volatile solvents by condensation
B01D 3/02 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in boilers or stills
40 - Treatment of materials; recycling, air and water treatment,
Goods & Services
Self-contained rotary evaporators and accessories for rapid and efficient cooling in commercial, industrial and academic uses. Manufacture of rotary evaporators, chilling apparatus and accessories to the order and specification of others.
40 - Treatment of materials; recycling, air and water treatment,
Goods & Services
Self-contained rotary evaporators and accessories for rapid and efficient cooling in commercial, industrial and academic uses. Manufacture of rotary evaporators, chilling apparatus and accessories to the order and specification of others.
40 - Treatment of materials; recycling, air and water treatment,
Goods & Services
Self-contained rotary evaporators and accessories for rapid and efficient cooling in commercial, industrial and academic uses. Manufacture of rotary evaporators, chilling apparatus and accessories to the order and specification of others.
Integrated rotary evaporator apparatuses are provided. Such rotary evaporators include a vertically oriented evaporator for evaporating a sample to form a sample evaporate, a mixing apparatus for mixing the sample in the evaporator, a condenser for condensing the evaporated sample into a condensate, a collection vessel for collecting the condensate, a vacuum pump to create a vacuum in the evaporator, and a refrigeration system integrated into the condenser, where all components are integrated into a single apparatus. Standalone large-scale chillers for cooling a liquid, vapor or other medium are also provided. Such chillers include a heat exchanger or evaporator, a condenser, a compressor, and a temperature controller, all integrated into a single standalone chiller usable with any vessel or reservoir containing liquids, vapors or other medium from which heat is to be removed. Methods of using such devices to distill, evaporate and/or cool a sample or medium are provided.
B01D 3/00 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping
B01D 3/02 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in boilers or stills
B01D 3/08 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in rotating vesselsAtomisation on rotating discs
Integrated rotary evaporator apparatuses are provided. Such rotary evaporators include a vertically oriented evaporator for evaporating a sample to form a sample evaporate, a mixing apparatus for mixing the sample in the evaporator, a condenser for condensing the evaporated sample into a condensate, a collection vessel for collecting the condensate, a vacuum pump to create a vacuum in the evaporator, and a refrigeration system integrated into the condenser, where all components are integrated into a single apparatus. Standalone large-scale chillers for cooling a liquid, vapor or other medium are also provided. Such chillers include a heat exchanger or evaporator, a condenser, a compressor, and a temperature controller, all integrated into a single standalone chiller usable with any vessel or reservoir containing liquids, vapors or other medium from which heat is to be removed. Methods of using such devices to distill, evaporate and/or cool a sample or medium are provided.
B01D 3/00 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping
B01D 3/08 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in rotating vesselsAtomisation on rotating discs
Provided herein are compact chiller and cooler apparatuses, devices and systems. Chiller apparatuses disclosed herein include a refrigeration system contained in a central housing with an external heat exchanger or “cold finger” designed to be universally applicable to cooling various sizes and configurations of water baths and laboratory applications needing a cooling capacity. Chiller apparatuses disclosed herein are designed to be universally used with rotary evaporators, vacuum ovens, centrifugal concentrators and freeze dryers.
Provided herein are integrated distillation apparatuses configured as stand-alone fully integrated systems having a reduced footprint. Integrated distillation apparatuses can have a rotary evaporator, a condenser, and an integrated refrigeration system or chiller, as well as an integrated water bath and vacuum pump, all of which can be integrated into a central frame and/or housing assembly. Integrated distillation apparatuses can be configured such that the rotary evaporator is movably attached to a frame structure and configured to be vertically translatable in position, whereas the condenser can be affixed to the structure by an arm extending from the structure and adjacent to the rotary evaporator, and wherein the refrigeration system can be in fluid communication with the condenser.
B01D 3/08 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in rotating vesselsAtomisation on rotating discs
Provided herein are compact chiller and cooler apparatuses, devices and systems. Chiller apparatuses disclosed herein can comprise a refrigeration system contained in a central housing with an external heat exchanger or "cold finger" configured to be universally applicable to cooling various sizes and configurations of water baths and laboratory applications needing a cooling capacity. Chiller apparatuses disclosed herein are configured to be universally used with rotary evaporators, vacuum ovens, centrifugal concentrators and freeze dryers.
Provided herein are compact chiller and cooler apparatuses, devices and systems. Chiller apparatuses disclosed herein can comprise a refrigeration system contained in a central housing with an external heat exchanger or "cold finger" configured to be universally applicable to cooling various sizes and configurations of water baths and laboratory applications needing a cooling capacity. Chiller apparatuses disclosed herein are configured to be universally used with rotary evaporators, vacuum ovens, centrifugal concentrators and freeze dryers.
Provided herein are compact chiller and cooler apparatuses, devices and systems. Chiller apparatuses disclosed herein can comprise a refrigeration system contained in a central housing with an external heat exchanger or “cold finger” configured to be universally applicable to cooling various sizes and configurations of water baths and laboratory applications needing a cooling capacity. Chiller apparatuses disclosed herein are configured to be universally used with rotary evaporators, vacuum ovens, centrifugal concentrators and freeze dryers.
Provided herein are integrated distillation apparatuses configured as stand-alone fully integrated systems having a reduced footprint. Integrated distillation apparatuses can have a rotary evaporator, a condenser, and an integrated refrigeration system or chiller, as well as an integrated water bath and vacuum pump, all of which can be integrated into a central frame and/or housing assembly. Integrated distillation apparatuses can be configured such that the rotary evaporator is movably attached to a frame structure and configured to be vertically translatable in position, whereas the condenser can be affixed to the structure by an arm extending from the structure and adjacent to the rotary evaporator, and wherein the refrigeration system can be in fluid communication with the condenser.
B01D 3/02 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in boilers or stills
B01D 3/08 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in rotating vesselsAtomisation on rotating discs
Provided herein are integrated distillation apparatuses configured as stand-alone fully integrated systems having a reduced footprint. Integrated distillation apparatuses can have a rotary evaporator, a condenser, and an integrated refrigeration system or chiller, as well as an integrated water bath and vacuum pump, all of which can be integrated into a central frame and/or housing assembly. Integrated distillation apparatuses can be configured such that the rotary evaporator is movably attached to a frame structure and configured to be vertically translatable in position, whereas the condenser can be affixed to the structure by an arm extending from the structure and adjacent to the rotary evaporator, and wherein the refrigeration system can be in fluid communication with the condenser.
Provided herein are integrated distillation apparatuses configured as stand-alone fully integrated systems having a reduced footprint. Integrated distillation apparatuses can have a rotary evaporator, a condenser, and an integrated refrigeration system or chiller, as well as an integrated water bath and vacuum pump, all of which can be integrated into a central frame and/or housing assembly. Integrated distillation apparatuses can be configured such that the rotary evaporator is movably attached to a frame structure and configured to be vertically translatable in position, whereas the condenser can be affixed to the structure by an arm extending from the structure and adjacent to the rotary evaporator, and wherein the refrigeration system can be in fluid communication with the condenser.
B01D 3/02 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in boilers or stills
B01D 3/08 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in rotating vesselsAtomisation on rotating discs
40 - Treatment of materials; recycling, air and water treatment,
Goods & Services
Self-contained rotary evaporators, freeze dryers, chillers and accessories for rapid and efficient cooling in commercial, industrial and academic labs [ Manufacture of rotary evaporators, chilling apparatus and accessories to the order and specification of others ]
A rotary evaporator comprising a motor, a rotary joint movably inserted to a motor rotor of the motor by a sleeve in an axial direction, a collection flask attached to the rotary joint at one end of the joint, with a condenser attached to the other end of the joint. The condenser is adapted to receive a cooling coil from an immersion cooler. The cooling coil is attached to the base unit of the immersion cooler via an insulated hose. The rotary evaporator is adapted to provide various ways to remove heat from the flask in the water bath, whether by mechanically lowering the water bath, dropping fluid from the bath into an underlying reservoir, or raising and lowering the rotary evaporator out of the bath. Where the rotary evaporator is raised and lowered, the immersion cooler can remain in place if the hose connecting the base unit to the cooling coil is sufficiently long, or the condenser includes a flexible portion that accommodates the upward and downward movement.
B01D 1/22 - Evaporating by bringing a thin layer of the liquid into contact with a heated surface
B01D 3/08 - Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping in rotating vesselsAtomisation on rotating discs