Biodiesel synthesis using clinoptilolite-Fe3O4-based phosphomolybdic acid as a novel magnetic green catalyst from salvia mirzayanii oil via electrolysis method: Optimization study by Taguchi method
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[1] K. Tahvildari,et al. Biodiesel Production from Amygdalus scoparia Using KOH/Al2O3 Catalyst: Optimization by Response Surface Methodology , 2021 .
[2] K. Tahvildari,et al. Parametric optimization of biodiesel synthesis from Capparis spinosa oil using NaOH/NaX as nanoheterogeneous catalyst by response surface methodology , 2020, Brazilian Journal of Chemical Engineering.
[3] A. Safekordi,et al. Phosphomolybdic acid/graphene oxide as novel green catalyst using for biodiesel production from waste cooking oil via electrolysis method: Optimization using with response surface methodology (RSM) , 2020 .
[4] Rehab M. Ali,et al. Highly active and stable magnetically recyclable CuFe2O4 as a heterogenous catalyst for efficient conversion of waste frying oil to biodiesel , 2020 .
[5] S. Hou,et al. Optimized conversion of waste cooking oil to biodiesel using modified calcium oxide as catalyst via a microwave heating system , 2020 .
[6] Murat Kadir Yesilyurt,et al. Biodiesel synthesis from Styrax officinalis L. seed oil as a novel and potential non-edible feedstock: A parametric optimization study through the Taguchi technique , 2020 .
[7] Kun Luo,et al. Investigation on fuel properties and engine performance of the extraction phase liquid of bio-oil/biodiesel blends , 2020 .
[8] P. A. Arroyo,et al. Phenomenological modeling of Acutodesmus obliquus microalgae in situ transesterification , 2020 .
[9] Bisheswar Karmakar,et al. Sulfonated catalytic esterification of Madhuca indica oil using waste Delonix regia: L16 Taguchi optimization and kinetics , 2020 .
[10] Vezir Ayhan,et al. Optimization of the factors affecting performance and emissions in a diesel engine using biodiesel and EGR with Taguchi method , 2020 .
[11] M. A. Usman,et al. Exergetic evaluation of biodiesel production from rice bran oil using heterogeneous catalyst , 2020 .
[12] J. Misiewicz,et al. Enhanced transparency of ultrathin Ag films through wetting layer of phosphomolybdic acid , 2020 .
[13] A. Arivarasu,et al. Synthesis and characterization of reusable heteropoly acid nanoparticles for one step biodiesel production from high acid value waste cooking oil – Performance and emission studies , 2020 .
[14] M. Sarno,et al. Novel Pt-Ni/NiO/Ni2O3 based electrodes for electrocatalytic biodiesel production from waste palm oil , 2020 .
[15] S. S. Hoseini,et al. Chemical characterization of oil and biodiesel from Common Purslane (Portulaca) seed as novel weed plant feedstock , 2019, Industrial Crops and Products.
[16] Oscar W. Perez-Lopez,et al. FTIR spectroscopy analysis for monitoring biodiesel production by heterogeneous catalyst , 2019, Vibrational Spectroscopy.
[17] S. K. Mohapatra,et al. Biodiesel production from Terminalia bellerica using eggshell-based green catalyst: An optimization study with response surface methodology , 2019, Energy Reports.
[18] R. Sen,et al. Analysis of growth and intracellular product synthesis dynamics of a microalga cultivated in wastewater cocktail as medium , 2019, Biochemical Engineering Journal.
[19] A. Caires,et al. Molecular arrangement in diesel/biodiesel blends: A Molecular Dynamics simulation analysis , 2019, Renewable Energy.
[20] J. Irvine,et al. Investigation of solid base catalysts for biodiesel production from fish oil , 2019, Renewable Energy.
[21] P. Pandit,et al. Biodiesel production from microalgal biomass using CaO catalyst synthesized from natural waste material , 2019, Renewable Energy.
[22] A. Mollahosseini,et al. Highly efficient ultrasonic-assisted pre-concentration and simultaneous determination of trace amounts of Pb (II) and Cd (II) ions using modified magnetic natural clinoptilolite zeolite: Response surface methodology , 2019, Microchemical Journal.
[23] T. Efferth,et al. Euonymus maackii Rupr. Seed oil as a new potential non-edible feedstock for biodiesel , 2019, Renewable Energy.
[24] Amjad Ali,et al. 5-Na/ZnO doped mesoporous silica as reusable solid catalyst for biodiesel production via transesterification of virgin cottonseed oil , 2019, Renewable Energy.
[25] M. Sillanpää,et al. Nano-magnetic potassium impregnated ceria as catalyst for the biodiesel production , 2019, Renewable Energy.
[26] X. Qi,et al. Selective conversion of biomass-derived levulinic acid to ethyl levulinate catalyzed by metal organic framework (MOF)-supported polyoxometalates , 2019, Applied Catalysis A: General.
[27] S. Yusup,et al. Development of high microwave-absorptive bifunctional graphene oxide-based catalyst for biodiesel production , 2019, Energy Conversion and Management.
[28] B. Mokhtarani,et al. Deep and fast oxidative desulfurization of fuels using graphene oxide-based phosphotungstic acid catalysts , 2019, Fuel.
[29] S. Munusamy,et al. Synthesis, Characterization,and Photocatalytic activity of Silver nanoparticledoped Phosphomolybdic acid supportedZirconia , 2019, Materials Today: Proceedings.
[30] B. Mokhtarani,et al. Extractive-Catalytic Oxidative Desulfurization with Graphene Oxide-Based Heteropolyacid Catalysts: Investigation of Affective Parameters and Kinetic Modeling , 2018, Catalysis Letters.
[31] Tian-tian Li,et al. Calcium oxide-modified mesoporous silica loaded onto ferriferrous oxide core: Magnetically responsive mesoporous solid strong base. , 2018, Journal of colloid and interface science.
[32] Bisheswar Karmakar,et al. Parametric optimisation of biodiesel synthesis from waste cooking oil via Taguchi approach , 2018, Journal of Environmental Chemical Engineering.
[33] M. Taghizadeh,et al. Synthesis of magnetic mesoporous nanocrystalline KOH/ZSM-5-Fe3O4 for biodiesel production: Process optimization and kinetics study , 2018, Process Safety and Environmental Protection.
[34] Anping Wang,et al. Effective production of biodiesel from non-edible oil using facile synthesis of imidazolium salts-based Brønsted-Lewis solid acid and co-solvent , 2018 .
[35] G. Halder,et al. Biodiesel synthesis from Mesua ferrea oil using waste shell derived carbon catalyst , 2018, Renewable Energy.
[36] Lew P. Christopher,et al. Optimization of enzyme-catalyzed biodiesel production from crude tall oil using Taguchi method , 2017 .
[37] C. Xu,et al. Magnetically recyclable basic polymeric ionic liquids for efficient transesterification of Firmiana platanifolia L.f. oil into biodiesel , 2017 .
[38] Mohammad Omar Abdullah,et al. Application of RSM and Taguchi methods for optimizing the transesterification of waste cooking oil catalyzed by solid ostrich and chicken-eggshell derived CaO , 2017 .
[39] G. Pshinko,et al. Clinoptilolite/Fe3O4: a magnetic sorbent for removing 90Sr from aqueous media , 2017, Radiochemistry.
[40] N. Ravasio,et al. Esterification of free fatty acids using acidic metal oxides and supported polyoxometalate (POM) catalysts , 2017 .
[41] M. Nasrollahzadeh,et al. Green synthesis of Ag nanoparticles/clinoptilolite using Vaccinium macrocarpon fruit extract and its excellent catalytic activity for reduction of organic dyes , 2017 .
[42] B. Mokhtarani,et al. Preparation of supported catalyst by adsorption of polyoxometalate on graphene oxide/reduced graphene oxide , 2017 .
[43] M. Mehrpooya,et al. Experimental assessment of electrolysis method in production of biodiesel from waste cooking oil using zeolite/chitosan catalyst with a focus on waste biorefinery , 2017 .
[44] M. Bagherzadeh,et al. Nanocluster polyoxomolybdate supported on natural zeolite: a green and recyclable catalyst for epoxidation of alkenes , 2017 .
[45] Belmiro P.M. Duarte,et al. Integrated production of biodiesel in a soybean biorefinery: Modeling, simulation and economical assessment , 2017 .
[46] M. Taghizadeh,et al. Optimization of Process Variables for Biodiesel Production Using the Nanomagnetic Catalyst CaO/NaY‐Fe3O4 , 2017 .
[47] G. Halder,et al. Parametric optimization of biodiesel synthesis from rubber seed oil using iron doped carbon catalyst by Taguchi approach , 2017 .
[48] J. Mahmoudi,et al. Studies on optimization of efficient parameters for removal of lead from aqueous solutions by natural zeolite as a low-cost adsorbent using response surface methodology , 2017 .
[49] A. B. Fadhil,et al. Silybum marianum L. seed oil: A novel feedstock for biodiesel production , 2017 .
[50] M. J. Silva,et al. An unexpected behavior of H3PMo12O40 heteropolyacid catalyst on the biphasic hydrolysis of vegetable oils , 2017 .
[51] B. F. Mirjalili,et al. Fe3O4@nano-cellulose/TiCl: a bio-based and magnetically recoverable nano-catalyst for the synthesis of pyrimido[2,1-b]benzothiazole derivatives , 2016 .
[52] Tariq J. Al-Musawi,et al. Improvement of zeolite adsorption capacity for cephalexin by coating with magnetic Fe3O4 nanoparticles , 2016 .
[53] E. Favvas,et al. Clinoptilolite, a natural zeolite material: Structural characterization and performance evaluation on its dehydration properties of hydrocarbon-based fuels , 2016 .
[54] G. Halder,et al. Biodiesel synthesis from Hevea brasiliensis oil employing carbon supported heterogeneous catalyst: Optimization by Taguchi method , 2016 .
[55] E. R. Castro,et al. Quantification of biodiesel in petroleum diesel by 1H NMR: Evaluation of univariate and multivariate approaches , 2016 .
[56] R. S. Putra,et al. Enhanced Electrocatalytic Biodiesel Production with Chitosan Gel (Hydrogel and Xerogel) , 2016 .
[57] M. Mohammadhosseini. Chemical Composition of the Volatile Fractions from Flowers, Leaves and Stems of Salvia mirzayanii by HS-SPME-GC-MS , 2015 .
[58] Alireza Nezamzadeh-Ejhieh,et al. Effect of the supported ZnO on clinoptilolite nano-particles in the photodecolorization of semi-real sample bromothymol blue aqueous solution , 2015 .
[59] L. Krenn,et al. Phytochemical and Pharmacological Aspects of Salvia mirzayanii Rech. f. & Esfand , 2015, Journal of evidence-based complementary & alternative medicine.
[60] Shing‐Jong Huang,et al. Efficient and reusable polyoxometalate-based sulfonated ionic liquid catalysts for palmitic acid esterification to biodiesel , 2013 .
[61] S. Shanmugam,et al. Polyoxometalate-reduced graphene oxide hybrid catalyst: synthesis, structure, and electrochemical properties. , 2013, ACS applied materials & interfaces.
[62] E. Favvas,et al. A novel method for improving the physicochemical properties of diesel and jet fuel using polyaspartate polymer additives , 2013 .
[63] Amin Talebian-Kiakalaieh,et al. Transesterification of waste cooking oil by heteropoly acid (HPA) catalyst: Optimization and kinetic model , 2013 .
[64] Patricia S. Uriarte,et al. Study by 1H NMR spectroscopy of the evolution of extra virgin olive oil composition submitted to frying temperature in an industrial fryer for a prolonged period of time , 2012 .
[65] A. Ofoefule,et al. Comparative Study of the Physicochemical Characterization of Some Oils as Potential Feedstock for Biodiesel Production , 2012 .
[66] Yi Zhang,et al. Study on preparation of Ca/Al/Fe3O4 magnetic composite solid catalyst and its application in biodiesel transesterification , 2012 .
[67] J. Zapp,et al. Immunoinhibitory effect of teuclatriol a guaiane sesquiterpene from Salvia mirzayanii. , 2011, Iranian journal of immunology : IJI.
[68] Keat-Teong Lee,et al. Comparison and optimisation of biodiesel production from Jatropha curcas oil using supercritical methyl acetate and methanol , 2011 .
[69] Saqib Ali,et al. Identification, FT-IR, NMR ( 1H and 13C) and GC/MS studies of fatty acid methyl esters in biodiesel , 2011 .
[70] M. Khajeh,et al. The Essential Oils Composition of Salvia mirzayanii , 2010 .
[71] G. Guan,et al. Synthesis of biodiesel fuel using an electrolysis method , 2009 .
[72] J. Rabo. Zeolite chemistry and catalysis , 1976 .