Jiménez Callejón, María José Author

Obtaining eicosapentaenoic acid-enriched polar lipids from microalga<i> Nannochloropsis</i> sp. by lipase-catalysed hydrolysis

  • Navarro López E.
  • Jiménez Callejón M.J.
  • Macías Sánchez M.D.
  • González Moreno P.A.
  • Robles Medina A.

ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS - 1/4/2023

10.1016/j.algal.2023.103073

Cite count: 3 (Web of Science)

Obtaining EPA-rich polar lipids from microalga <i>Nannochloropsis</i> sp. by silica-gel chromatography using non-toxic solvents

  • Sánchez, M.D.M.
  • Callejón, M.J.J.
  • Medina, A.R.
  • Moreno, P.A.G.
  • López, E.N.
  • Cerdán, L.E.
  • Grima, E.M.
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BIOMASS CONVERSION AND BIOREFINERY - 1/11/2023

10.1007/s13399-022-02520-2

Cite count: 2 (Web of Science) 1 (Scopus)

Supercritical fluid extraction and pressurized liquid extraction processes applied to eicosapentaenoic acid-rich polar lipid recovery from the microalga <i>Nannochloropsis</i> 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.
... View more Collapse

ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS - 1/1/2022

10.1016/j.algal.2021.102586

Cite count: 23 (Web of Science) 7 (Scopus)

Optimization of the enzymatic synthesis of structured triacylglycerols rich in docosahexaenoic acid at <i>sn</i>-2 position by acidolysis of <i>Aurantiochytrium limacinum</i> SR21 oil and caprylic acid using response surface methodology

  • Delgado Naranjo J.M.
  • Jiménez Callejón M.J.
  • Peñuela Vásquez M.
  • Rios L.A.
  • Robles Medina A.

JOURNAL OF APPLIED PHYCOLOGY - 1/8/2021

10.1007/s10811-021-02464-6

Cite count: 10 (Web of Science) 1 (Scopus)

Simultaneous extraction and fractionation of lipids from the microalga <i>Nannochloropsis</i> 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 - 1/4/2020

10.1007/s10811-020-02037-z

Cite count: 25 (Web of Science) 8 (Scopus)

Obtaining highly pure EPA-rich lipids from dry and wet <i>Nannochloropsis gaditana</i> microalgal biomass using ethanol, hexane and acetone

  • Jiménez Callejón M.
  • Robles Medina A.
  • Macías Sánchez M.
  • Esteban Cerdán L.
  • González Moreno P.
  • Navarro López E.
  • Hita Peña E.
  • Grima E.
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ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS - 1/1/2020

10.1016/j.algal.2019.101729

Cite count: 13 (Web of Science) 5 (Scopus)

Optimization of biodiesel production from wet microalgal biomass by direct transesterification using the surface response methodology

  • Macías-Sánchez M.
  • Robles-Medina A.
  • Jiménez-Callejón M.
  • Hita-Peña E.
  • Estéban-Cerdán L.
  • González-Moreno P.
  • Navarro-López E.
  • Molina-Grima E.
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RENEWABLE ENERGY - 1/12/2018

10.1016/j.renene.2018.06.001

Cite count: 22 (Web of Science) 19 (Scopus)
Open Access

Enzymatic production of biodiesel from <i>Nannochloropsis gaditana</i> lipids: Influence of operational variables and polar lipid content

  • Navarro López E.
  • Robles Medina A.
  • González Moreno P.
  • Jiménez Callejón M.
  • Esteban Cerdán L.
  • Martín Valverde L.
  • Castillo López B.
  • Molina Grima E.
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BIORESOURCE TECHNOLOGY - 1/7/2015

10.1016/j.biortech.2015.03.126

Cite count: 34 (Web of Science) 32 (Scopus)

Biodiesel production from wet microalgal biomass by direct transesterification

  • Macías-Sánchez M.
  • Robles-Medina A.
  • Hita-Peña E.
  • Jiménez-Callejón M.
  • Estéban-Cerdán L.
  • González-Moreno P.
  • Molina-Grima E.
... View more Collapse

FUEL - 15/6/2015

10.1016/j.fuel.2015.01.106

Cite count: 69 (Web of Science) 61 (Scopus)

Extraction of free fatty acids from wet <i>Nannochloropsis</i> <i>gaditana</i> biomass for biodiesel production

  • Hita Peña E.
  • Robles Medina A.
  • Jiménez Callejón M.
  • Macías Sánchez M.
  • Esteban Cerdán L.
  • González Moreno P.
  • Molina Grima E.
... View more Collapse

RENEWABLE ENERGY - 1/3/2015

10.1016/j.renene.2014.10.016

Cite count: 36 (Web of Science) 35 (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: 20

Last data update: 11/30/24 5:39 AM
Next scheduled update: 12/7/24 3:00 AM