G01N30/606

GAS CHROMATOGRAPH DEVICE WITH COLUMN RECOGNITION TECHNOLOGY SYSTEM AND METHOD OF USE THEREOF

A gas chromatograph with column recognition technology system for the column includes a column and the column recognition technology system for the column. The column is configured for gas chromatography. The column includes column parameters associated with the column. The column recognition technology system may be configured to auto-recognize the column in the gas chromatograph device. Wherein, the column recognition technology system may be configured to auto-recognize the column parameters associated with the auto-recognized column.

CHROMATOGRAPHY COLUMNS, SYSTEMS AND METHODS
20180356375 · 2018-12-13 · ·

The present invention relates to axial flow chromatography columns, methods for separating one or more analytes in a liquid by the use of such columns, and systems employing such columns. The column comprises a first port and a second port, the first port and said second port being at essentially the same level or elevation above the level of the bed space on the chromatography column.

Sealed micro gas chromatography columns and methods thereof

The present application relates to microfabricated columns having a sealed flow channel. In particular, the channel is sealed during dicing, thereby preventing debris from accumulating within channels. In use, the seal is ruptured mechanically to connect one or more fluidic connections, which deliver analytes to the flow channel. Additional details are provided for making and using sealed columns.

LIQUID CHROMATOGRAPHY COLUMNS WITH STRUCTURED WALLS
20180340919 · 2018-11-29 ·

A liquid chromatography (LC) column includes a wall having a length along a central axis from the inlet end to the outlet end, the wall enclosing a column interior and having a column radius relative to the central axis, the wall comprising a structured portion configured such that the column radius varies along the length; and a plurality of particles packed in the column interior, wherein at least some of the particles are in contact with the structured portion.

CRESCENT PLOT COLUMNS AND METHODS FOR PREPARING CRESCENT PLOT COLUMNS

A crescent PLOT column is disclosed, including a capillary column having an inlet, an outlet, a bore, and an inner surface surrounding the bore and extending between the inlet and the outlet. A layer of particles is localized on a radial portion of the inner surface. The layer of the particles includes a radial thickness decreasing from a center of the radial portion to a periphery of the radial portion, forming a crescent shape in a radial frame of reference. A method for preparing the crescent PLOT column is disclosed, including loading the capillary column with a fluid including a carrier and particles such that the fluid is contained within the capillary column. The capillary column and the fluid contained within the capillary column are subjected to a centrifugal force. The carrier is removed, and a layer of the particles is localized on the radial portion of the inner surface.

LIQUID-CHROMATOGRAPHY APPARATUS HAVING DIFFUSION-BONDED TITANIUM COMPONENTS

An HPLC apparatus includes a heat exchanger formed from diffusion-bonded first and second titanium substrates. At least two conduits for counterflow are defined between the first and second substrates.

FLUID PORT STRUCTURE AND SAMPLE SUPPLY DEVICE
20240319148 · 2024-09-26 · ·

A fluid port structure includes a tube and a cylindrical portion and receives injection of a fluid. The tube has sealability. A flow path through which the fluid flows is formed in the tube. In the cylindrical portion, a through hole that extends in an axial direction in which the fluid flows is formed. An upstream end portion of the tube is inserted into the through hole. An inner peripheral surface of the cylindrical portion has a tapered surface, and the more upstream a position on the tapered surface than a predetermined position in the axial direction, the larger a diameter of the portion of the through hole. The tube has a widening portion that widens along the tapered surface of the cylindrical portion in the upstream end portion.

Liquid chromatography columns with structured walls

A liquid chromatography (LC) column includes a wall having a length along a central axis from the inlet end to the outlet end, the wall enclosing a column interior and having a column radius relative to the central axis, the wall comprising a structured portion configured such that the column radius varies along the length; and a plurality of particles packed in the column interior, wherein at least some of the particles are in contact with the structured portion.

Chromatography columns, systems and methods
10048235 · 2018-08-14 · ·

The present invention relates to axial flow chromatography columns, methods for separating one or more analytes in a liquid by the use of such columns, and systems employing such columns. The column comprises a first port and a second port, the first port and said second port being at essentially the same level or elevation above the level of the bed space on the chromatography column.

Liquid-chromatography apparatus having diffusion-bonded titanium components

An HPLC apparatus includes a heat exchanger formed from diffusion-bonded first and second titanium substrates. At least two conduits for counterflow are defined between the first and second substrates.