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Analysis

1.WO/2019/239425IMPROVED PROCESS FOR PREPARATION OF 2,3,4,6-TETRA-O-BENZYL-D-GALACTOSE
WO 19.12.2019
Int.Class C07H 1/00
C CHEMISTRY; METALLURGY
07
ORGANIC CHEMISTRY
H
SUGARS; DERIVATIVES THEREOF; NUCLEOSIDES; NUCLEOTIDES; NUCLEIC ACIDS
1
Processes for the preparation of sugar derivatives
Appl.No PCT/IN2019/050010 Applicant AARTI INDUSTRIES LIMITED Inventor DESAI, Parimal Hasmukhlal
Provided herein is an improved process for the preparation of benzylated derivative of D-galactose, particularly 2,3,4,6-tetra-O-benzyl-D-galactose that gives higher yield and better purity being cost effective with reduced impurities.
2.WO/2019/111279POLLUTION CONTROL DEVICE
WO 13.06.2019
Int.Class B01D 29/00
B PERFORMING OPERATIONS; TRANSPORTING
01
PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
D
SEPARATION
29
Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/-B01D27/170;   Filtering elements therefor
Appl.No PCT/IN2018/050813 Applicant CHAPHEKAR, Amol Inventor CHAPHEKAR, Amol
The present invention provides a pollution control device (100). The device is used for filtering an ambient air. The device includes an inlet jacket (110) having a front portion and a rear portion. The inlet jacket (110) having a venturi shaped inner profile. The front portion is configured to receive ambient air therethrough, the rear portion having a perforated jacket (120) attached thereto. The perforated jacket (120) is configured to discharge the filtered air. At least one replaceable filter cartridge (130) having a plurality of mesh and a scrubbing unit is positioned in the inlet jacket (110) along the rear portion thereof. The device (100) may be equipped with a plurality of fan / and motor for air suction in the inlet jacket (110).
3.WO/2019/106691PROCESS FOR PREPARATION OF ENZALUTAMIDE USING NOVEL INTERMEDIATE
WO 06.06.2019
Int.Class C07D 233/86
C CHEMISTRY; METALLURGY
07
ORGANIC CHEMISTRY
D
HETEROCYCLIC COMPOUNDS
233
Heterocyclic compounds containing 1,3-diazole or hydrogenated 1,3-diazole rings, not condensed with other rings
54
having two double bonds between ring members or between ring members and non-ring members
66
with hetero atoms or with carbon atoms having three bonds to hetero atoms with at the most one bond to halogen, e.g. ester or nitrile radicals, directly attached to ring carbon atoms
86
Oxygen and sulfur atoms, e.g. thiohydantoin
Appl.No PCT/IN2018/050789 Applicant AARTI INDUSTRIES LIMITED Inventor DESAI, Parimal Hasmukhlal
Process for preparation of Enzalutamide using novel intermediate Provided herein is a process for the preparation of a novel [4-cyano-3- (trifluoromethyl)phenyl]carbamodithioic acid and its use in preparation of Enzalutamide being cost effective with higher yield, higher HPLC purity with reduced impurities.
4.WO/2019/049171A PROCESS AND A SYSTEM FOR MANUFACTURING OF TILES/BLOCKS FROM WASTE PLASTICS
WO 14.03.2019
Int.Class C08J 11/06
C CHEMISTRY; METALLURGY
08
ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
J
WORKING-UP; GENERAL PROCESSES OF COMPOUNDING; AFTER-TREATMENT NOT COVERED BY SUBCLASSES C08B, C08C, C08F, C08G or C08H142
11
Recovery or working-up of waste materials
04
of polymers
06
without chemical reactions
Appl.No PCT/IN2018/050574 Applicant HINDURA INFRASTRUCTURE PVT. LTD. Inventor VASUDEVAN, R.
The present invention provides a system and process for manufacturing of tiles/blocks from waste plastics comprises. The system (100) includes a plurality of conveyor lines for processing of raw materials. The second raw material and the preheated first raw material are mixed and heated with each other and other additives and fillers in a mixing unit (138) at a predefined temperature thereby obtaining a hot mix stock. The hot mix stock is transferred to a molding machine (142) through a hot stock chute (140) using the vibrating unit. The hot mix stock is molded in the molding machine under a predefined hydraulic pressure thereby forming blocks/tiles (146).
5.WO/2019/035137A SYSTEM FOR GEARED BICYCLE WITH REGENERATIVE BRAKING AND REVERSE PEDAL ENERGY STORAGE
WO 21.02.2019
Int.Class B62L 5/00
B PERFORMING OPERATIONS; TRANSPORTING
62
LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
L
BRAKES SPECIALLY ADAPTED FOR CYCLES
5
Brakes, or actuating mechanisms therefor, controlled by back-pedalling
Appl.No PCT/IN2017/050465 Applicant ATHALYE, Ravi G. Inventor ATHALYE, Ravi G.
Disclosed is a system for geared bicycle with regenerative braking and reverse pedal energy storage that is integrated into a conventional bicycle that enables storing pedaling energy when the bicycle is pedaled in the reverse freewheeling model and also separately when a brake lever is operated causing the chain to reverse rotation from energy derived from the momentum of the bicycle. The energy being stored is releasable in the form of a torque coherent with pedaling effort during the forward movement of the bicycle by providing a power boost or acceleration. The conventional friction brake in addition to the energy storage brake is used during energy release for regulating the acceleration of the bicycle if required.
6.WO/2018/167805INFLATABLE COLLAPSIBLE CELLS BASED SOLAR POWER GENERATION AND HEAT CAPTURING SYSTEM
WO 20.09.2018
Int.Class F24S 20/80
[IPC code unknown for F24S 20/80]
Appl.No PCT/IN2018/050152 Applicant KANE, Laxman Shridhar Inventor KANE, Laxman Shridhar
The present invention discloses an electricity generation system that includes a plurality of inflatable collapsible cells (ICC) (108) that are interconnected, integrated and controlled based on sensor (111) data for optimized uninterrupted power generation by using advanced automation techniques. The ICC (108) is inflated by filling a compressed fluid through a compressor (102) upto a predetermined volume limit. The ICC (108) is thereafter exposed to sun radiation that results into expansion of the fluid inside the ICC (108). The hot fluid is released at a predetermined temperature and pressure on a turbine (112) positioned in a close proximity thereof thereby rotating the turbine (112) that generates electricity by using a generator (114). The utilized hot fluid is passed through an exhaust fluid recovery unit (116) that is adapted to absorb excess heat of the utilized fluid and utilize the heat for suitable applications.
7.WO/2018/163212A PROCESS FOR THE PREPARATION OF UMECLIDINIUM BROMIDE AND INTERMEDIATES THEREOF
WO 13.09.2018
Int.Class C07D 453/02
C CHEMISTRY; METALLURGY
07
ORGANIC CHEMISTRY
D
HETEROCYCLIC COMPOUNDS
453
Heterocyclic compounds containing quinuclidine or iso-quinuclidine ring systems, e.g. quinine alkaloids
02
containing not further condensed quinuclidine ring systems
Appl.No PCT/IN2018/050130 Applicant GBR LABORATORIES PVT. LTD Inventor REDDY, G. Nithun
Provided herein is a process for the preparation of umeclidinium bromide and intermediates thereof, wherein pure form of umeclidinium bromide is achieved by a two step process under mild conditions.
8.WO/2018/154596PROCESS FOR SYNTHESIS OF TIOTROPIUM BROMIDE MONOHYDRATE
WO 30.08.2018
Int.Class C07D 451/10
C CHEMISTRY; METALLURGY
07
ORGANIC CHEMISTRY
D
HETEROCYCLIC COMPOUNDS
451
Heterocyclic compounds containing 8-azabicyclo [3.2.1] octane, 9-azabicyclo [3.3.1] nonane, or 3-oxa-9-azatricyclo [3.3.1.02,4] nonane ring systems, e.g. tropane or granatane alkaloids, scopolamine; Cyclic acetals thereof
02
containing not further condensed 8-azabicyclo [3.2.1] octane or 3-oxa-9-azatricyclo [3.3.1.02,4] nonane ring systems, e.g. tropane; Cyclic acetals thereof
04
with hetero atoms directly attached in position 3 of the 8-azabicyclo [3.2.1] octane or in position 7 of the 3-oxa-9-azatricyclo [3.3.1.02,4] nonane ring system
06
Oxygen atoms
10
acylated by aliphatic or araliphatic carboxylic acids, e.g. atropine, scopolamine
Appl.No PCT/IN2018/050082 Applicant GBR LABORATORIES PVT. LTD. Inventor REDDY, G. Nithun
Provided herein is a process for synthesis of tiotropium bromide wherein the coupling of scopine with 2, 2-dithienyl glycolate is achieved by a two step process under mild conditions.
9.WO/2018/154597PROCESS FOR SYNTHESIS OF GLYCOPYRRONIUM BROMIDE
WO 30.08.2018
Int.Class C07D 207/12
C CHEMISTRY; METALLURGY
07
ORGANIC CHEMISTRY
D
HETEROCYCLIC COMPOUNDS
207
Heterocyclic compounds containing five-membered rings not condensed with other rings, with one nitrogen atom as the only ring hetero atom
02
with only hydrogen or carbon atoms directly attached to the ring nitrogen atom
04
having no double bonds between ring members or between ring members and non-ring members
10
with hetero atoms or with carbon atoms having three bonds to hetero atoms with at the most one bond to halogen, e.g. ester or nitrile radicals, directly attached to ring carbon atoms
12
Oxygen or sulfur atoms
Appl.No PCT/IN2018/050083 Applicant GBR LABORATORIES PVT. LTD. Inventor REDDY, G. Nithun
Provided herein are processes for preparation of glycopyrronium bromide comprising reaction of N-methylpyrrolidin-3-ol with compounds of Formula I or Formula II followed by additional steps.
10.WO/2018/150437A PROCESS FOR PREPARING ACLIDINIUM BROMIDE AND INTERMEDIATES THEREOF
WO 23.08.2018
Int.Class C07D 453/02
C CHEMISTRY; METALLURGY
07
ORGANIC CHEMISTRY
D
HETEROCYCLIC COMPOUNDS
453
Heterocyclic compounds containing quinuclidine or iso-quinuclidine ring systems, e.g. quinine alkaloids
02
containing not further condensed quinuclidine ring systems
Appl.No PCT/IN2018/050073 Applicant GBR LABORATORIES PVT. LTD Inventor REDDY, G. Nithun
Provided herein is a process for synthesis of aclidinium bromide and intermediates thereof, wherein the process for the preparation of aclidinium bromide increases the % yield of aclidinium bromide by about 70% to 90%.