Patent classifications
C07C29/147
SYNTHESIS OF PHEROMONE DERIVATIVES VIA Z-SELECTIVE OLEFIN METATHESIS
Disclosed herein are methods for synthesizing fatty olefin metathesis products of high Z-isomeric purity from olefin feedstocks of low Z-isomeric purity. The methods include contacting a contacting an olefin metathesis reaction partner, such as acylated alkenol or an alkenal acetal, with an internal olefin in the presence of a Z-selective metathesis catalyst to form the fatty olefin metathesis product. In various embodiments, the fatty olefin metathesis products are insect pheromones. Pheromone compositions and methods of using them are also described.
SYNTHESIS OF PHEROMONE DERIVATIVES VIA Z-SELECTIVE OLEFIN METATHESIS
Disclosed herein are methods for synthesizing fatty olefin metathesis products of high Z-isomeric purity from olefin feedstocks of low Z-isomeric purity. The methods include contacting a contacting an olefin metathesis reaction partner, such as acylated alkenol or an alkenal acetal, with an internal olefin in the presence of a Z-selective metathesis catalyst to form the fatty olefin metathesis product. In various embodiments, the fatty olefin metathesis products are insect pheromones. Pheromone compositions and methods of using them are also described.
HARVESTER DECARBOXYLATOR WITH TERPENE EXTRACTION SYSTEM
An arrangement of a mobile harvester decarboxylator with a terpene collector includes a heated enclosure for use in the field with terpene collectors coupled to ducted fume hoods of the heated enclosure. The terpene collector may include a chilled coil that condenses and separates oil-based terpenes from water-based terpenes via a centrifugal effect and/or immiscibility.
HARVESTER DECARBOXYLATOR WITH TERPENE EXTRACTION SYSTEM
An arrangement of a mobile harvester decarboxylator with a terpene collector includes a heated enclosure for use in the field with terpene collectors coupled to ducted fume hoods of the heated enclosure. The terpene collector may include a chilled coil that condenses and separates oil-based terpenes from water-based terpenes via a centrifugal effect and/or immiscibility.
ENHANCED SEPARATION OF SOLVOLYSIS COPRODUCT STREAMS FOR CHEMICAL RECYCLING
Chemical recycling facilities for processing mixed waste plastic are provided herein. Such facilities have the capability of processing mixed plastic waste streams and utilize a variety of recycling facilities, such as, for example, solvolysis facility, a pyrolysis facility, a cracker facility, a partial oxidation gasification facility, an energy recovery facility, and a solidification facility. Streams from one or more of these individual facilities may be used as feed to one or more of the other facilities, thereby maximizing recovery of valuable chemical components and minimizing unusable waste streams.
ENHANCED SEPARATION OF SOLVOLYSIS COPRODUCT STREAMS FOR CHEMICAL RECYCLING
Chemical recycling facilities for processing mixed waste plastic are provided herein. Such facilities have the capability of processing mixed plastic waste streams and utilize a variety of recycling facilities, such as, for example, solvolysis facility, a pyrolysis facility, a cracker facility, a partial oxidation gasification facility, an energy recovery facility, and a solidification facility. Streams from one or more of these individual facilities may be used as feed to one or more of the other facilities, thereby maximizing recovery of valuable chemical components and minimizing unusable waste streams.
ALPHA-HALOTETRAMETHYCYCLOHEXANONE, A METHOD FOR THE PREPARATION THEREOF, AND A METHOD FOR THE PREPARATION OF A (2,3,4,4-TETRAMETHYLCYCLOPENTYL)METHY CARBOXYLATE COMPOUND
The present invention provides a method for the preparation of a sex pheromone of Obsucure Mealy bug (OMB), (plus/minus) (2,3,4,4-tetramethycyclopentyl)methyl acetate. The method comprises a step of subjecting alpha-halotetramethylcyclohexanone to a Favorskii rearrangement to obtain a 2,3,4,4-tetramethylcyclopentane compound (2), a step of subjecting said compound (2) to reduction to obtain (2,3,4,4-tetramethylcyclopentyl)methanol (3) and a step of subjection said compound (3) to acylation to obtain a (2,3,4,4-tetramethylcyclopentyl)methyl carboxylate compound (4).
ALPHA-HALOTETRAMETHYCYCLOHEXANONE, A METHOD FOR THE PREPARATION THEREOF, AND A METHOD FOR THE PREPARATION OF A (2,3,4,4-TETRAMETHYLCYCLOPENTYL)METHY CARBOXYLATE COMPOUND
The present invention provides a method for the preparation of a sex pheromone of Obsucure Mealy bug (OMB), (plus/minus) (2,3,4,4-tetramethycyclopentyl)methyl acetate. The method comprises a step of subjecting alpha-halotetramethylcyclohexanone to a Favorskii rearrangement to obtain a 2,3,4,4-tetramethylcyclopentane compound (2), a step of subjecting said compound (2) to reduction to obtain (2,3,4,4-tetramethylcyclopentyl)methanol (3) and a step of subjection said compound (3) to acylation to obtain a (2,3,4,4-tetramethylcyclopentyl)methyl carboxylate compound (4).
ALPHA-HALOTETRAMETHYCYCLOHEXANONE, A METHOD FOR THE PREPARATION THEREOF, AND A METHOD FOR THE PREPARATION OF A (2,3,4,4-TETRAMETHYLCYCLOPENTYL)METHY CARBOXYLATE COMPOUND
The present invention provides a method for the preparation of a sex pheromone of Obsucure Mealy bug (OMB), (plus/minus) (2,3,4,4-tetramethycyclopentyl)methyl acetate. The method comprises a step of subjecting alpha-halotetramethylcyclohexanone to a Favorskii rearrangement to obtain a 2,3,4,4-tetramethylcyclopentane compound (2), a step of subjecting said compound (2) to reduction to obtain (2,3,4,4-tetramethylcyclopentyl)methanol (3) and a step of subjection said compound (3) to acylation to obtain a (2,3,4,4-tetramethylcyclopentyl)methyl carboxylate compound (4).
Methods and compounds useful in the synthesis of orexin-2 receptor antagonists
The present disclosure provides compounds and methods that are useful for the preparation of compounds useful as orexin-2 receptor antagonists.