Patents by Inventor Madhukar Onkarnath Garg

Madhukar Onkarnath Garg has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 10857532
    Abstract: Oil soluble organic-inorganic fused slurry phase hydroprocessing catalysts for heavy oils and residues are prepared at supercritical conditions. The hydrodemetallization, hydrodesulfurization, asphaltene conversion and hydrocracking activities of a residue having high percentage of metals, sulfur and asphaltene have been tested in an autoclave batch reactor. The different organic compounds are used to modify the solid fused material (catalyst). The effect of the concentration of modifier on the hydroprocessing and hydrocracking reactions has also been investigated.
    Type: Grant
    Filed: March 30, 2016
    Date of Patent: December 8, 2020
    Assignee: COUNCIL OF SCIENTIFIC & INDUSTRIAL RESEARCH
    Inventors: Ravindra Prajapati, Kirtika Kohli, Samir Kumar Maity, Madhukar Onkarnath Garg
  • Patent number: 10745629
    Abstract: Waste plastics are mixed with heavy crude and vacuum residues at temperature within the range from 180-220° C. and the resulting mixture are hydroprocessed to produce lighter products. The hydrodemetallization, asphaltene conversion and hydrocracking activities of the resulting mixture have been tested in an autoclave batch reactor. This process provides a very cheap material and method to upgrade problematic feeds to produce transportation fuels.
    Type: Grant
    Filed: January 3, 2018
    Date of Patent: August 18, 2020
    Assignee: Council of Scientific and Industrial Research
    Inventors: Kiritika Kohli, Ravindra Prajapati, Samir Kumar Maity, Madhukar Onkarnath Garg
  • Patent number: 10308603
    Abstract: This invention relates to an improved process for the selective production of N-methyl pyrrolidone (NMP) from gamma-butyrolactone and monomethyl amine preferably in aqueous form in the presence of a catalyst under comparatively milder conditions than the processes well known in the prior art of literature. The process is economically viable as it provides higher yield and selectivity for NMP which reduces the cost of separation of NMP from GBL. The catalyst shows good recyclability without significant loss in catalytic activity and no frequent regeneration is required.
    Type: Grant
    Filed: May 17, 2016
    Date of Patent: June 4, 2019
    Assignee: Council of Scientific & Industrial Research
    Inventors: Indrajit Kumar Ghosh, Suman Lata Jain, Praveen Kumar Khatri, Siddharth Sankar Ray, Madhukar Onkarnath Garg
  • Patent number: 10190064
    Abstract: An integrated process for simultaneous removal and value addition to sulfur and aromatics compounds of gas oil is provided. Process includes the segregation of refractive sulfur and aromatics compounds of gas oil in heavy fraction of gas oil using distillation processing of heavy fraction of gas oil in continuous solvent extraction zone, processing of lighter fraction of gas oil and raffinate of heavy fraction of gas oil in hydrotreating reaction zone operating under mild conditions of temperature and pressure for producing the gas oil with reduced sulfur and aromatic compounds and contact of extract phase generated during continuous extraction with water in mixer settler for generating the pseudo raffinate which can be used as suitable feed to hydrocracker to generate sulfur lean gas oil.
    Type: Grant
    Filed: March 22, 2016
    Date of Patent: January 29, 2019
    Assignee: Council of Scientific & Industrial Research
    Inventors: Sunil Kumar, Shrikant Madhusudan Nanoti, Madhukar Onkarnath Garg, Bhagat Ram Nautiyal, Prasenjit Ghosh, Pooja Yadav, Nisha
  • Patent number: 10105620
    Abstract: Disclosed is a process for simultaneous production of benzene lean gasoline and recovery of high purity aromatics from narrow boiling light cracked gasoline fractions. The present invention provides a vacuum based two stage extractive distillation process, with pure NMP, for production of benzene lean gasoline (benzene content less than 0.4 Weight %) by recovery of high purity aromatics (purity more than 99 Weight %) from cracked gasoline fractions (boiling in the range of 40-90° C.) comprising benzene in the range of 10-30 weight % and close-boiling non-aromatic hydrocarbons like paraffins, iso-paraffins, olefins, di-olefins (including conjugated di-olefins), and naphthenes in the range of 70-90 weight % along with impurities containing but not limited to oxygenates, metals, chlorides, sulphur compounds, nitrogen compounds and organic peroxides.
    Type: Grant
    Filed: March 30, 2016
    Date of Patent: October 23, 2018
    Assignee: Council of Scientific & Industrial Research
    Inventors: Madhukar Onkarnath Garg, Prasenjit Ghosh, Sunil Kumar, Shrikant Madhusudan Nanoti, Bhagat Ram Nautiyal
  • Publication number: 20180222859
    Abstract: This invention relates to an improved process for the selective production of N-methyl pyrrolidone (NMP) from gamma-butyrolactone and monomethyl amine preferably in aqueous form in the presence of a catalyst under comparatively milder conditions than the processes well known in the prior art of literature. The process is economically viable as it provides higher yield and selectivity for NMP which reduces the cost of separation of NMP from GBL. The catalyst shows good recyclability without significant loss in catalytic activity and no frequent regeneration is required.
    Type: Application
    Filed: May 17, 2016
    Publication date: August 9, 2018
    Inventors: Indrajit Kumar GHOSH, Suman Lata JAIN, Praveen Kumar KHATRI, Siddharth Sankar RAY, Madhukar Onkarnath GARG
  • Publication number: 20180201847
    Abstract: Waste plastics are mixed with heavy crude and vacuum residues at temperature within the range from 180-220° C. and the resulting mixture are hydroprocessed to produce lighter products. The hydrodemetallization, asphaltene conversion and hydrocracking activities of the resulting mixture have been tested in an autoclave batch reactor. This process provides a very cheap material and method to upgrade problematic feeds to produce transportation fuels.
    Type: Application
    Filed: January 3, 2018
    Publication date: July 19, 2018
    Inventors: Kiritika Kohli, Ravindra Prajapati, Samir Kumar Maity, Madhukar Onkarnath Garg
  • Patent number: 9714385
    Abstract: The present invention relates to a process for the conversion of a low molecular weight polymeric byproduct obtained during production of high density polyethylene (HDPE), commonly known as low polymer wax (LPW) or polymer mud, into different products like different grades of paraffin wax, microcrystalline wax, lube and grease base stocks by a process comprising of thermal treatment in an inert atmosphere in the presence of organic peroxides or hydroperoxides and metal oxides. The end product depends upon the suitable selection of various process parameters like type of peroxides or hydroperoxides, metal oxides, temperature and duration of reaction.
    Type: Grant
    Filed: December 18, 2015
    Date of Patent: July 25, 2017
    Assignee: COUNCIL OF SCIENTIFIC & INDUSTRIAL RESEARCH
    Inventors: Hayat Ullah Khan, Manisha Sahai, Sanat Kumar, Ajay Kumar, Gananath Doulat Thakre, Savita Kaul, Shrikant Madhusudan Nanoti, Bal Mukand Shukla, Madhukar Onkarnath Garg, Paulose Anthony Thrissokaran, Ajit Kumar Chaturvedi
  • Patent number: 9468914
    Abstract: The present invention provides an improved process for the preparation of phosphorous containing mesoporous alumina catalyst for selective dehydration of methanol to dimethyl ether. The process provides a single step selective vapor phase dehydration of methanol to produce dimethyl ether over phosphorous containing mesoporous alumina (P/Al2O3) catalyst at a temperature in the range of 150-350° C. The process provides methanol conversion of 45-100% with a selectivity of the DME up to 100%.
    Type: Grant
    Filed: February 27, 2015
    Date of Patent: October 18, 2016
    Assignee: COUNCIL OF SCIENTIFIC & INDUSTRIAL RESEARCH
    Inventors: Ankur Bordoloi, Reena Goyal, Subhasis Das, Rajib Kumar Singha, Chandrashekar Pendem, Laxmi Narayan Sivakumar Konathala, Rajaram Bal, Sandeep Saran, Madhukar Onkarnath Garg
  • Publication number: 20160288014
    Abstract: Disclosed is a process for simultaneous production of benzene lean gasoline and recovery of high purity aromatics from narrow boiling light cracked gasoline fractions. The present invention provides a vacuum based two stage extractive distillation process, with pure NMP, for production of benzene lean gasoline (benzene content less than 0.4 Weight %) by recovery of high purity aromatics (purity more than 99 Weight %) from cracked gasoline fractions (boiling in the range of 40-90° C.) comprising benzene in the range of 10-30 weight % and close-boiling non-aromatic hydrocarbons like paraffins, iso-paraffins, olefins, di-olefins (including conjugated di-olefins), and naphthenes in the range of 70-90 weight % along with impurities containing but not limited to oxygenates, metals, chlorides, sulphur compounds, nitrogen compounds and organic peroxides.
    Type: Application
    Filed: March 30, 2016
    Publication date: October 6, 2016
    Inventors: MADHUKAR ONKARNATH GARG, PRASENJIT GHOSH, SUNIL KUMAR, SHRIKANT MADHUSUDAN NANOTI, BHAGAT RAM NAUTIYAL
  • Publication number: 20160288101
    Abstract: Oil soluble organic-inorganic fused slurry phase hydroprocessing catalysts for heavy oils and residues are prepared at supercritical conditions. The hydrodemetallization, hydrodesulfurization, asphaltene conversion and hydrocracking activities of a residue having high percentage of metals, sulfur and asphaltene have been tested in an autoclave batch reactor. The different organic compounds are used to modify the solid fused material (catalyst). The effect of the concentration of modifier on the hydroprocessing and hydrocracking reactions has also been investigated.
    Type: Application
    Filed: March 30, 2016
    Publication date: October 6, 2016
    Applicant: COUNCIL OF SCIENTIFIC & INDUSTRIAL RESEARCH
    Inventors: Ravindra Prajapati, Kirtika Kohli, Samir Kumar Maity, Madhukar Onkarnath Garg
  • Publication number: 20160281008
    Abstract: An integrated process for simultaneous removal and value addition to sulfur and aromatics compounds of gas oil is disclosed. Refractive sulfur and aromatics compounds of gas oil are segregated in heavy fraction of gas oil using distillation. The refractive sulfur and aromatic compounds rich heavy fraction of gas oil is subjected to continuous solvent extraction zone. The lighter fraction of gas oil and raffinate of heavy fraction of gas oil are subjected to hydrotreating reaction zone operating under mild conditions of temperature and pressure for producing the gas oil with reduced sulfur and aromatic compounds to deep level. The pseudo raffinate from the extract phase of continuous extraction is generated using the water in mixer settler for improving the yield of raffinate by generating the pseudo raffinate which can be used as suitable feed to hydrocracker to generate sulfur free gas oil.
    Type: Application
    Filed: March 22, 2016
    Publication date: September 29, 2016
    Inventors: Sunil KUMAR, Shrikant Madhusudan NANOTI, Madhukar Onkarnath GARG, Bhagat Ram NAUTIYAL, Prasenjit GHOSH, Pooja YADAV, Nisha
  • Publication number: 20160194562
    Abstract: The present invention relates to a process for the conversion of a low molecular weight polymeric byproduct obtained during production of high density polyethylene (HDPE), commonly known as low polymer wax (LPW) or polymer mud, into different products like different grades of paraffin wax, microcrystalline wax, lube and grease base stocks by a process comprising of thermal treatment in an inert atmosphere in the presence of organic peroxides or hydroperoxides and metal oxides. The end product depends upon the suitable selection of various process parameters like type of peroxides or hydroperoxides, metal oxides, temperature and duration of reaction.
    Type: Application
    Filed: December 18, 2015
    Publication date: July 7, 2016
    Inventors: Hayat Ullah Khan, Manisha Sahai, Sanat Kumar, Ajay Kumar, Gananath Doulat Thakre, Savita Kaul, Shrikant Madhusudan Nanoti, Bal Mukand Shukla, Madhukar Onkarnath Garg, Paulose Anthony Thrissokaran, Ajit Kumar Chaturvedi
  • Publication number: 20150336086
    Abstract: The present invention provides an improved process for the preparation of phosphorous containing mesoporous alumina catalyst for selective dehydration of methanol to dimethyl ether. The process provides a single step selective vapour phase dehydration of methanol to produce dimethyl ether over phosphorous containing mesoporous alumina (P/Al2O3) catalyst at a temperature in the range of 150-350° C. The process provides methanol conversion of 45-100% with a selectivity of the DME up to 100%.
    Type: Application
    Filed: February 27, 2015
    Publication date: November 26, 2015
    Inventors: Ankur BORDOLOI, Reena GOYAL, Subhasis DAS, Rajib Kumar SINGHA, Chandrashekar PENDEM, Laxmi Narayan Sivakumar KONATHALA, Rajaram BAL, Sandeep SARAN, Madhukar Onkarnath GARG
  • Patent number: 8772560
    Abstract: The invention relates to a modified zeolite catalyst, useful for the conversion of paraffins, olefins and aromatics in a mixed feedstock such as FCC gasoline that contain high content of olefin, aromatic and n-paraffin into isoparaffins. The invention further relates to the use of such a catalyst, for example but not limited to, in a process for the conversion of paraffins, olefins and aromatics in a mixed feedstock into the product having high amount of branched paraffins with decreased aromatics and olefins, a useful gasoline blend, with negligible production of lighter gases.
    Type: Grant
    Filed: December 28, 2012
    Date of Patent: July 8, 2014
    Assignee: Council of Scientific & Industrial Research
    Inventors: Viswanadham Nagabhatla, Raviraj Kamble, Amit Sharma, Jagdish Kumar, Bhagwan Singh Negi, Murali Dhar Gudimella, Madhukar Onkarnath Garg
  • Patent number: 8722952
    Abstract: Disclosed is a process for production of benzene lean gasoline by recovery of high purity benzene from a narrow boiling benzene concentrated unprocessed cracked gasoline fraction. The process involves subjecting the feed material to an extractive distillation (ED) operation using an aromatic selective solvent in combination with a co-solvent.
    Type: Grant
    Filed: August 9, 2013
    Date of Patent: May 13, 2014
    Assignees: Council of Scientific & Industrial Research, Reliance Industries Limited
    Inventors: Madhukar Onkarnath Garg, Shrikant Madhusudan Nanoti, Ram Bhagat Nautiyal, Kumar Sunil, Prasenjit Ghosh, Nisha, Pooja Yadav, Kumar Jagdish, Manish Tiwari, Meka Raja Rao, Nagarathinam Shengaga Murthy
  • Publication number: 20140042059
    Abstract: Disclosed is a process for production of benzene lean gasoline by recovery of high purity benzene from a narrow boiling benzene concentrated unprocessed cracked gasoline fraction. The process involves subjecting the feed material to an extractive distillation (ED) operation using an aromatic selective solvent in combination with a co-solvent.
    Type: Application
    Filed: August 9, 2013
    Publication date: February 13, 2014
    Inventors: Madhukar Onkarnath Garg, Shrikant Madhusudan Nanoti, Ram Bhagat Nautiyal, Kumar Sunil, Prasenjit Ghosh, Nisha, Pooja Yadav, Kumar Jagdish, Manish Tiwari, Meka Raja Rao, Nagarathinam Shengaga Murthy
  • Patent number: 8562821
    Abstract: Described herein is a process for the removal of sulfones by mesoporous silica adsorbents having narrow pore size distribution which could be controlled to specification for the selective removal of sulfones from oxidized hydrocarbon fuels wherein the sulfones were present due to oxidative conversion of organo-sulfur compounds by a suitable oxidizing solution. The mesoporous adsorbents showed typically 2-18 times higher equilibrium loading capacity for sulfones in comparison to the commercially available adsorbents.
    Type: Grant
    Filed: December 9, 2009
    Date of Patent: October 22, 2013
    Assignees: Council of Scientific & Industrial Research Center for High Technology, Ministry of Petroleum & Natural Gas
    Inventors: Anshu Nanoti, Soumen Dasgupta, Amar Nath Goswami, Bhagat Ram Nautiyal, Tumula Venkateshwar Rao, Bir Sain, Yogendra Kumar Sharma, Shrikant Madhusudan Nanoti, Madhukar Onkarnath Garg, Pushpa Gupta
  • Patent number: 8349754
    Abstract: The invention relates to a modified zeolite catalyst, useful for the conversion of paraffins, olefins and aromatics in a mixed feedstock such as FCC gasoline that contain high content of olefin, aromatic and n-paraffin into isoparaffins. The invention further relates to the use of such a catalyst, for example but not limited to, in a process for the conversion of paraffins, olefins and aromatics in a mixed feedstock into the product having high amount of branched paraffins with decreased aromatics and olefins, a useful gasoline blend, with negligible production of lighter gases.
    Type: Grant
    Filed: March 6, 2009
    Date of Patent: January 8, 2013
    Assignee: Council of Scientific & Industrial Research
    Inventors: Viswanadham Nagabhatla, Raviraj Kamble, Amit Sharma, Jagdish Kumar, Bhagwan Singh Negi, Murali Dhar Gudimella, Madhukar Onkarnath Garg
  • Publication number: 20110084002
    Abstract: Described herein is a process for the removal of sulfones by mesoporous silica adsorbents having narrow pore size distribution which could be controlled to specification for the selective removal of sulfones from oxidised hydrocarbon fuels wherein the sulfones were present due to oxidative conversion of organo-sulfur compounds by a suitable oxidizing solution. The mesoporous adsorbents showed typically 2-18 times higher equilibrium loading capacity for sulfones in comparison to the commercially available adsorbents.
    Type: Application
    Filed: December 9, 2009
    Publication date: April 14, 2011
    Inventors: ANSHU NANOTI, SOUMEN DASGUPTA, AMAR NATH GOSWAMI, BHAGAT RAM NAUTIYAL, TUMULA VENKATESHWAR RAO, BIR SAIN, YOGENDRA KUMAR SHARMA, SHRIKANT MADHUSUDAN NANOTI, MADHUKAR ONKARNATH GARG, PUSHPA GUPTA