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20篇 您的检索式:作者名="Kaustubha"
    题名 作者 年代 出处 被引量
1Co-pyrolysis of waste biomass and waste plastics(polystyrene and waste nitrile gloves)into renewable fuel and value-added chemicals显示文摘The present study addresses the influence of blending of waste plastics(i.e.,polystyrene,PS and waste nitrile gloves,WNG)with mahua seeds(MH)for co-pyrolytic liquid yield and its fuel properties.Various blends of waste plastics were mixed with biomass(10,20 and 30 wt%)and pyrolyzed in a semi-batch reactor at an optimized environment(550℃ temperature,80℃ min^(-1) heating rate,and 100 mL min^(-1) N_(2) flow rate).Physicochemical results displayed its ability to yield renewable fuel and valuable chemicals.Co-pyrolysis outcomes showed that blending of waste plastics at 20 wt%,yielded maximum liquid(44.18±1.2 wt%and 45.89±1.4 wt%for MH+WNG and MH+PS respectively)which was higher than thermal pyrolysis of individual MH(39.26±1.2 wt%).Further,characterization results revealed a substantial reduction in viscosity,oxygen content,moisture,and a positive increment in gross heating value,carbon content and acidity.FTIR examination exposed the attendance of mainly aromatics,acids,phenols,water,esters and ethers.Further,NMR analysis of pyrolytic oil confirmed an increase in aromaticity by blending of waste plastics(20 wt%)while there was a reduction in paraffinic compounds.GC-MS investigation revealed substantial improvement in hydrocarbons and minimization in the oxygen-rich products by blending of waste plastics at 20 wt%.Ranjeet Kumar Mishra Kaustubha Mohanty 2020Carbon Resources Conversion2020,3,1:6
2Treatment of phenolic wastewater in a novel multi-stage external loop airlift reactor using activated carbon显示文摘Kaustubha Mohanty Debabrata Das Manindra Nath Biswas 0,,03:1
3Molecular dynamic simulation of spontaneous combustion and pyrolysis of brown coal using ReaxFF显示文摘Sanjukta Bhoi Tamal Banerjee Kaustubha Mohanty 2014Fuel2014,,:1
4Acoustic seafloor sediment classification using self-Organizing feature maps显示文摘Bishwajit Chakraborty Kaustubha R Amey Hegde 2001IEEE Transaction on Geoscience and Remote Sensing2001,39,12:1
5, Removal of chromium ( VI ) from dilute aqueous solutions by activated carbon developed from Terminalia arjuna nuts activated with zinc chloride 显示文摘Kaustubha Mohanty etc 2005Chemi- cal Engineering Science2005,,6:1
6Selective sepa ration of Bisphenol A from aqueous solution using sup- ported ionic liquid membrane显示文摘Abhishek P Santhi R P Kaustubha M 2013Separation and Purifi- cation Technology2013,107,:1
7Treatment of phenolic wastewater in a novel multi-stage external loop airlift reactor using activated carbon 显示文摘Kaustubha Mohanty Debabrata Das Manindra Nath Biswas 2008Separation and Purification Technology2008,58,:1
8Hydrodynamic modeling of a novel multi-stage gas-liquid external loop airlift reactor 显示文摘Sarkar S Kaustubha Mohanty Meikap B C 2008Chemical Engineering Journal2008,145,1:1
9Two RNA polymerase complexes from vesicular stomatitis virusinfected cells that carry out transcription and replication of genome RNA显示文摘Kaustubha R Qanungo Daniel S Manjula M 2004PNAS2004,101,16:1
10Cardiac Arrest: Resuscitation and Reperfusion显示文摘Kaustubha D. Patil Henry R. Halperin Lance B. Becker 2015Circulation Research2015,,12:1
11Ultrasound assisted lime pretreatment of lignocellulosic biomass toward bioethanol production显示文摘Sasmal Soumya Goud Vaibhav V Mohanty Kaustubha 0,,06:1
12Treatment of phenolic wastewater in a novel multi-stage external loop airlift reactor using activated carbon显示文摘Kaustubha Mohanty Debabrata Das Manindra Nath Biswas 2008Separation and Purification Technology2008,58,:1
13Hydrodynamics of a novel multi-stage external loop airlift reactor显示文摘Mohanty Kaustubha Das D Biswas M N 2006Chemical Engineering Science2006,61,14:1
14Selective separation of bisphenol A from aqueous solution using supported ionic liquid membrane显示文摘Abhishek P Santhi R P Kaustubha M 2013Separation and Purification Technology2013,107,:1
15Hydrodynamics of a novel multi-stage external loop airlift reactor显示文摘Kaustubha Mohanty Das D Biswas M N 0,,06:1
16Hydrodynamic modeling of a novel multi-stage gas-liquid external loop airlift reactor显示文摘Sarkar S Kaustubha Mohanty Meikap B C 0,,01:1
17Acoustic seafloor sediment classification using self-organizing feature maps显示文摘CHAKRABORTY B KAUSTUBHA R HEGDE A 0,,12:1
18Biosorption of Cr(VI) from aqueous solutions by Eichhornia crassipes显示文摘Kaustubha Mohanty Mousam Jha B.C. Meikap M.N. Biswas 2005Chemical Engineering Journal2005,,1:1
19Mass transfer characteristics of a novel multi-stage external loop airlift reactor显示文摘Kaustubha Mohanty Debabrata Das Manindra Nath Biswas 0,,1:1
20Bio-oil and biochar production using thermal and catalytic pyrolysis of low-value waste neem seeds over low-cost catalysts:effects of operating conditions on product yields and studies of physicochemical characteristics of bio-oil and biochar显示文摘This study addressed a comparative assessment of the effect of low-cost catalysts on the yield and physicochemical properties of bio-oil.Thermal and catalytic pyrolysis of neem seeds(NM)was conducted in a fixed bed semi-batch reactor at optimum conditions(550°C temperature,80°C min−1 heating rate,0.5 mm particle size,and 100 mL min−1 sweep gas flow rate).The produced bio-oil and biochar were characterized through thermal stability,elemental composition(CHNS),higher heating value(HHV),Nuclear Magnetic Resonance(NMR)spectroscopy,Field Emission Scanning Electron Microscopy(FESEM),Fourier-transform infrared spectroscopy(FTIR),Gas Chromatography-Mass Spectrometry(GC-MS),zeta potential,water-holding capacity(WHC),and BET(Brunauer,Emmett and Teller)surface area analyzer.Overall,it was noticed that the use of catalysts at optimized condition substantially boosted the quality and yield of bio-oil.Pyrolysis results established that thermal pyrolysis yielded 49.53 wt.%of bio-oil,while catalytic pyrolysis yielded(51.25 wt.%,53.12 wt.%,48.68 wt.%,and 50.65 wt.%for MgO,NaOH,Al_(2)O_(3),and ZSM-5,respectively)at 20 wt.%catalyst loading.The physicochemical study of bio-oil confirmed improved properties of bio-oil in terms of viscosity,heating value,pH and carbon content.Further,the FTIR study of bio-oil indicates the occurrence of phenolic products,aromatics,ketones,acidic compounds,esters,alcohol and aldehyde impurities,whereas 1H NMR study supported FTIR findings.GC-MS study demonstrated that the introduc-tion of catalysts significantly reduced the oxygenated substances,acidic products,phenolic compounds and substantially increased the hydrocarbons.Further,characterization results of neem seed biochar(NMC)established the existence of HHV(23.26 MJ kg^(−1)),carbon content(62.66%),zeta potential(31.68 mV),water holding capacity(41.50%)and lower BET surface area(4.60 m^(2)g^(−1)).Ranjeet Kumar Mishra Kaustubha Mohanty 2021Biochar2021,3,4:0
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