Jiménez Callejón, María José Author

Synthesis of 2-monoacylglycerols rich in polyunsaturated fatty acids by ethanolysis of fish oil catalyzed by 1,3 specific lipases

  • Muñío M.
  • Esteban L.
  • Robles A.
  • Hita E.
  • Jiménez M.
  • González P.
  • Camacho B.
  • Molina E.
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Process Biochemistry - 1/10/2008

10.1016/j.procbio.2008.05.006

Cite count: 48 (Web of Science) 52 (Scopus)

Synthesis of 2-monoacylglycerols and structured triacylglycerols rich in polyunsaturated fatty acids by enzyme catalyzed reactions

  • Rodríguez A.
  • Esteban L.
  • Martín L.
  • Jiménez M.
  • Hita E.
  • Castillo B.
  • González P.
  • Robles A.
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ENZYME AND MICROBIAL TECHNOLOGY - 10/8/2012

10.1016/j.enzmictec.2012.05.006

Cite count: 32 (Web of Science) 33 (Scopus)

Synthesis of 2-monoacylglycerols (2-MAG) by enzymatic alcoholysis of fish oils using different reactor types

  • Esteban L.
  • Muñío M.
  • Robles A.
  • Hita E.
  • Jiménez M.
  • González P.
  • Camacho B.
  • Molina E.
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BIOCHEMICAL ENGINEERING JOURNAL - 15/5/2009

10.1016/j.bej.2009.01.004

Cite count: 54 (Web of Science) 59 (Scopus)

Supercritical fluid extraction and pressurized liquid extraction processes applied to eicosapentaenoic acid-rich polar lipid recovery from the microalga Nannochloropsis sp

  • Jiménez Callejón M.J.
  • Robles Medina A.
  • Macías Sánchez M.D.
  • González Moreno P.A.
  • Navarro López E.
  • Esteban Cerdán L.
  • Molina Grima E.
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Algal Research-Biomass Biofuels and Bioproducts - 1/1/2022

10.1016/j.algal.2021.102586

Cite count: 19 (Web of Science) 7 (Scopus)

Simultaneous extraction and fractionation of lipids from the microalga Nannochloropsis sp. for the production of EPA-rich polar lipid concentrates

  • Jiménez Callejón M.
  • Robles Medina A.
  • González Moreno P.
  • Esteban Cerdán L.
  • Orta Guillén S.
  • Molina Grima E.

JOURNAL OF APPLIED PHYCOLOGY - 1/1/2020

10.1007/s10811-020-02037-z

Cite count: 23 (Web of Science) 8 (Scopus)
Open Access

Production of triacylglycerols rich in palmitic acid at sn-2 position by lipase-catalyzed acidolysis

  • Jiménez M.
  • Esteban L.
  • Robles A.
  • Hita E.
  • González P.
  • Muñío M.
  • Molina E.
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Biochemical Engineering Journal - 1/9/2010

10.1016/j.bej.2010.06.015

Cite count: 32 (Web of Science) 30 (Scopus)
Open Access

Production of triacylglycerols rich in palmitic acid at position 2 as intermediates for the synthesis of human milk fat substitutes by enzymatic acidolysis

  • Jiménez M.
  • Esteban L.
  • Robles A.
  • Hita E.
  • González P.
  • Muñío M.
  • Molina E.
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Process Biochemistry - 1/3/2010

10.1016/j.procbio.2009.10.018

Cite count: 30 (Web of Science) 21 (Scopus)

Production of structured triacylglycerols (STAG) rich in docosahexaenoic acid (DHA) in position 2 by acidolysis of tuna oil catalyzed by lipases

  • Hita E.
  • Robles A.
  • Camacho B.
  • Ramírez A.
  • Esteban L.
  • Jiménez M.
  • Muñío M.
  • González P.
  • Molina E.
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Process Biochemistry - 1/3/2007

10.1016/j.procbio.2006.09.023

Cite count: 65 (Web of Science) 64 (Scopus)

Production of structured triacylglycerols rich in palmitic acid at sn-2 position and oleic acid at sn-1,3 positions as human milk fat substitutes by enzymatic acidolysis

  • Esteban L.
  • Jiménez M.
  • Hita E.
  • González P.
  • Martín L.
  • Robles A.

BIOCHEMICAL ENGINEERING JOURNAL - 15/3/2011

10.1016/j.bej.2011.01.009

Cite count: 55 (Web of Science) 53 (Scopus)
Open Access

Production of structured triacylglycerols by acidolysis catalyzed by lipases immobilized in a packed bed reactor

  • Hita E.
  • Robles A.
  • Camacho B.
  • González P.
  • Esteban L.
  • Jiménez M.
  • Muñío M.
  • Molina E.
... View more Collapse

BIOCHEMICAL ENGINEERING JOURNAL - 1/11/2009

10.1016/j.bej.2009.05.015

Cite count: 56 (Web of Science) 54 (Scopus)

This author has no books, chapters or theses.

This author has no conferences.

This author has no patents.

This author has no reports or other types of publications.

Scopus: 15

Web of Science: 18

Scopus: 16

Web of Science: 19

Last data update: 4/27/24 5:10 AM
Next scheduled update: 5/4/24 3:00 AM