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R. Pandya, Mane, R., and Rode, C. V., Cascade dehydrative amination of glycerol to oxazoline (vol 8, pg 2954, 2018), Catalysis Science & Technology, vol. 10, no. 19, p. 6740, 2020.
Goudappagouda, Wakchaure, V. Chandrakan, Ranjeesh, K. Chandran, Abhai, C. Antony Ral, and Babu, S. Santhosh, Cascade energy transfer and tunable emission from nanosheet hybrids: locating acceptor molecules through chiral doping, Chemical Communications, vol. 53, no. 52, pp. 7072-7075, 2017.
Goudappagouda, Wakchaure, V. Chandrakan, Ranjeesh, K. Chandran, Abhai, C. Antony Ral, and Babu, S. Santhosh, Cascade energy transfer and tunable emission from nanosheet hybrids: locating acceptor molecules through chiral doping (vol 53, pg 7072, 2017), Chemical Communications, vol. 55, no. 45, pp. 6462-6462, 2019.
S. Shinde and Rode, C., Cascade reductive etherification of bioderived aldehydes over Zr-based catalysts, ChemSusChem, vol. 10, no. 20, pp. 4090-4101, 2017.
S. B. Kamble and Rode, C. V., Cascade synthesis of 2-cyanoacrylamides through deacetalization and/or knoevenagelcondensation followed by selective monohydration of acetals and aldehydes over solid acidferrites, Chemcatchem, vol. 8, no. 16, pp. 2678-2687, 2016.
S. Shinde, Deval, K., Chikate, R., and Rode, C., Cascade synthesis of 5-(Acetoxymethyl) furfural from carbohydrates over Sn-mont catalyst, ChemistrySelect, vol. 3, no. 30, pp. 8770-8778, 2018.
S. S. Sakate, Shinde, S. H., Kasar, G. B., Chikate, R. C., and Rode, C. V., Cascade synthesis of dihydrobenzofuran via claisen rearrangement of allyl aryl ethers using FeCl 3 /MCM-41 catalyst, Journal of Saudi Chemical Society, vol. 22, no. 4, pp. 396-404, 2018.
R. Godbole, Gaur, A., Nayar, P., Kiruthiga, K., D'Costa, P., Manchanda, R., Khilari, A., Shanmugam, D., Muglikar, K. D., and Kundu, K., Case report: a fatal case of babesiosis in a splenectomized male patient from Western India, American Journal of Tropical Medicine and Hygiene, vol. 106, no. 5, pp. 1421-1425, 2022.
V. Chavan, Watve, A. V., Rane, N. S., and Krishnan, S., Cataloguing Indian biota - Response, Current Science, vol. 88, no. 4, pp. 532-533, 2005.
V. V. Ranade and Joshi, S. S., Catalysis and catalytic processes, in Industrial catalytic processes for fine and specialty chemicals, Elsevier Inc., 2016, pp. 1-14.
S. S. Joshi, Bhatnagar, A., and Ranade, V. V., Catalysis for fine and specialty chemicals, in Industrial catalytic processes for fine and specialty chemicals, Elsevier Inc., 2016, pp. 317-392.
C. V. Satyanarayana, Srikant, D., and Gurav, H. R., Catalyst deactivation and regeneration, in Industrial catalytic processes for fine and specialty chemicals, Elsevier Inc., 2016, pp. 187-219.
N. Mohanta, Samal, P. Paramita, Pandey, A. M., Mondal, S., Krishnamurty, S., and Gnanaprakasam, B., Catalyst-assisted selective vinylation and methylallylation of a quaternary carbon center using tert-butyl acetate, Journal of Organic Chemistry, vol. 88, no. 14, pp. 9686-9703, 2023.
A. H. Bansode, Shaikh, A. C., Kavthe, R. D., Thorat, S., Gonnade, R. G., and Patil, N. T., Catalyst-dependent selectivity in the relay catalytic branching cascade, Chemistry-A European Journal, vol. 21, no. 6, pp. 2319-2323, 2015.
T. M. Potewar, Ingale, S. A., and Srinivasan, K. V., Catalyst-free efficient synthesis of 2-aminothiazoles in water at ambient temperature, Tetrahedron, vol. 64, no. 22, pp. 5019-5022, 2008.
R. V. Kupwade, Khot, S. S., Lad, U. P., Desai, U. V., and Wadgaonkar, P. P., Catalyst-free oxidation of sulfides to sulfoxides and diethylamine catalyzed oxidation of sulfides to sulfones using Oxone as an oxidant (vol 43, pg 6875, 2017), Research on Chemical Intermediates, vol. 44, no. 2, p. 1437, 2018.
R. V. Kupwade, Khot, S. S., Lad, U. P., Desai, U. V., and Wadgaonkar, P. P., Catalyst-free oxidation of sulfides to sulfoxides and diethylamine catalyzed oxidation of sulfides to sulfones using oxone as an oxidant, Research on Chemical Intermediates, vol. 43, no. 12, pp. 6875-6888, 2017.
A. Ghosh, Mane, M. V., Rode, H. B., Patil, S. A., Sridhar, B., and Dateer, R. B., Catalyst-free regioselective [3+2] cycloadditions of alpha,beta-unsaturated N-arylnitrones with alkenes to access functionalized isoxazolidines: a DFT study, Chemistry-An Asian Journal, vol. 15, no. 6, pp. 899-903, 2020.
A. M. Kalekar, Sharma, K. Kumar K., Luwang, M. Niraj, and Sharma, G. K., Catalytic activity of bare and porous palladium nanostructures in the reduction of 4-nitrophenol, RSC Advances, vol. 6, no. 14, pp. 11911-11920, 2016.
S. S. Bhoware, Kamble, K. R., and Singh, A. P., Catalytic activity of cobalt containing MCM-41 and HMS in liquid phase oxidation of diphenylmethane, Catalysis Letters, vol. 133, no. 1-2, pp. 106-111, 2009.
R. M. Dange, Niphadkar, P. S., Bokade, V. V., and Nandanwar, S. U., Catalytic activity of CuFe2O4 spinel oxide for liquid-phase oxidation of cinnamyl alcohol, ChemistrySelect, vol. 7, no. 8, p. e202104441, 2022.
M. Zhu, Srinivas, D., Bhogeswararao, S., Ratnasamy, P., and Carreon, M. A., Catalytic activity of ZIF-8 in the synthesis of styrene carbonate from CO2 and styrene oxide, Catalysis Communications, vol. 32, pp. 36-40, 2013.
A. P. Singh, Torita, N., Shylesh, S., Iwasa, N., and Arai, M., Catalytic aerobic oxidation of cyclohexane and ethyl benzene over chromium-containing mesoporous organosilicas, Catalysis Letters, vol. 132, no. 3-4, pp. 492-499, 2009.
K. N. Tayade, Mane, M. V., Sen, S., Murthy, C. N., Tembe, G. L., S. Pillai, M., Vanka, K., and Mukherjee, S., Catalytic and DFT study of selective ethylene oligomerization by nickel(II) oxime-based complexes, Journal of Molecular Catalysis A-Chemical, vol. 366, pp. 238-246, 2013.
D. Patel, Thakur, S. S., Shinde, S. S., and Kumar, P., Catalytic and efficient synthesis of optically active terminal epoxides and 1,2-diols using a new lanthanum triflate assisted C1-symmetric bimetallic chiral salen cobalt complex, Letters in Organic Chemistry, vol. 15 , no. 11, pp. 960 - 966, 2018.
A. S. Burange and Gopinath, C. S., Catalytic applications of hydrotalcite and related materials in multi -component reactions: concepts, challenges and future scope, Sustainable Chemistry and Pharmacy, vol. 22, p. 100458, 2021.
S. H. Deshpande, Kelkar, A. A., Gonnade, R. G., Shingote, S. K., and Chaudhari, R. V., Catalytic asymmetric transfer hydrogenation of ketones using [Ru(p-cymene)Cl-2](2) with chiral amino alcohol ligands, Catalysis Letters, vol. 138, no. 3-4, pp. 231-238, 2010.
P. Sudarsanam, Catalytic biomass valorization - status and perspectives, Biomass Conversion and Biorefinery, vol. 10, no. 4, p. 793, 2020.
A. H. Bansode, Chimala, P., and Patil, N. T., Catalytic branching cascades in diversity oriented synthesis, ChemCatChem, vol. 9, no. 1, pp. 30-40, 2017.
P. Dhepe, Tomishige, K., and Wu, K. C. - W., Catalytic conversion of biomass, Chemcatchem, vol. 9, no. 14, pp. 2613-2614, 2017.
S. Bhogeswararao and Srinivas, D., Catalytic conversion of furfural to industrial chemicals over supported Pt and Pd catalysts, Journal of Catalysis, vol. 327, pp. 65-77, 2015.
P. A. Chithra and Darbha, S., Catalytic conversion of HMF into ethyl levulinate - a biofuel over hierarchical zeolites, Catalysis Communications, vol. 140, p. 105998, 2020.
S. Sreekantan, Kirali, A. Arunima Ba, and Marimuthu, B., Catalytic conversion of sucrose to 1,2-propanediol over alumina-supported Ni-Mo bimetallic catalysts, Sustainable Energy & Fuels, vol. 6, no. 15, pp. 3681-3689, 2022.
R. Raut, Banakar, V. V., and Darbha, S., Catalytic decarboxylation of non-edible oils over three-dimensional, mesoporous silica-supported Pd, Journal of Molecular Catalysis A-Chemical, vol. 417, pp. 126-134, 2016.
V. C. Ghantani, Lomate, S. T., Dongare, M. K., and Umbarkar, S. B., Catalytic dehydration of lactic acid to acrylic acid using calcium hydroxyapatite catalysts, Green Chemistry, vol. 15, no. 5, pp. 1211-1217, 2013.
R. Ahuja, Punji, B., Findlater, M., Supplee, C., Schinski, W., Brookhart, M., and Goldman, A. S., Catalytic dehydroaromatization of n-alkanes by pincer-ligated iridium complexes, Nature Chemistry, vol. 3, no. 2, pp. 167–171, 2011.
A. B. Gade, Bagle, P. N., Shinde, P. S., Bhardwaj, V., Banerjee, S., Chande, A., and Patil, N. T., Catalytic enantioselective 1,3-alkyl shift in alkyl aryl ethers: efficient synthesis of optically active 3,3 '-diaryloxindoles, Angewandte Chemie-International Edition, vol. 57, no. 20, pp. 5735-5739, 2018.
A. B. Gade and Patil, N. T., Catalytic enantioselective aza-piancatelli rearrangement, Synlett, vol. 28, no. 9, pp. 1096-1100, 2017.
C. V. Rode, Catalytic hydrogenation of 2-butyne-1,4-diol: activity, selectivity and kinetics studies, Journal of the Japan Petroleum Institute, vol. 51, no. 3, pp. 119-133, 2008.
S. Shinde and Deshpande, R. M., Catalytic hydrogenation of cinnamic acid and salicylic acid, Asian Journal of Chemistry, vol. 32, no. 2, pp. 339-341, 2020.
S. Shinde and Deshpande, R. M., Catalytic hydrogenation products of aromatic and aliphatic dicarboxylic acids, Asian Journal of Chemistry, vol. 31, no. 5, pp. 1137-1142, 2019.
S. Kumari, Haring, M., Gupta, S. Sen, and Diaz, D. Diaz, Catalytic macroporous biohydrogels made of ferritin-encapsulated gold nanoparticles, Chempluschem, vol. 82, no. 2, pp. 225-232, 2017.
S. Shylesh, Kapoor, M. P., Juneja, L. R., Samuel, P. R., Srilakshmi, C., and Singh, A. R., Catalytic meerwein-ponndorf-verley reductions over mesoporous silica supports: rational design of hydrophobic mesoporous silica for enhanced stability of aluminum doped mesoporous catalysts, Journal of Molecular Catalysis A-Chemical, vol. 301, no. 1-2, pp. 118-126, 2009.
S. S. Sable, Ghute, P. P., Fakhrnasova, D., Mane, R. B., Rode, C. V., Medina, F., and Contreras, S., Catalytic ozonation of clofibric acid over copper-based catalysts: in situ ATR-IR studies, Applied Catalysis B-Environmental, vol. 209, pp. 523-529, 2017.
D. P. Sawant, Vinu, A., Justus, J., Srinivasu, P., and Halligudi, S. B., Catalytic performances of silicotungstic acid/zirconia supported SBA-15 in an esterification of benzyl alcohol with acetic acid, Journal of Molecular Catalysis A-Chemical , vol. 276 , no. 1-2, pp. 150-157, 2007.
P. R. Gunjal and Ranade, V. V., Catalytic reaction engineering, in Industrial catalytic processes for fine and specialty chemicals, Elsevier Inc., 2016, pp. 263-314.
V. Rysak, Dixit, R., Trivelli, X., Merle, N., Agbossou-Niedercorn, F., Vanka, K., and Michon, C., Catalytic reductive deoxygenation of esters to ethers driven by hydrosilane activation through non-covalent interactions with a fluorinated borate salt, Catalysis Science & Technology, vol. 10, no. 14, pp. 4586-4592, 2020.
C. Panda, Dhar, B. B., Malvi, B., Bhattacharjee, Y., and Gupta, S. Sen, Catalytic signal amplification using [Fe-III(biuret-amide)]-mesoporous silica nanoparticles: visual cyanide detection, Chemical Communications, vol. 49, no. 22, pp. 2216-2218, 2013.
L. B. Kunde, Gade, S. M., Kalyani, V. S., and Gupte, S. P., Catalytic synthesis of chalcone and flavanone using Zn-Al hydrotalcite adhere ionic liquid, Catalysis Communications, vol. 10, no. 14, pp. 1881-1888, 2009.
S. P. Chavan, Pasupathy, K., Shengule, S., Shinde, V., and Anand, R., Catalytic transesterification of beta-ketoesters with zeolite H-FER under solvent free conditions, Arkivoc, vol. 13, pp. 162-168, 2005.
E. Balaraman, Khaskin, E., Leitus, G., and Milstein, D., Catalytic transformation of alcohols to carboxylic acid salts and H2 using water as the oxygen atom source, Nature Chemistry, vol. 5, no. 2, pp. 122–125, 2013.
K. Y. Nandiwale, Gogoi, P., and Bokade, V. V., Catalytic upgrading of citric acid to environmental friendly tri-butyl citrate plasticizer over ultra stable phosphonated Y zeolite, Chemical Engineering Research & Design, vol. 98, pp. 212-219, 2015.
K. Y. Nandiwale, Sonar, S. K., Niphadkar, P. S., Joshi, P. N., Deshpande, S. S., Patil, V. S., and Bokade, V. V., Catalytic upgrading of renewable levulinic acid to ethyl levulinate biodiesel using dodecatungstophosphoric acid supported on desilicated H-ZSM-5 as catalyst, Applied Catalysis A-General, vol. 460, pp. 90-98, 2013.
A. Kumar and Pawar, S. S., Catalyzing Henry reactions in chloroaluminate ionic liquids, Journal of Molecular Catalysis A - Chemical, vol. 235, no. 1-2, pp. 244-248, 2005.
M. Mitra, Kundu, T., Kaur, G., Sharma, G., Choudhury, A. Roy, Singh, Y., and Ghosh, R., Catecholase and phenoxazinone synthase activities of a ferromagnetically coupled tetranuclear Cu(II) complex, RSC Advances, vol. 6, no. 63, pp. 58831-58838, 2016.
N. Saikhedkar, Summanwar, A., Joshi, R. S., and Giri, A. P., Cathepsins of lepidopteran insects: aspects and prospects, Insect Biochemistry and Molecular Biology, vol. 64, pp. 51-59, 2015.
A. Y. Shaikh, Das, S., Pati, D., Dhaware, V., Gupta, S. Sen, and Hotha, S., Cationic charged helical glycopolypeptide using ring opening polymerization of 6-deoxy-6-azido-glyco-N-carboxyanhydride, Biomacromolecules, vol. 15, no. 10, pp. 3679-3686, 2014.
R. Harikrishna, Cationic photopolymerization kinetics of neat coating formulations involving poly(propylene glycol) diglycidyl ether and glycerol diglycidyl ether, Journal of Thermal Analysis and Calorimetry, vol. 122, no. 3, pp. 1445-1454, 2015.
M. Kumar Gupta and Singh, R. Pal, Cationic polymerization of epoxides using novel xanthenyl phosphonium salts as thermo-latent initiator, Polymer Bulletin, vol. 60, no. 6, pp. 755-763, 2008.
V. S. V. S. N. Swamy, Pal, S., Khan, S., and Sen, S. S., Cations and dications of heavier group 14 elements in low oxidation states, Dalton Transactions, vol. 44, no. 29, pp. 12903-12923, 2015.
S. Prakash, Krishna, A., and Sengupta, D., Caveolin induced membrane curvature and lipid clustering: two sides of the same coin?, Faraday Discussions, vol. 232, pp. 218-235, 2021.
S. Prakash, Krishna, A., and Sengupta, D., Caveolin mediated curvature and clustering: from simple to complex membrane, Biophysical Journal, vol. 120, no. 3, p. 232A-233A, 2021.
D. Kuehbeck, Dhar, B. Bijayi, Schoen, E. - M., Cativiela, C., Gotor-Fernandez, V., and Diaz, D. Diaz, C-C Bond formation catalyzed by natural gelatin and collagen proteins, Beilstein Journal of Organic Chemistry, vol. 9, pp. 1111-1118, 2013.
M. Karthikeyan and Vyas, R., CCCTK (Compute Cure for Cancer ToolKit) an open source drug discovery platform for design of novel anti-cancer agents, in 255th National Meeting and Exposition of the American-Chemical-Society (ACS) - Nexus of Food, Energy, and Water, New Orleans, LA, 2018.
M. Karthikeyan, CCCTK: High performance molecular informatics toolkit for the design of anti-cancer molecule, in 256th National Meeting and Exposition of the American-Chemical-Society (ACS) - Nanoscience, Nanotechnology and Beyond, Boston, MA, 2018.
S. Bai, Chaurasiya, A. H., Banarjee, R., Walke, P. B., Rashid, F., Unnikrishnan, A. G., and Kulkarni, M. J., CD44, a predominant protein in methylglyoxal-induced secretome of muscle cells, is elevated in diabetic plasma, ACS Omega, vol. 5, no. 39, pp. 25016-25028, 2020.
S. Saha, Roy, R. Kinkar, and Pal, S., CDASE-A reliable scheme to explain the reactivity sequence between Diels-Alder pairs, Physical Chemistry Chemical Physics, vol. 12, no. 32, pp. 9328-9338, 2010.
P. Kumar, Ram, F., Shanmuganathan, K., and Luwang, M. Niraj, CdS cubane type clusters encapsulated by rolling of single layer reduced graphene oxide sheets for enhanced mechanical energy harvesting, Materials Science and Engineering B-Advanced Functional Solid-State Materials, vol. 276, p. 115528, 2022.
P. G. Chavan, Kashid, R. V., Badhade, S. S., Mulla, I. S., More, M. A., and Joag, D. S., CdS nanowires: ultra-long growth and enhanced field emission properties, Vaccum, vol. 101, pp. 38-45, 2014.
A. Ayoobul Ansary, S. Kumar, A., Krishnasastry, M. V., Abyaneh, M. Kazemian, Kulkarni, S. K., Ahmad, A., and Khan, M. Islam, CdS quantum dots: enzyme mediated in vitro synthesis, characterization and conjugation with plant lectins, Journal of Biomedical Nanotechnology, vol. 3, no. 4, pp. 406-413, 2007.
J. Bera, Betal, A., Sharma, A., Shankar, U., Rath, A. Kumar, and Sahu, S., CdSe quantum dot-based nanocomposites for ultralow-power memristors, ACS Applied Nano Materials, vol. 5, no. 6, pp. 8502-8510, 2022.
A. Arunima Ba Kirali, Sreekantan, S., and Marimuthu, B., Ce promoted Cu/?-Al2O3 catalysts for the enhanced selectivity of 1,2-pro-panediol from catalytic hydrogenolysis of glucose, Catalysis Communications, vol. 165, p. 106447, 2022.
P. Kalita and Kumar, R., Ce-Al-MCM-41: an efficient catalyst for Mukaiyama-Michael reaction, From Zeolites to Porous Mof Materials: the 40th Anniversary of International Zeolite Conference, Proceedings of the 15th International Zeolite Conference, vol. 170. Elsevier Science BV, Sara Burgerhartstraat 25, Po Box 211, 1000 AE Amsterdam, Netherlands, pp. 1161-1166, 2007.
U. Nookaraju, Begari, E., Yetra, R. Reddy, and Kumar, P., CeCl3 center dot 7H(2)O-NaI promoted regioselective sulfenylation of indoles with sulfonylhydrazides, Chemistryselect, vol. 1, no. 1, pp. 81-85, 2016.
M. Gadgil, Cell culture processes for biopharmaceutical manufacturing, Current Science, vol. 112, no. 7, pp. 1478-1488, 2017.
H. Le, Vishwanathan, N., Jacob, N. M., Gadgil, M., and Hu, W. - S., Cell line development for biomanufacturing processes: recent advances and an outlook, Biotechnology Letters, vol. 37, no. 8, pp. 1553-1564, 2015.
D. Depan, Kumar, A. Pratheep, and Singh, R. Pal, Cell proliferation and controlled drug release studies of nanohybrids based on chitosan-g-lactic acid and montmorillonite, Acta Biomaterialia, vol. 5, no. 1, pp. 93-100, 2009.
N. Jamshidi and Raghunathan, A., Cell scale host-pathogen modeling: another branch in the evolution of constraint-based methods, Frontiers in Microbiology, vol. 6, p. Article Number: 1032, 2015.
P. Nigam Joshi, Cells and organs on chip - revolutionary platform for biomedicine, in Lab-on-a-chip fabrication and application, Croatia: Intech, 2016.
A. Nookapaju, Barreto, M. S., and Agrawal, D. C., Cellular polyamines influence maturation and germination of somatic embryos from pro-embryonal masses of two grapevine cultivars, Vitis, vol. 47, no. 1, pp. 31-34, 2008.
M. G. Adsul, Terwadkar, A. P., Varma, A., and Gokhale, D. V., Cellulases from penicillium janthinellum mutants: solid-state production and their stability in ionic liquids, Bioresources, vol. 4, no. 4, pp. 1670-1681, 2009.
P. Laxmikant Dhepe and Fukuoka, A., Cellulose conversion under heterogeneous catalysis, ChemSusChem, vol. 1, no. 12, pp. 969-975, 2008.
P. V. Chavan, Pandit, K. S., Desai, U. V., Kulkarni, M. A., and Wadgaonkar, P. P., Cellulose supported cuprous iodide nanoparticles (Cell-CuI NPs): a new heterogeneous and recyclable catalyst for the one pot synthesis of 1,4-disubstituted-1,2,3-triazoles in water, RSC Advances, vol. 4, no. 79, pp. 42137-42146, 2014.
S. Mandal and Mayadevi, S., Cellulose supported layered double hydroxides for the adsorption of fluoride from aqueous solution, Chemosphere, vol. 72, no. 6, pp. 995-998, 2008.
W. Fang, Pirez, C., Capron, M., Paul, S., Raja, T., Dhepe, P. Laxmikant, Dumeignil, F., and Jalowiecki-Duhamel, L., Ce-Ni mixed oxide as efficient catalyst for H-2 production and nanofibrous carbon material from ethanol in the presence of water, RSC Advances, vol. 2, no. 25, pp. 9626-9634, 2012.
C. V. Ramana, Salian, S. R., and Gurjar, M. K., Central core of uprolides D and E: a survey of some ring closing metathesis approaches, Tetrahedron Letter, vol. 48, no. 6, pp. 1013-1016, 2007.
R. Jagannathan, Poddar, P., and Prabhune, A., Cephalexin-mediated synthesis of quasi-spherical and anisotropic gold nanoparticles and their in situ capping by the antibiotic, Journal of Physical Chemistry C , vol. 111, no. 19, pp. 6933-6938, 2007.
P. Esteves, Wu, Y., Dujardin, C., Dongare, M. K., and Granger, P., Ceria-zirconia mixed oxides as thermal resistant catalysts for the decomposition of nitrous oxide at high temperature, Catalysis Today, vol. 176, no. 1, pp. 453-457, 2011.
R. Dalapati, Sakthivel, B., Ghosalya, M. K., Dhakshinamoorthy, A., and Biswas, S., Cerium-based metal-organic framework having inherent oxidase-like activity applicable for colorimetric sensing of biothiols and aerobic oxidation of thiols, Crystengcomm, vol. 19, no. 39, pp. 5915-5925, 2017.
P. Dubey, Raina, P., Prabhune, A., and Kaul-Ghanekar, R., Cetyl alcohol and oleic acid sophorolipids exhibit anticancer activity, International Journal of Pharmacy and Pharmaceutical Sciences, vol. 8, no. 3, pp. 399-402, 2016.
K. S. Mujumdar and Ranade, V. V., CFD modeling of rotary cement kilns, Asia-Pacific Journal of Chemical Engineering, vol. 3, no. 2, pp. 106-118, 2008.
A. G. Chilka and Ranade, V. V., CFD modelling of almond drying in a tray dryer, Canadian Journal of Chemical Engineering, vol. 97, no. 2, pp. 560-572, 2019.
M. R. Rampure, Mahajani, S. M., and Ranade, V. V., CFD Simulation of bubble columns: modeling of nonuniform gas distribution at sparger, Industrial & Engineering Chemistry Research, vol. 48, no. 17, pp. 8186-8192, 2009.
G. R. Kasat, Pandit, A. B., and Ranade, V. V., CFD simulation of gas-liquid flows in a reactor stirred by dual rushton turbines, International Journal of Chemical Reactor Engineering, vol. 6, p. Article No. A60, 2008.
A. R. Khopkar and Ranade, V. V., CFD simulation of gas-liquid stirred vessel: VC, S33, and L33 flow regimes, AICHE Journal, vol. 52, no. 5, pp. 1654-1672, 2006.
G. R. Kasat, Khopkar, A. R., Ranade, V. V., and Pandita, A. B., CFD simulation of liquid-phase mixing in solid-liquid stirred reactor, Chemical Engineering Science, vol. 63, no. 15, pp. 3877-3885, 2008.
A. R. Khopkar, Kasat, G. R., Pandit, A. B., and Ranade, V. V., CFD simulation of mixing in tall gas-liquid stirred vessel: role of local flow patterns, Chemical Engineering Science, vol. 61, no. 9, pp. 2921-2929, 2006.
D. Dakshinamoorthy, Khopkar, A. R., Louvar, J. F., and Ranade, V. V., CFD simulation of shortstopping runaway reactions in vessels agitated with impellers and jets, Journal of Loss Prevention in the Process Industries, vol. 19, no. 6, pp. 570-581, 2006.
J. B. Joshi, Nere, N. K., Rane, C. V., Murthy, B. N., Mathpati, C. S., Patwardhan, A. W., and Ranade, V. V., CFD simulation of stirred tanks: comparison of turbulence models (Part II: axial flow impellers, multiple impellers and multiphase dispersions), Canadian Journal of Chemical Engineering, vol. 89, no. 4, pp. 754-816, 2011.
J. B. Joshi, Nere, N. K., Rane, C. V., Murthy, B. N., Mathpati, C. S., Patwardhan, A. W., and Ranade, V. V., CFD simulation of stirred tanks: comparison of turbulence models. part I: radial flow impellers, Canadian Journal of Chemical Engineering, vol. 89, no. 1, pp. 23-82, 2011.

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