Abstract:
In a method and apparatus for identifying an embossed character, light of one color is directed in one direction across the embossed character to illuminate certain character parts and light of another color is directed in another direction across the embossed character to illuminate other character parts. Image data for the two colors are captured and are subjected to separate image processing to detect edges highlighted by the directed light. The processed images are combined and supplemented with OCR analysis before being compared with predicted characters. Based on the comparison, a determination is made as to the probable identity of the character.
Abstract:
The present disclosure relates to methods for the production of the isomerically pure or isomerically enriched cis-clomiphene and salts thereof.
Abstract:
The invention relates to a process for producing 2,6-diisopropyl phenol. The process comprises a step of decarboxylation of 4-hydroxy-3,5-diisopropylbenzoic acid or a salt thereof in an aqueous medium under pressure.
Abstract:
A storage apparatus has an rack of storage bins, a pick head drive unit to drive a pick head to an access location for a selected bin, and a platform drive unit to drive a platform forming part of the pick head into and out of the rack to pick or load packages at a selected bin of the rack. The platform has a cam formation which, in the course of entry of the platform into the rack acting to lift a desired package until the platform reaches a clearance position at which the cam formation clears the package. Subsequent withdrawal of the platform from the rack acts to drag the desired package from the selected bin.
Abstract:
The invention relates to an enzymatic acylation method including at least the following steps of: contacting at least one compound having at least one function selected from among the amine, alcohol, or thiol functions, at least one microorganism having an acyl transfer activity and/or an acyl transfer enzyme, and at least one acylphosphonate donor of formula (I), where: R is an alkyl, alkene, uikyne, aryl, or aralkyl radical, or is —ORa, —SRa, —NRaRb, where Ra and Rb are identical or different and are H, an alkyl, alkene, alkyne, aryl or aralkyl radical, the alkyl, alkene, alkyne, aryl or aralkyl radicals being optionally substituted; X is O or S; Y and Z, which are identical or different, are —OR1, —OR2, —SR1, —SR2, —NR′1R″1, —NR′2R″2; R1, R2, R′1, R′2, R″1 and R″2, which are identical or different, are an alkyl, alkene, alkyne, aryl or aralkyl radical, said alkyl, alkene, alkyne, aryl or aralkyl radicals being optionally substituted; and recovering the compound including at least one acyl function, said function being selected from among the amine, alcohol, or thiol functions.
Abstract translation:本发明涉及酶促酰化方法,其包括至少以下步骤:使至少一种具有至少一种选自胺,醇或硫醇官能团的官能团的化合物,至少一种具有酰基转移活性的微生物和/或 酰基转移酶和至少一种式(I)的酰基膦酸盐供体,其中:R是烷基,烯烃,乙炔基,芳基或芳烷基,或是-OR a,-SR a,-NR a R b,其中R a和R b是 烷基,烯烃,炔烃,芳基或芳烷基,烷基,烯烃,炔烃,芳基或芳烷基任选被取代; X是O或S; Y和Z相同或不同,为-OR1,-OR2,-SR1,-SR2,-NR'1R'1,-NR'2R'2; R1,R2,R'1,R'2,R'1和R'2相同或不同,是烷基,烯烃,炔,芳基或芳烷基,所述烷基,烯烃,炔烃,芳基或 芳烷基任选被取代; 并回收包含至少一个酰基官能团的化合物,所述官能团选自胺,醇或巯基官能团。
Abstract:
The present disclosure relates to methods for the production of the isomerically pure or isomerically enriched cis-clomiphene and salts thereof.
Abstract:
A rack assembly of storage bins has a back wall, series of vertical slots in the back wall, partition members having tongues for fixing the partition member to the back wall. Extending between the partition members are bin floors, the edges of the floor members located in slots in the partition members. The spacing of the slots in the back wall and of the slots in the partition members is selected to permit a range of spacings of horizontally adjacent partition members and a range of spacings of vertically adjacent floor members. By suitable selection of the spacings, a large variety of bin sizes can be obtained.
Abstract:
A rack assembly of storage bins has a back wall, series of vertical slots in the back wall, partition members having tongues for fixing the partition member to the back wall. Extending between the partition members are bin floors, the edges of the floor members located in slots in the partition members. The spacing of the slots in the back wall and of the slots in the partition members is selected to permit a range of spacings of horizontally adjacent partition members and a range of spacings of vertically adjacent floor members. By suitable selection of the spacings, a large variety of bin sizes can be obtained.
Abstract:
The invention relates to an enzymatic acylation method including at least the following steps of: contacting at least one compound having at least one function selected from among the amine, alcohol, or thiol functions, at least one microorganism having an acyl transfer activity and/or an acyl transfer enzyme, and at least one acylphosphonate donor of formula (I), where: R is an alkyl, alkene, alkyne, aryl, or aralkyl radical, or is —ORa, —SRa, —NRaRb, where Ra and Rb are identical or different and are H, an alkyl, alkene, alkyne, aryl or aralkyl radical, the alkyl, alkene, alkyne, aryl or aralkyl radicals being optionally substituted; X is O or S; Y and Z, which are identical or different, are —OR1, —OR2, —SR1, —SR2, —NR′1R″1, —NR′2R″2; R1, R2, R′1, R′2, R″1 and R″2, which are identical or different, are an alkyl, alkene, alkyne, aryl or aralkyl radical, said alkyl, alkene, alkyne, aryl or aralkyl radicals being optionally substituted; and recovering the compound including at least one acyl function, said function being selected from among the amine, alcohol, or thiol functions.
Abstract translation:本发明涉及酶促酰化方法,其包括至少以下步骤:使至少一种具有至少一种选自胺,醇或硫醇官能团的官能团的化合物,至少一种具有酰基转移活性的微生物和/或 酰基转移酶和至少一种式(I)的酰基膦酸盐供体,其中:R是烷基,烯烃,炔烃,芳基或芳烷基,或是-OR a,-SR a,-NR a R b,其中R a和R b是 烷基,烯烃,炔烃,芳基或芳烷基,烷基,烯烃,炔烃,芳基或芳烷基任选被取代; X是O或S; Y和Z相同或不同,为-OR1,-OR2,-SR1,-SR2,-NR'1R“1,-NR'2R”2; 所述烷基,烯烃,炔烃,芳基或芳烷基,R 1,R 2,R'1,R'2,R“1和R”2是相同或不同的,所述烷基,烯烃,炔,芳基或芳烷基 任选取代; 并回收包含至少一个酰基官能团的化合物,所述官能团选自胺,醇或巯基官能团。
Abstract:
A vending machine, In a method and apparatus for handling a package in an automated dispensary, a package is positioned in an inspection station of the dispensary. Images are captured of the package and are read to identify data on labels or on the package itself. The data is encoded as source data in an identifying label which is applied to the package and is used subsequently in handling the package for dispensing and other inventory management procedures.