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Erschienen in: Adsorption 7/2019

09.05.2019

Deacidification of vegetable oil by extraction with solvent recovery

verfasst von: Mariana Busto, Carlos Román Vera

Erschienen in: Adsorption | Ausgabe 7/2019

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Abstract

Deacidification of a vegetable oil by extraction and regeneration of the solvent by means of adsorption was studied. This novel approach to solvent regeneration is posed as an alternative to distillation in systems with high solvent-to-feed ratios in which evaporation of large solvent amounts is economically unattractive. An example was chosen of deacidification of sunflower oil by extraction with methanol and regeneration of the alcohol by adsorption over activated carbon. The example has application for the biodiesel and technical oils industries. The results showed that high temperatures of extraction increased the acid–methanol partition coefficient but also the mutual solubility of oil and methanol. One extraction stage with a solvent-to feed ratio of 20 (vol:vol) reduced the oil acidity to acceptable values. Regeneration of the extract by adsorption over activated carbon was found to be efficient. For regenerating the bed, elution with a hot solvent was studied. Adsorbent regeneration was completed to a high degree, with elution temperature being the most important variable. For exploring the influence of process variables on the performance of extraction-adsorption, simulation was used. Necessary parameters for mass transfer and adsorption were fitted from breakthrough tests with the aid of a linear driving force model. Simulation results confirmed the viability of the proposed process as an alternative for solvent regeneration of extraction units.

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Literatur
Zurück zum Zitat Abbas, A.S., Albayati, T.M., Alismaeel, Z.T., Doyle, A.M.: Kinetics and mass transfer study of oleic acid esterification over prepared nanoporous HY zeolite. Iraqi J. Chem. Pet. Eng. 17, 47–60 (2016) Abbas, A.S., Albayati, T.M., Alismaeel, Z.T., Doyle, A.M.: Kinetics and mass transfer study of oleic acid esterification over prepared nanoporous HY zeolite. Iraqi J. Chem. Pet. Eng. 17, 47–60 (2016)
Zurück zum Zitat Ayrance, E., Duman, O.: Adsorption of aromatic organic acids onto high area activated carbon cloth in relation to wastewater purification. J. Hazard. Mater. 136, 542–552 (2006)CrossRef Ayrance, E., Duman, O.: Adsorption of aromatic organic acids onto high area activated carbon cloth in relation to wastewater purification. J. Hazard. Mater. 136, 542–552 (2006)CrossRef
Zurück zum Zitat Balat, M., Balat, H.: Progress in biodiesel processing. Appl. Energy 87, 1815–1835 (2010)CrossRef Balat, M., Balat, H.: Progress in biodiesel processing. Appl. Energy 87, 1815–1835 (2010)CrossRef
Zurück zum Zitat Bayrak, Y.: Application of Langmuir isotherm to saturated fatty acid adsorption. Microporous Mesoporous Mater. 87, 203–206 (2006)CrossRef Bayrak, Y.: Application of Langmuir isotherm to saturated fatty acid adsorption. Microporous Mesoporous Mater. 87, 203–206 (2006)CrossRef
Zurück zum Zitat Boehm, H.P.: Some aspects of the surface chemistry of carbon blacks and other carbons. Carbon 32, 759–769 (1994)CrossRef Boehm, H.P.: Some aspects of the surface chemistry of carbon blacks and other carbons. Carbon 32, 759–769 (1994)CrossRef
Zurück zum Zitat Budinova, T., Ekinci, E., Yardim, F., Grimm, A., Björnbom, E., Minkova, V., Goranova, M.: Characterization and application of activated carbon produced by H3PO4 and water vapor activation. Fuel Process. Technol. 87, 899–905 (2006)CrossRef Budinova, T., Ekinci, E., Yardim, F., Grimm, A., Björnbom, E., Minkova, V., Goranova, M.: Characterization and application of activated carbon produced by H3PO4 and water vapor activation. Fuel Process. Technol. 87, 899–905 (2006)CrossRef
Zurück zum Zitat Carr, R.A.: Degumming and refining practices in the U.S. JAOCS 53, 347–352 (1976)CrossRef Carr, R.A.: Degumming and refining practices in the U.S. JAOCS 53, 347–352 (1976)CrossRef
Zurück zum Zitat Chai, M., Tu, Q., Lu, M., Yang, Y.J.: Esterification pretreatment of free fatty acid in biodiesel production from laboratory to industry. Fuel Process. Technol. 125, 106–113 (2014)CrossRef Chai, M., Tu, Q., Lu, M., Yang, Y.J.: Esterification pretreatment of free fatty acid in biodiesel production from laboratory to industry. Fuel Process. Technol. 125, 106–113 (2014)CrossRef
Zurück zum Zitat Cmolik, J., Pokorny, J.: Physical refining of endible oil. Eur. J. Lipid Sci. Technol. 102, 472–486 (2000)CrossRef Cmolik, J., Pokorny, J.: Physical refining of endible oil. Eur. J. Lipid Sci. Technol. 102, 472–486 (2000)CrossRef
Zurück zum Zitat Cuevas, M.S., Rodrigues, C.E.C., Meirelles, A.J.A.: Effect of solvent hydration and temperature in the deacidification process of sunflower oil using ethanol. J. Food Eng. 95, 291–297 (2009)CrossRef Cuevas, M.S., Rodrigues, C.E.C., Meirelles, A.J.A.: Effect of solvent hydration and temperature in the deacidification process of sunflower oil using ethanol. J. Food Eng. 95, 291–297 (2009)CrossRef
Zurück zum Zitat El-Sayed, Y., Bandosz, T.J.: Effect of increased basicity of activated carbon surface on valeric acid adsorption from aqueous solution activated carbon. Phys. Chem. Chem. Phys. 5, 4892–4898 (2003)CrossRef El-Sayed, Y., Bandosz, T.J.: Effect of increased basicity of activated carbon surface on valeric acid adsorption from aqueous solution activated carbon. Phys. Chem. Chem. Phys. 5, 4892–4898 (2003)CrossRef
Zurück zum Zitat El-Sayed, Y., Bandosz, T.J.: Adsorption of valeric acid from aqueous solution onto activated carbons: role of surface basic sites. J. Colloid Interface Sci. 273, 64–72 (2004)CrossRefPubMed El-Sayed, Y., Bandosz, T.J.: Adsorption of valeric acid from aqueous solution onto activated carbons: role of surface basic sites. J. Colloid Interface Sci. 273, 64–72 (2004)CrossRefPubMed
Zurück zum Zitat Farook, A., Ravendran, S.: Saturated fatty acid adsorption by acidified rice hull ash. JAOCS 77, 437–440 (2000)CrossRef Farook, A., Ravendran, S.: Saturated fatty acid adsorption by acidified rice hull ash. JAOCS 77, 437–440 (2000)CrossRef
Zurück zum Zitat Figueiredo, J.L., Pereira, M.F.R., Freitas, M.M.A., Órfão, J.J.M.: Modification of the surface chemistry of activated carbons. Carbon 37, 1379–1389 (1999)CrossRef Figueiredo, J.L., Pereira, M.F.R., Freitas, M.M.A., Órfão, J.J.M.: Modification of the surface chemistry of activated carbons. Carbon 37, 1379–1389 (1999)CrossRef
Zurück zum Zitat Frega, N., Mozzon, M., Lercker, G.: Effects of free fatty acids on oxidative stability of vegetable oil. JAOCS 76, 325–329 (1999)CrossRef Frega, N., Mozzon, M., Lercker, G.: Effects of free fatty acids on oxidative stability of vegetable oil. JAOCS 76, 325–329 (1999)CrossRef
Zurück zum Zitat Freitas, A.F., Mendes, M.F., Coelho, G.L.V.: Thermodynamic study of fatty acids adsorption on different adsorbents. J. Chem. Thermodyn. 39, 1027–1037 (2007)CrossRef Freitas, A.F., Mendes, M.F., Coelho, G.L.V.: Thermodynamic study of fatty acids adsorption on different adsorbents. J. Chem. Thermodyn. 39, 1027–1037 (2007)CrossRef
Zurück zum Zitat Ge, X., Wu, Z., Yan, Y., Cravotto, G., Ye, B.-C.: Microwave-assisted modification of activated carbon with ammonia for efficient pyrene adsorption. J. Ind. Eng. Chem. 39, 27–36 (2016)CrossRef Ge, X., Wu, Z., Yan, Y., Cravotto, G., Ye, B.-C.: Microwave-assisted modification of activated carbon with ammonia for efficient pyrene adsorption. J. Ind. Eng. Chem. 39, 27–36 (2016)CrossRef
Zurück zum Zitat Ghaedi, M., Golestani Nasab, A., Khodadoust, S., Rajabi, M., Azizian, S.: Application of activated carbon as adsorbents for efficient removal of methylene blue: kinetics and equilibrium study. J. Ind. Eng. Chem. 20, 2317–2324 (2014)CrossRef Ghaedi, M., Golestani Nasab, A., Khodadoust, S., Rajabi, M., Azizian, S.: Application of activated carbon as adsorbents for efficient removal of methylene blue: kinetics and equilibrium study. J. Ind. Eng. Chem. 20, 2317–2324 (2014)CrossRef
Zurück zum Zitat Glueckauf, E.: Theory of chromatography. Part 9. The “theoretical plate” concept in column separations. Trans. Faraday Soc. 51, 34–42 (1995)CrossRef Glueckauf, E.: Theory of chromatography. Part 9. The “theoretical plate” concept in column separations. Trans. Faraday Soc. 51, 34–42 (1995)CrossRef
Zurück zum Zitat Ho, K.-C., Chen, C.-L., Hsiao, P.-X., Wu, M.-S., Huang, C.-C., Chang, J.-S.: Biodiesel production from waste cooking oil by two-step catalytic conversion. Energy Procedia 61, 1302–1305 (2014)CrossRef Ho, K.-C., Chen, C.-L., Hsiao, P.-X., Wu, M.-S., Huang, C.-C., Chang, J.-S.: Biodiesel production from waste cooking oil by two-step catalytic conversion. Energy Procedia 61, 1302–1305 (2014)CrossRef
Zurück zum Zitat Idiris, M., Farook, S.: Adsorption isotherms of fatty acids on rice hull ash in a model system. JAOCS 71, 1363–1366 (1994)CrossRef Idiris, M., Farook, S.: Adsorption isotherms of fatty acids on rice hull ash in a model system. JAOCS 71, 1363–1366 (1994)CrossRef
Zurück zum Zitat Isernia, L.F.: Study of the influence of physical–chemical properties of steamed H-MOR zeolites in the mechanism of adsorption of fatty acids and their esterification. Microporous Mesoporous Mater. 200, 19–26 (2014)CrossRef Isernia, L.F.: Study of the influence of physical–chemical properties of steamed H-MOR zeolites in the mechanism of adsorption of fatty acids and their esterification. Microporous Mesoporous Mater. 200, 19–26 (2014)CrossRef
Zurück zum Zitat Lashaki, M.J., Atkinson, J.D., Hashisho, Z., Phillips, J.H., Anderson, J.E., Nichols, M.: The role of beaded activated carbon’s surface oxygen groups on irreversible adsorption of organic vapors. J. Hazard. Mater. 317, 284–294 (2016)CrossRef Lashaki, M.J., Atkinson, J.D., Hashisho, Z., Phillips, J.H., Anderson, J.E., Nichols, M.: The role of beaded activated carbon’s surface oxygen groups on irreversible adsorption of organic vapors. J. Hazard. Mater. 317, 284–294 (2016)CrossRef
Zurück zum Zitat Limousin, G., Gaudet, J.-P., Charlet, L., Szenknect, S., Barthès, V., Krimissa, M.: Sorption isotherms: a review on physical bases modeling and measurement. Appl. Geochem. 22, 249–275 (2007)CrossRef Limousin, G., Gaudet, J.-P., Charlet, L., Szenknect, S., Barthès, V., Krimissa, M.: Sorption isotherms: a review on physical bases modeling and measurement. Appl. Geochem. 22, 249–275 (2007)CrossRef
Zurück zum Zitat Lin, H.-R., Lin, C.-I.: Kinetics of adsorption of free fatty acids from water-degummed and alkali-refined soy oil using regenerated clay. Sep. Purif. Technol. 44, 258–265 (2005)CrossRef Lin, H.-R., Lin, C.-I.: Kinetics of adsorption of free fatty acids from water-degummed and alkali-refined soy oil using regenerated clay. Sep. Purif. Technol. 44, 258–265 (2005)CrossRef
Zurück zum Zitat Manuale, D.L., Mazzieri, V.A., Torres, G., Vera, C.R., Yori, J.C.: Non-catalytic biodiesel process with adsorption-based refining. Fuel 90, 1188–1196 (2011)CrossRef Manuale, D.L., Mazzieri, V.A., Torres, G., Vera, C.R., Yori, J.C.: Non-catalytic biodiesel process with adsorption-based refining. Fuel 90, 1188–1196 (2011)CrossRef
Zurück zum Zitat Manuale, D.L., Torres, G.C., Badano, J.M., Vera, C.R., Yori, J.C.: Adjustment of the biodiesel free fatty acids content by means of adsorption. Energy Fuels 27, 6763–6772 (2013)CrossRef Manuale, D.L., Torres, G.C., Badano, J.M., Vera, C.R., Yori, J.C.: Adjustment of the biodiesel free fatty acids content by means of adsorption. Energy Fuels 27, 6763–6772 (2013)CrossRef
Zurück zum Zitat Manuale, D.L., Greco, E., Clementz, A., Torres, G.C., Vera, C.R., Yori, J.C.: Biodiesel purification in one single stage using silica as adsorbent. Chem. Eng. J. 256, 372–379 (2014)CrossRef Manuale, D.L., Greco, E., Clementz, A., Torres, G.C., Vera, C.R., Yori, J.C.: Biodiesel purification in one single stage using silica as adsorbent. Chem. Eng. J. 256, 372–379 (2014)CrossRef
Zurück zum Zitat Mazzieri, V.A., Vera, C.R., Yori, J.C.: Adsorptive properties of silica gel for biodiesel refining. Energy Fuels 22, 4281–4284 (2008)CrossRef Mazzieri, V.A., Vera, C.R., Yori, J.C.: Adsorptive properties of silica gel for biodiesel refining. Energy Fuels 22, 4281–4284 (2008)CrossRef
Zurück zum Zitat Mestre, A.S., Pires, R.A., Aroso, I., Fernandes, E.M., Pinto, M.L., Reis, R.L., Andrade, M.A., Pires, J., Silva, S.P., Carvalho, A.P.: Activated carbons prepared from industrial pre-treated cork: sustainable adsorbents for pharmaceutical compounds removal. Chem. Eng. J. 53, 408–417 (2014)CrossRef Mestre, A.S., Pires, R.A., Aroso, I., Fernandes, E.M., Pinto, M.L., Reis, R.L., Andrade, M.A., Pires, J., Silva, S.P., Carvalho, A.P.: Activated carbons prepared from industrial pre-treated cork: sustainable adsorbents for pharmaceutical compounds removal. Chem. Eng. J. 53, 408–417 (2014)CrossRef
Zurück zum Zitat Miyashita, K., Takagi, T.: Study on the oxidative rate and prooxidant activity of free fatty acids. JAOCS 63, 1380–1384 (1986)CrossRef Miyashita, K., Takagi, T.: Study on the oxidative rate and prooxidant activity of free fatty acids. JAOCS 63, 1380–1384 (1986)CrossRef
Zurück zum Zitat Moreno-Castilla, C., Ferro-García, M.A., Joly, J.P., Bautista-Toledo, I., Carrasco-Marín, F., Rivera-Utrilla, J.: Activated carbon surface modifications by nitric acid, hydrogen peroxide, and ammonium peroxydisulfate treatments. Langmuir 11, 4386–4392 (1995)CrossRef Moreno-Castilla, C., Ferro-García, M.A., Joly, J.P., Bautista-Toledo, I., Carrasco-Marín, F., Rivera-Utrilla, J.: Activated carbon surface modifications by nitric acid, hydrogen peroxide, and ammonium peroxydisulfate treatments. Langmuir 11, 4386–4392 (1995)CrossRef
Zurück zum Zitat Noureddini, H., Teoh, B.C., Clements, L.D.: Viscosities of vegetable oils and fatty acids. JAOCS 69, 1189–1191 (1992)CrossRef Noureddini, H., Teoh, B.C., Clements, L.D.: Viscosities of vegetable oils and fatty acids. JAOCS 69, 1189–1191 (1992)CrossRef
Zurück zum Zitat OCS Official Method Ca 5a-40. Revised 2017. Free fatty acids in crude and refined fats and oils OCS Official Method Ca 5a-40. Revised 2017. Free fatty acids in crude and refined fats and oils
Zurück zum Zitat Perraud, J.J.: Method for removing impurities from solvent extraction solutions US Patent Appl. 2002, 20040014589 A1 Perraud, J.J.: Method for removing impurities from solvent extraction solutions US Patent Appl. 2002, 20040014589 A1
Zurück zum Zitat Proctor, A., Palaniappan, S.: Adsorption of soy oil free fatty acids by rice hull ash. JAOCS 67, 15–17 (1990)CrossRef Proctor, A., Palaniappan, S.: Adsorption of soy oil free fatty acids by rice hull ash. JAOCS 67, 15–17 (1990)CrossRef
Zurück zum Zitat Proctor, A., Adhikari, C., Blyholder, G.D.: Mode of oleic acid adsorption on rice hull ash cristobalite. JAOCS 72, 331–335 (1995)CrossRef Proctor, A., Adhikari, C., Blyholder, G.D.: Mode of oleic acid adsorption on rice hull ash cristobalite. JAOCS 72, 331–335 (1995)CrossRef
Zurück zum Zitat Rajniak, P.: Analysis of a one-component sorption in a single adsorbent particle by the orthogonal collocation method. IV. One-point collocation method and linear driving-force approximation. Chem. Pap. 39, 447–457 (1985) Rajniak, P.: Analysis of a one-component sorption in a single adsorbent particle by the orthogonal collocation method. IV. One-point collocation method and linear driving-force approximation. Chem. Pap. 39, 447–457 (1985)
Zurück zum Zitat Rivera-Utrilla, J., Gómez-Pacheco, C.V., Sánchez-Polo, M., López-Peñalver, J.J., Ocampo-Pérez, R.: Tetracycline removal from water by adsorption/bioadsorption on activated carbons and sludge-derived adsorbents. J. Environ. Manag. 131, 16–24 (2013)CrossRef Rivera-Utrilla, J., Gómez-Pacheco, C.V., Sánchez-Polo, M., López-Peñalver, J.J., Ocampo-Pérez, R.: Tetracycline removal from water by adsorption/bioadsorption on activated carbons and sludge-derived adsorbents. J. Environ. Manag. 131, 16–24 (2013)CrossRef
Zurück zum Zitat Rodrigues, C.E.C., Gonçalves, C.B., Batista, E., Meirelles, A.J.A.: Deacidification of vegetable oils by solvent extraction. Recent Pat. Eng. 1, 95–102 (2007)CrossRef Rodrigues, C.E.C., Gonçalves, C.B., Batista, E., Meirelles, A.J.A.: Deacidification of vegetable oils by solvent extraction. Recent Pat. Eng. 1, 95–102 (2007)CrossRef
Zurück zum Zitat Sato, S., Yoshihara, K., Moriyama, K., Machida, M., Tatsumoto, H.: Influence of activated carbon surface acidity on adsorption of heavy metal ions and aromatics from aqueous solution. Appl. Surf. Sci. 253, 8554–8559 (2007)CrossRef Sato, S., Yoshihara, K., Moriyama, K., Machida, M., Tatsumoto, H.: Influence of activated carbon surface acidity on adsorption of heavy metal ions and aromatics from aqueous solution. Appl. Surf. Sci. 253, 8554–8559 (2007)CrossRef
Zurück zum Zitat Schindler, H.D., Treybal, R.E.: Continuous-phase mass-transfer coefficients for liquid extraction in agitated vessels. AIChE J. 14, 790–797 (1968)CrossRef Schindler, H.D., Treybal, R.E.: Continuous-phase mass-transfer coefficients for liquid extraction in agitated vessels. AIChE J. 14, 790–797 (1968)CrossRef
Zurück zum Zitat Smits, G.: Measurement of the diffusion coefficient of free fatty acid in groundnut oil by the capillary-cell method. JAOCS 53, 122–124 (1976)CrossRef Smits, G.: Measurement of the diffusion coefficient of free fatty acid in groundnut oil by the capillary-cell method. JAOCS 53, 122–124 (1976)CrossRef
Zurück zum Zitat Soriano, N.U., Venditti, R., Argyropoulos, D.S.: Biodiesel synthesis via homogeneous Lewis acid-catalyzed transesterification. Fuel 88, 560–565 (2009)CrossRef Soriano, N.U., Venditti, R., Argyropoulos, D.S.: Biodiesel synthesis via homogeneous Lewis acid-catalyzed transesterification. Fuel 88, 560–565 (2009)CrossRef
Zurück zum Zitat Szymanski, G.S., Karpinski, Z., Biniak, S., Swiatkowski, A.: The effect of the gradual thermal decomposition of surface oxygen species on the chemical and catalytic properties of oxidized activated carbon. Carbon 40, 2627–2639 (2002)CrossRef Szymanski, G.S., Karpinski, Z., Biniak, S., Swiatkowski, A.: The effect of the gradual thermal decomposition of surface oxygen species on the chemical and catalytic properties of oxidized activated carbon. Carbon 40, 2627–2639 (2002)CrossRef
Zurück zum Zitat Taylor, D.R., Ungermann, C.B., Demidowicz, Z.: The adsorption of fatty acids from vegetable oils with zeolites and bleaching clay/zeolite blends. J. Am. Oil Chem. Soc. 61, 1372–1379 (1984)CrossRef Taylor, D.R., Ungermann, C.B., Demidowicz, Z.: The adsorption of fatty acids from vegetable oils with zeolites and bleaching clay/zeolite blends. J. Am. Oil Chem. Soc. 61, 1372–1379 (1984)CrossRef
Zurück zum Zitat Tseng, R.L.: Mesopore control of high surface area NaOH-activated carbon. J. Colloid Interface Sci. 303, 494–502 (2006)CrossRefPubMed Tseng, R.L.: Mesopore control of high surface area NaOH-activated carbon. J. Colloid Interface Sci. 303, 494–502 (2006)CrossRefPubMed
Zurück zum Zitat Topallar, H., Bayrak, Y.: Investigation of adsorption isotherms of myristic, palmitic and stearic scids on rice hull ash. Turk. J. Chem. 23, 193–198 (1999) Topallar, H., Bayrak, Y.: Investigation of adsorption isotherms of myristic, palmitic and stearic scids on rice hull ash. Turk. J. Chem. 23, 193–198 (1999)
Zurück zum Zitat Türkay, S., Civelekoglu, H.: Deacidification of sulfur olive oil, I. Single-stage liquid-liquid extraction of miscella with ethyl alcohol. JAOCS 68, 83–86 (1991)CrossRef Türkay, S., Civelekoglu, H.: Deacidification of sulfur olive oil, I. Single-stage liquid-liquid extraction of miscella with ethyl alcohol. JAOCS 68, 83–86 (1991)CrossRef
Zurück zum Zitat Vera, C.R., Busto, M., Yori, J.C., Torres, G.C., Manuale, D.L., Canavese, S., Sepúlveda, J.: Adsorption in Biodiesel Refining: A Review. InTech Open Access Publishers, Croatia (2011) Vera, C.R., Busto, M., Yori, J.C., Torres, G.C., Manuale, D.L., Canavese, S., Sepúlveda, J.: Adsorption in Biodiesel Refining: A Review. InTech Open Access Publishers, Croatia (2011)
Zurück zum Zitat Wakao, N., Funazkri, T.: Effect of fluid dispersion coefficients on particle-to-fluid mass transfer coefficients in packed beds: correlation of Sherwood numbers. Chem. Eng. Sci. 33, 1375–1384 (1978)CrossRef Wakao, N., Funazkri, T.: Effect of fluid dispersion coefficients on particle-to-fluid mass transfer coefficients in packed beds: correlation of Sherwood numbers. Chem. Eng. Sci. 33, 1375–1384 (1978)CrossRef
Zurück zum Zitat Wiśniewska, M., Nowicki, P., Nosal-Wiercińska, A., Pietrzak, R., Szewczuk-Karpisz, K., Ostolska, I., Sternik, D.: Adsorption of poly(acrylic acid) on the surface of microporous activated carbon obtained from cherry stones. Colloids Surf. A 514, 137–145 (2017)CrossRef Wiśniewska, M., Nowicki, P., Nosal-Wiercińska, A., Pietrzak, R., Szewczuk-Karpisz, K., Ostolska, I., Sternik, D.: Adsorption of poly(acrylic acid) on the surface of microporous activated carbon obtained from cherry stones. Colloids Surf. A 514, 137–145 (2017)CrossRef
Zurück zum Zitat Zondlo, J.W., Velez, M.L.: Development of surface area and pore structure for activation of anthracite coal. Fuel Process. Technol. 88, 369–374 (2007)CrossRef Zondlo, J.W., Velez, M.L.: Development of surface area and pore structure for activation of anthracite coal. Fuel Process. Technol. 88, 369–374 (2007)CrossRef
Metadaten
Titel
Deacidification of vegetable oil by extraction with solvent recovery
verfasst von
Mariana Busto
Carlos Román Vera
Publikationsdatum
09.05.2019
Verlag
Springer US
Erschienen in
Adsorption / Ausgabe 7/2019
Print ISSN: 0929-5607
Elektronische ISSN: 1572-8757
DOI
https://doi.org/10.1007/s10450-019-00102-9

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