Abstract: A method is presented for the production of cellulosic ethanol, acetic acid and derivatives from the extract containing fibers and hemicelluloses after steam cooking of biomass in a host plant. The process is integrated with the host plant process to minimize the effect of loss of heat value from the extracted hemicelluloses and eliminate the need for the waste water treatment plant.
Type:
Grant
Filed:
May 28, 2009
Date of Patent:
July 3, 2012
Assignee:
API Intellectual Property Holdings, LLC
Inventors:
Theodora Retsina, Vesa Pylkkanen, Kimberley Nelson
Abstract: Provided are a coating solution for a thermosensitive color developing layer of excellent storability wherein color development during its storage or during producing a thermal recording material is suppressed, and a thermal recording material with excellent print portion (image portion) storability and suppressed staining in the background color (white background). A coating solution for a thermosensitive color developing layer, which comprises a colorless or pale-colored electron-donating leuco dye, a hindered phenol compound and, as an electron-accepting developer, a diphenylsulfone derivative represented by the following formula (1): wherein the aforementioned hindered phenol compound has an average particle size (D50) of not more than 0.5 ?m, and the coating solution has a color tone a* of not less than ?4.0 as measured according to JIS Z 8729 and a whiteness W of not less than 62 as measured according to JIS Z 8715.
Type:
Application
Filed:
April 2, 2010
Publication date:
June 21, 2012
Applicants:
API CORPORATION, NIPPON PAPER INDUSTRIES CO., LTD.
Inventors:
Yoshimune Aosaki, Mai Kaneko, Katsuto Ohse, Yukiko Sato
Abstract: Provided is a thermal recording material superior in color development sensitivity, and having good preservation properties such as in heat resistance, moisture resistance, water resistance and the like.
Type:
Grant
Filed:
September 26, 2007
Date of Patent:
June 19, 2012
Assignees:
Nippon Paper Industries Co., Ltd, API Corporation
Abstract: A machine head for producing a surface relief on a substrate, the machine head comprising a flexible stamping element having a curved profile and an inverse of the surface relief on its convex side; and the flexibility of the element being such that the inverse of the surface relief can be pressed to become flat and in planar contact with the substrate being pressed.
Type:
Grant
Filed:
February 22, 2010
Date of Patent:
April 24, 2012
Assignee:
API Group PLC
Inventors:
Stephen Done, Ken Shepherd, Phil Carpenter
Abstract: The invention concerns the use of a genomic marker comprising a nucleotide sequence corresponding to all or part of the nucleotide sequence SEQ ID No 1, or to all or a part of an allele of the nucleotide sequence SEQ ID No 1 and associated with the phenotype relating to the tenderness of the meat from bovines, for the implementation of any identification method for the quantification of DNAJA1 expression level with the aim of selecting and/or sorting ruminant animals of the bovine type which produce tender meat and/or for the implementation of an identification method of tender meats at the moment of slaughter by direct sampling from the carcass. The invention concerns identification methods using the real time RT-PCR technique, the hybridization of labelling cDNA with an oligonucleotide probe and the detection of antigen-antibody complexes.
Type:
Grant
Filed:
September 12, 2007
Date of Patent:
January 17, 2012
Assignees:
Institut National de la Recherche Agronomique, APIS Gene
Abstract: The subject invention relates to novel soluble forms of planar ring structured organic compounds including flavonoids, and their production. The invention also includes the use of these novel formulations of planar ring structured organic compounds in the preparation of formulations and products. The invention also relates to a wide variety of applications of the formulations of the invention. The subject invention includes novel soluble forms and various formulations of flavonoids. Further, the invention includes novel methods of manufacturing the flavonoid formulations. The invention also relates to a wide variety of applications of the flavonoid formulations.
Abstract: The present invention relates to a developer mixture for a thermal recording material, which comprises a mixture of the first organic developer comprising a condensate or a condensed composition represented by the formula (I): wherein R is a lower alkyl group or an aralkyl group, n is an integer of 0 to 5, and X and Y are each a hydrogen atom, an alkyl group or an aryl group, and the second organic developer other than the first organic developer (except 2,2-bis(3-methyl-4-hydroxyphenyl)propane), a developer mixture for a thermal recording material, and a thermal recording material having a heat-coloring layer containing the developer mixture. Using the developer mixture for a thermal recording material of the present invention, a thermal recording material sufficiently satisfying the recent requirement for high sensitivity, and having superior preservation stability of color images and non-image areas can be realized.
Type:
Grant
Filed:
March 11, 2005
Date of Patent:
November 22, 2011
Assignees:
API Corporation, Nippon Paper Industries Co., Ltd.
Abstract: An inter-networking system and method that provides for access control identifier (ACI) metadata utilization for the life of a session even on unknown networks being traversed, allowing for ACI metadata utilization, reutilization, and modification in both the send and receive paths (bi-directional), and allowing for metadata transport over network segments requiring that ACIs be embedded at different layers of the communications stack.
Type:
Grant
Filed:
July 13, 2009
Date of Patent:
August 2, 2011
Assignee:
API Cryptek Inc.
Inventors:
David Gross, Timothy C. Williams, Robert Babiskin, Randall E. Breeden
Abstract: A water separator and system includes a compressed air aftercooler and water/moisture separator with a demister core comprising a plurality of offset fins. In one embodiment, the compressed air aftercooler comprises a compressed air core having an aftercooler inlet, an aftercooler outlet at the bottom of the compressed air core, and one or more heat transfer passages. In one aspect, the system comprises a moisture separator substantially integral to the aftercooler. In another aspect, the system includes a first generally horizontal region beneath and adjacent to the aftercooler outlet; and an expansion zone adjacent to and in fluid communication with the first region, the expansion zone being configured to reduce the horizontal velocity of compressed air passing therethrough. In another aspect, the demister core is in fluid communication with the expansion zone.
Type:
Application
Filed:
December 7, 2009
Publication date:
May 5, 2011
Applicant:
API HEAT TRANSFER INC.
Inventors:
Timothy J Galus, John Stromecki, Timothy Beechler
Abstract: A pressure-sensitive adhesive containing a near infrared absorbing dye having excellent shielding function for near infrared rays and excellent in durability is provided. In a light resistance test, a layer of the pressure-sensitive adhesive having a thickness of 25±5 ?m has an absorption intensity at the maximum absorption wavelength of the near infrared absorbing dye after a light resistance test of 50% or more of the absorption intensity before the test in which light with an irradiance of 64.5 W/m2 at a wavelength of 300 to 400 nm is irradiated on the layer for 160 hours.
Abstract: A pressure-sensitive adhesive containing a near infrared absorbing dye having excellent shielding function for near infrared rays and excellent in durability is provided. In a light resistance test, a layer of the pressure-sensitive adhesive having a thickness of 25±5 ?m has an absorption intensity at the maximum absorption wavelength of the near infrared absorbing dye after a light resistance test of 50% or more of the absorption intensity before the test in which light with an irradiance of 64.5 W/m2 at a wavelength of 300 to 400 nm is irradiated on the layer for 160 hours.
Abstract: A heat exchanger plate (3a) for a plate-type heat exchanger having throughflow openings (4-7), which are arranged adjacent to one another in the plane of the plate, for fluid media is provided. The heat exchanger plate (3a) is formed from a first material, in particular steel or high-grade steel, and those surfaces (18a, 19a, 20a) of the heat exchanger plate (3a) which come into contact with one of the fluid media are formed from, or lined, with another material which is in particular more corrosion resistant than the first material.
Abstract: It is an object of the present invention to provide a process for producing 1,2,3-tri-O-acetyl-5-deoxy-ribofuranose in an industrially appropriate manner. The present invention provides a process for producing a 1,2,3-tri-O-acetyl-5-deoxy-ribofuranose which comprises hydrogenating a compound represented by the formula (1) or formula (2) in the presence of a metal catalyst: wherein P1 and P2 independently represent a hydrogen atom or an acyl group, OP1 and OP2 may together form an acetal group, and R represents a hydrogen atom, an alkyl group, an aryl group, an aralkyl group, or an acyl group; wherein X1 represents Br or I, P3 and P4 independently represent a hydrogen atom or an acyl group, and R represents a hydrogen atom, an alkyl group, an aryl group, an aralkyl group, or an acyl group.
Abstract: Methods include providing an article including a substrate, a first layer supported by the substrate, and an interface between the substrate and the first layer. The substrate is substantially transparent to radiation at a wavelength ? and the first layer is formed from a photoresist. The methods include exposing the first layer to radiation by directing radiation at ? through the substrate to impinge on the interface so that the radiation experiences total internal reflection at the interface.
Type:
Application
Filed:
May 15, 2009
Publication date:
November 18, 2010
Applicant:
API Nanofabrication and Research Corp.
Inventors:
Martin Moskovits, Linh Nguyen, Robert Koefer, Qihong Wu, Xu Zhang, Shiaw-Wen Tai
Abstract: Manufacturing a surface enhanced Raman spectroscopy (SERS) active structure includes exposing a substrate to produce an exposure pattern then etching the substrate based on the exposure pattern to produce a plurality of nanostructure cores having a plurality of sides extending from the substrate. Adjacent nanostructure cores are separated by core gaps. SERS active material is deposited onto the plurality of nanostructure cores producing a structure having gaps suitable for use in a SERS process.
Type:
Application
Filed:
May 7, 2009
Publication date:
November 11, 2010
Applicant:
API Nanofabrication & Research Corp.
Inventors:
Martin Moskovits, Thomas Wray Tombler, Robert Frank Koefer
Abstract: A machine head for producing a surface relief on a substrate, the machine head comprising a flexible stamping element having a curved profile and an inverse of the surface relief on its convex side; and the flexibility of the element being such that the inverse of the surface relief can be pressed to become flat and in planar contact with the substrate being pressed.
Type:
Application
Filed:
February 22, 2010
Publication date:
August 26, 2010
Applicant:
API GROUP PLC
Inventors:
Stephen DONE, Ken SHEPHERD, Phil CARPENTER
Abstract: A method for producing a patterned surface relief on a substrate, the method comprising the steps of depositing a curable resin on to the substrate; pressing the surface of a first shim in to the resin, the surface of the first shim having an inverse impression profile of a first surface relief; curing the resin within the region pressed by the first shim; and removing the first shim from the resin; wherein one or both of the depositing and curing steps are performed on a first selected area within the region pressed by the first shim such that the surface relief in the resin is formed only within the said first selected area of the said region.
Abstract: A method of producing a film having a diffractive surface pattern in selected areas by processing a precursor film having a diffractive surface relief throughout one or more zones together defining a target area of the precursor film; the method comprising applying material to a selected zone of the diffractive surface relief so as to nullify the diffractive effect of the surface relief in the zone.
Abstract: An object of the present invention is to provide a industrially appropriate method for producing the ?-anomers of ribofuranose derivatives in a highly selective manner at a high yield. The present invention provides a method for producing ribofuranose derivatives wherein ?-anomers is precipitated from among the generated furanose derivatives by controlling the amount of a reaction reagent used and/or using a poor solvent in the acetolysis reactions of 2,3,5-tri-O-acyl-1-O-alkyl-ribofuranose and 2,3-di-O-acyl-1-O-alkyl-5-deoxy-ribofuranose.