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USPTO Class 568 | Browse by Industry: Previous - Next | All 04/2006 | Recent | 09: Oct | Sept | Aug | Jul | Jun | May | Apr | Mar | Feb | Jan | | 08: Dec | Nov | Oct | Sp | Aug | Jul | Jun | May | Apr | Mar | Feb | Jan | | 07: Dec | Nov | Oct | Sep | Aug | Jul | Jun | May | Apr | Mar | Feb | Jan | | 06: Dec | Nov | Oct | Sep | Aug | Jul | Jun | May | Apr | Organic compounds -- part of the class 532-570 series inventions 04/06Recently published patent applications awaiting approval from the USPTO. Recent week's RSS XML file available below.Listing format for abstract view: USPTO application #, Title, Abstract excerpt,Patent Agent. Listing format for list view: USPTO National Class full category number, title of the patent application. 04/27/2006 > 1 patent applications in 1 patent subcategories. 20060089515 - Process for continuously preparing alkylene glycol diethers: P 04/20/2006 > 3 patent applications in 3 patent subcategories.20060084827 - Method for thermal stabilization of highly concentrated formaldehyde solutions: Method of stabilizing high-concentration formaldehyde solutions having a CH2O content of >70% by weight against precipitation of solids, which comprises heating the high-concentration formaldehyde solution at a heating rate of at least 5° C./min to a temperature of from 80° C. to 200° C. immediately after it has been prepared... 20060084828 - Process for preparation of (+)-p-mentha-2,8-diene-1-ol: A process for preparing (+)-p-mentha-2,8-diene-1-ol comprising reacting (+)-limonene oxide with at least one amine in the presence of at least one Lewis acid to form amine adduct intermediates. The amine adduct is then oxidized to form an N-oxide that is pyrolized to form (+)-p-mentha-2,8-diene-1-ol.... 20060084829 - Production process of allyl alcohol, and allyl alcohol obtained by the production processes: A process for producing allyl alcohol, comprising a step (1) of producing allyl acetate from propylene, acetic acid and oxygen in a gas phase in the presence of a catalyst comprising a support having supported thereon a catalyst component containing a compound containing alkali metal and/or alkaline earth metal, an... 04/13/2006 > 2 patent applications in 2 patent subcategories.20060079720 - Method for preparing acetal-containing compositions: An acetal compound may be formed by the method of reacting a substitiuted or unsubstituted benzaldehyde, a polyhydric alcohol, and an at least one acid catalyst at ambient temperatures, in a homogenous reaction media in the presence of at least one water miscible organic solvent. The molar ratio of the... 20060079721 - Process for producing anthracene diether: An industrially advantageous process is presented whereby a high purity anthracene diether can be produced in good yield. An aqueous medium containing an alkali salt of 9,10-anthracenediol is added to an organic solvent containing an etherifying agent in the presence or absence of a quaternary ammonium compound or a quaternary... 04/06/2006 > 4 patent applications in 4 patent subcategories.20060074262 - Process for producing ether compound: P 20060074263 - Fluorine-containing vinylethers, their polymers, and resist compositions using such polymers: The invention relates to a fluorine-containing vinyl ether represented by the formula (1), wherein R represents an organic group containing at least one fluorine atom and a cyclic structure. The invention further relates to a fluorine-containing copolymer containing (a) a first unit derived from a first monomer that is a... 20060074264 - Method of producing a flourine-containing vinyl ether compound: wherein R is a straight-chain, branched-chain or cyclic alkyl group that may have a substituent and/or an unsaturated bond; X11 is a halogen atom other than a fluorine atom; X12, X13, and X14 each independently are a halogen atom; X21 is a halogen atom other than a fluorine atom; and... 20060074265 - Asymmetric catalytic systems: The present invention relates to a process for the recovery and the reuse of catalytic systems involving 1,1′-Bi-2-Naphthol (BINOL) and titanium tetraisopropoxide. A further object of the invention is a new method for catalyzing an asymmetric reaction in high conversion rate and enantioselectivity.... 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