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36results about How to "Effect separation" patented technology

Blood analysis device and blood analysis method

A blood analysis device for centrifugally separating plasma in a channel, wherein conveyance of blood, plasma and calibration liquid is effected within the device without using a pump or the like. The calibrator solution is reliably discharged from a sensor portion so as to make high precision analysis possible. A sensor section is provided in a plasma separating section and disposed on the side associated with a first centrifugal pressing direction as seen from a blood reservoir and a calibrator solution reservoir, while a calibrator solution waste reservoir is disposed in a second centrifugal pressing direction as seen from the plasma separating section (sensor section). The calibrator solution is conveyed to the sensor section by centrifugal operation in the first centrifugal direction. After sensor calibration, the calibrator solution can be reliably discharged from the sensor section by effecting centrifuging in the second centrifugal direction. After the calibrator solution discharge, centrifuging is effected again in the first centrifugal direction, thereby conveying the blood in the blood reservoir to the sensor section and effecting separation of blood cells and plasma. In the case of providing a plurality of sensors, a blood introducing channel from the blood reservoir is branched downwardly of a sensor groove for communication, with the blood cells being fractionated in the branch section. The individual sensors can be isolated from each other by blood cell fraction, making higher precision analysis possible.
Owner:JAPAN SCI & TECH CORP

Novel material for use in separation and separating method using the same

A separatory material comprising a composite material containing a stimulus-responsive polymer and a substance interacting specifically with a target substance, wherein said stimulus-responsive polymer undergoes a structural change upon a physical stimulus so that the interaction of said substance interacting specifically with the target substance is affected by the chemical or physical environmental change, thereby causing a reversible change in the interaction force with the target substance due to the physical stimulus, which separatory material is characterized in that said stimulus-responsive polymer has no affinity with said substance interacting specifically with the target substance.
Owner:JAPAN CHEM INNOVATION INST +1

Methods For Analysis of Lipids Using Mass Spectrometry

A method and apparatus for analyzing samples using mass spectrometry are disclosed. The apparatus includes a reaction device configured to dissociate sample ions into fragments by reacting the sample ions with a charged species (e.g., electrons) such as through ECD, EID, or EIEIO. The kinetic energy of the charged species is such that the fragments may be detected and produce spectra that allow for the determination of isomeric species in the sample and the location of double bonds of sample molecules. The fragments may include radical fragments and non-radical fragments. The apparatus may also include an oxygen gas source configured to react with the radical fragments to produce oxygen-radical fragments. Spectra resulting from analysis of the fragments may allow for the determination of the oxygen-radical fragments resulting from the dissociation of the sample molecules.
Owner:DH TECH DEVMENT PTE

Blood analysis device and blood analysis method

A blood analysis device for centrifugally separating plasma in a channel, wherein conveyance of blood, plasma and calibration liquid is effected within the device without using a pump or the like. The calibrator solution is reliably discharged from a sensor portion so as to make high precision analysis possible. A sensor section is provided in a plasma separating section and disposed on the side associated with a first centrifugal pressing direction as seen from a blood reservoir and a calibrator solution reservoir, while a calibrator solution waste reservoir is disposed in a second centrifugal pressing direction as seen from the plasma separating section (sensor section). The calibrator solution is conveyed to the sensor section by centrifugal operation in the first centrifugal direction. After sensor calibration, the calibrator solution can be reliably discharged from the sensor section by effecting centrifuging in the second centrifugal direction. After the calibrator solution discharge, centrifuging is effected again in the first centrifugal direction, thereby conveying the blood in the blood reservoir to the sensor section and effecting separation of blood cells and plasma. In the case of providing a plurality of sensors, a blood introducing channel from the blood reservoir is branched downwardly of a sensor groove for communication, with the blood cells being fractionated in the branch section. The individual sensors can be isolated from each other by blood cell fraction, making higher precision analysis possible.
Owner:JAPAN SCI & TECH CORP

Crop harvesting header with crop divider members carried on the reel

A crop harvesting header includes a cutter bar arranged across a forward edge, a draper or auger transport arrangement for transporting the cut crop, and a reel mounted on reel arms having a plurality of reel bats at spaced positions around the reel axis each reel bat having reel fingers projecting generally radially outwardly from the reel axis. Each bat is mounted for pivotal movement about its bat axis. At both ends of each bat is mounted a crop divider which pivots with the bat and is formed with a plate lying in a radial plane of the bat with angularly spaced fingers around the outer edge. A leading edge of the plate and front finger is convexly curved relative to the concave curve of the front edge of the finger and is angularly advanced relative to the leading edge of the adjacent fingers such that the rotating crop dividers on the reel co-operate with a stationary crop on the header to separate the cut crop from uncut crop passing alongside the end of the header.
Owner:MACDON INDS

Automated extraction of casing clips from cooked meat products

A method apparatus for removing a casing, particularly a casing with a clip end embedded in the product, is disclosed where the clipped end is clamped and gas is injected into this end to blow out the clip and casing end while the clamped portion prevents the entire casing from being inflated. The air or gas, such as HEPA filtered air, is injected into the product with a needle, for instance, to balloon out the casing in the clamped area to free the previously embedded clip. The clip is then gripped, certain cuts are made in the casing, and the casing is pulled from the product. An injector such as a needle is inserted into the end portion of the product and pressurized gas, such as HEPA filtered air, is injected into the end portion. The injection of the gas causes the casing to balloon out from the product thereby freeing the previously embedded clip. The freed clip is then gripped while the casing is then cut for removal. The casing may be cut in a Y-shape with two cuts beginning approximately at two corners of one side of the square end and angled towards each other along a side of the product. The two cuts meet, and a third cut is made longitudinally along the length of the product beginning at the meeting point of the two angled cuts. The gripped clip and casing are pulled causing the casing to separate from the product along the cut lines.
Owner:KRAFT FOODS GRP BRANDS LLC

Process for the preparation of pentafluoroethane

There is provided a process of effectively separating pentafluoroethane (HFC-125) from a mixture of HFC-125 and chloropentafluoroethane (CFC-115).When the mixture of HFC-125 and CFC-115 is subjected to an extractive distillation to obtain a concentrated HFC-125, ethyleneglycol-based compounds (3) having a general formula:wherein R1 and R2 may be the same or different and are each independently selected from the group consisting of hydrogen and an alkyl group having 1 to 4 carbon atoms, and n is an integer with a value from 1 to 3 is used as an extractant, whereby CFC-115 is obtained as a distillate product (4) and a mixture of HFC-125 and the extractant as a bottom product (5) is obtained. Then, the extractant is separated from HFC-125 by distilling the mixture and re-used in the extractive distillation.
Owner:DAIKIN IND LTD
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