Abstract:
PROCESS OF PRODUCING NICKEL ALCOHOLATES BY REACTING $-ALLYL NICKEL COMPOUNDS WITH CARBONLY COMPOUNDS. THE NICKEL ALCOHOLATES SO PRODUCED CAN BE HYDROLYZED TO THEIR CORRESPONDING ALCOHOLS AND THESE ALCOHOLS CAN IN PART BE DEHYDRATED TO THEIR CORRESPONDING OLEFINS. THE NICKEL ALCOHOLATE PRODUCTS ARE USEFUL FOR THE PRODUCTION OF THEIR CORRESPONDING ALCOHOLS AND THESE ALCOHOLS ARE USEFUL FOR THE PRODUCTION OF THEIR CORRESPONDING OLEFINS.
Abstract:
Alkali metal oxides of cis- and trans-2,6,6-trimethylbicyclo(3.1.1)-heptan-2-ol are surprisingly effective bases in organic reactions calling for the use of a strong base, especially those reactions wherein abstraction of a proton from attachment to a carbon atom is postulated to occur in the mechanism.
Abstract:
Described are substituted tricyclodecane derivatives having the generic structure: ##STR1## wherein Y is a moiety having a structure selected from the group consisting of: ##STR2## wherein one of the dashed lines represents a carbon-carbon single bond and the other of the dashed lines represents a carbon-carbon double bond; wherein R.sub.1 and R.sub.2 represent hydrogen or methyl with the proviso that one of R.sub.1 and R.sub.2 is hydrogen and the other of R.sub.1 and R.sub.2 is methyl; wherein R.sub.3 is hydrogen, C.sub.1 -C.sub.3 acyl, C.sub.3 or C.sub.4 alkyl or C.sub.3 or C.sub.4 alkenyl; wherein R.sub.4, R.sub.5 and R.sub.6 represent hydrogen or methyl with the additional proviso that one of R.sub.4, R.sub.5 and R.sub.6 is methyl and the other two of R.sub.4, R.sub.5 and R.sub.6 is hydrogen. Also described are processes for preparing such substituted tricyclodecane derivatives and processes for using the above defined substituted tricyclodecane derivatives for their organoleptic properties and compositions containing said substituted tricyclodecane derivatives including perfumes, perfumed articles, such as solid or liquid anionic, cationic, nonionic and zwitterionic detergents, fabric softeners and cosmetic powders; foodstuffs, chewing gums, toothpastes, medicinal products and chewing tobaccos; smoking tobacco compositions and smoking tobacco flavoring compositions and smoking tobacco articles containing such smoking tobacco compositions.
Abstract:
The invention is directed to an apparatus for contacting in a reactor solids in the form of free-flowing lumps with liquids or for contacting solids with liquids and gases by bringing the reactants into contact with each other, said reactor comprising a housing containing a screen in the area of which contacting takes place whereinthe screen is a rotary screen drum 5,the screen drum 5 rotates in a bottom vat during the operation, said vat holding a gaseous or liquid medium reacting with the solids, andthe bottom vat 10 can be lowered such that the solids in the screen drum 5 and the medium in the bottom vat 10 can be separated from each other whenever it is desired to alter or interrupt the chemical reaction or physical process.
Abstract:
Described are substituted tricyclodecane derivatives having the generic structure: ##STR1## wherein Y is a moiety having a structure selected from the group consisting of: ##STR2## wherein one of the dashed lines represents a carbon-carbon single bond and the other of the dashed lines represents a carbon-carbon double bond; wherein R.sub.1 and R.sub.2 represent hydrogen or methyl with the proviso that one of R.sub.1 and R.sub.2 is hydrogen and the other of R.sub.1 and R.sub.2 is methyl; wherein R.sub.3 is hydrogen, C.sub.1 -C.sub.3 acyl, C.sub.3 or C.sub.4 alkyl or C.sub.3 or C.sub.4 alkenyl; wherein R.sub.4, R.sub.5 and R.sub.6 represent hydrogen or methyl with the additional proviso that one of R.sub.4, R.sub.5 and R.sub.6 is methyl and the other two of R.sub.4, R.sub.5 and R.sub.6 is hydrogen. Also described are processes for preparing such substituted tricyclodecane derivatives and processes for using the above defined substituted tricyclodecane derivatives for their organoleptic properties and compositions containing said substituted tricyclodecane derivatives including perfumes, perfumed articles, such as solid or liquid anionic, cationic, nonionic and zwitterionic detergents, fabric softeners and cosmetic powders; foodstuffs, chewing gums, toothpastes, medicinal products and chewing tobaccos; smoking tobacco compositions and smoking tobacco flavoring compositions and smoking tobacco articles containing such smoking tobacco compositions.
Abstract:
Described are substituted tricyclodecane derivatives having the generic structure: ##STR1## wherein Y is a moiety having a structure selected from the group consisting of: ##STR2## wherein one of the dashed lines represents a carbon-carbon single bond and the other of the dashed lines represents a carbon-carbon double bond; wherein R.sub.1 and R.sub.2 represent hydrogen or methyl with the proviso that one of R.sub.1 and R.sub.2 is hydrogen and the other of R.sub.1 and R.sub.2 is methyl; wherein R.sub.3 is hydrogen, C.sub.1 -C.sub.3 acyl, C.sub.3 or C.sub.4 alkyl or C.sub.3 or C.sub.4 alkenyl; wherein R.sub.4, R.sub.5 and R.sub.6 represent hydrogen or methyl with the additional proviso that one of R.sub.4, R.sub.5 and R.sub.6 is methyl and the other two of R.sub.4, R.sub.5 and R.sub.6 is hydrogen. Also described are processes for preparing such substituted tricyclodecane derivatives and processes for using the above defined substituted tricyclodecane derivatives for their organoleptic properties and compositions containing said substituted tricyclodecane derivatives including perfumes, perfumed articles, such as solid or liquid anionic, cationic, nonionic and zwitterionic detergents, fabric softeners and cosmetic powders; foodstuffs, chewing gums, toothpastes, medicinal products and chewing tobaccos; smoking tobacco compositions and smoking tobacco flavoring compositions and smoking tobacco articles containing such smoking tobacco compositions.
Abstract:
Compounds useful as fragrance materials having the structure ##STR1## wherein each of R.sub.1, R.sub.2, and R.sub.3 are hydrogen or methyl can be prepared by reacting a halogen-containing cyclohexane, having the structure ##STR2## wherein each of R.sub.1, R.sub.2, and R.sub.3 are hydrogen or methyl and X is a halogen, with a reagent capable of effecting intramolecular cyclization.
Abstract:
It is intended to provide a novel NAD+-independent myo-inositol 2-dehydrogenase which converts myo-inositol into scyllo-inosose in the absence of NAD+; a novel enzyme scyllo-inositol dehydrogenase which stereospecifically reduces scyllo-inosose into scyllo-inositol in the presence of NADH or NADPH; and a novel microorganism which belongs to the genus Acetobacter or Burkholderia and can convert myo-inositol into scyllo-inositol. By using these enzymes or the microorganism, scyllo-inositol is produced. Furthermore, scyllo-inositol is purified by adding boric acid and a metal salt to a liquid mixture containing scyllo-inositol and a neutral saccharide other than scyllo-inositol to form a scyllo-inositol/boric acid complex, separating the complex from the liquid mixture, dissolving the thus separated complex in an acid to give an acidic solution or an acidic suspension and then purifying scyllo-inositol from the acidic solution or the acidic suspension.
Abstract:
A process for the manufacture of compounds of the general formula ##STR1## wherein R.sup.1 signifies hydroxy or an etherified hydroxy group, and of zeaxanthin by converting a compound of the general formula ##STR2## wherein R.sup.1 has the above significance, in an inert organic solvent into the acetylenide and reacting this with methyl vinyl ketone, reducing the alcoholate obtained or the alcohol (obtained after hydrolysis of the alcoholate) of the general formula ##STR3## wherein R.sup.1 has the above significance, and subsequently hydrolyzing to give the compound of formula IV and, if desired, converting the compound of formula IV obtained into zeaxanthin.
Abstract:
Described are substituted tricyclodecane derivatives having the generic structure: ##STR1## wherein Y is a moiety having a structure selected from the group consisting of: ##STR2## wherein one of the dashed lines represents a carbon-carbon single bond and the other of the dashed lines represents a carbon-carbon double bond; wherein R.sub.1 and R.sub.2 represent hydrogen or methyl with the proviso that one of R.sub.1 and R.sub.2 is hydrogen and the other of R.sub.1 and R.sub.2 is methyl; wherein R.sub.3 is hydrogen, C.sub.1 -C.sub.3 acyl, C.sub.3 or C.sub.4 alkyl or C.sub.3 or C.sub.4 alkenyl; wherein R.sub.4, R.sub.5 and R.sub.6 represent hydrogen or methyl with the additional proviso that one of R.sub.4, R.sub.5 and R.sub.6 is methyl and the other two of R.sub.4, R.sub.5 and R.sub.6 is hydrogen. Also described are processes for preparing such substituted tricyclodecane derivatives and processes for using the above defined substituted tricyclodecane derivatives for their organoleptic properties and compositions containing said substituted tricyclodecane derivatives including perfumes, perfumed articles, such as solid or liquid anionic, cationic, nonionic and zwitterionic detergents, fabric softeners and cosmetic powders; foodstuffs, chewing gums, toothpastes, medicinal products and chewing tobaccos; smoking tobacco compositions and smoking tobacco flavoring compositions and smoking tobacco articles containing such smoking tobacco compositions.