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Manuel Ángel Iglesias-Campos

Biographic Data

ID1768757
NAMEManuel Ángel Iglesias-Campos
GIVEN NAMESManuel Ángel
FAMILY NAMEIglesias-Campos
SIGNATUREIGLESIAS-CAMPOS M Á
VERIFIEDNo
TOTAL WORKS5
TOTAL CITATIONS1
AUTHOR COUNT5
EDITOR COUNT0
FIRST PUBLICATION YEAR2014
LATEST PUBLICATION YEAR2026
H-INDEX1
  • Microblasting of powdered lignocellulosic particles: Cleaning of a wooden joint cover of a medieval coffered ceiling

    Open Access•Anna Nualart-Torroja, Àfrica Pitarch Martí et al.•ARTICLE•Journal of Cultural Heritage•2026

  • Comparative evaluation of fossil bone bioconsolidation via two endogenous bacterial strains: Bacillus subtilis and Sporosarcina pasteurii

    Open Access•Silvia Marín-Ortega, Manuel Ángel Iglesias-Campos et al.•ARTICLE•Journal of Cultural Heritage•2025•References: 5

    This research evaluates microbially induced calcium carbonate precipitation (MICP) generated by means of two endogenous bacterial strains inhabiting Titanochelon richardi (formerly Cheirogaster richardi ) fossil bone remains; in this case, Bacillus subtilis and Sporosarcina pasteurii. Both bacterial strains were inoculated on different samples to study their possible effectiveness and to verify whether an improvement in the cohesion and mechanica…

  • Evaluation of carbonated fossil bone consolidation by induction of calcium hydroxide nanoparticles in a Miocene Cheirogaster richardi specimen

    Open Access•Silvia Marín-Ortega, Manuel Ángel Iglesias-Campos et al.•ARTICLE•Journal of Cultural Heritage•2024•References: 51

    Nanolime consolidation improves cohesion and hardness on carbonate fossil bones. • Nanolime consolidation improves penetration and cohesion on carbonate fossil bones. • Treatment generates almost negligible physicochemical and aesthetic changes. • Newly created calcium carbonate is compatible with carbonate fossil bone substrate. In this research, calcium hydroxide nanoparticles, as a carbonate consolidation method, have been evaluated on carbona…

  • Surface cleaning of intaglio prints with microblasting powdered cellulose and erasing: Treatment effects on inks and support texture

    Open Access•Manuel Ángel Iglesias-Campos, Manuel Ángel Iglesias Campos et al.•ARTICLE•Journal of Cultural Heritage•2015•References: 12

  • First experiments for the use of microblasting technique with powdered cellulose as a new tool for dry cleaning artworks on paper

    Open Access•Manuel Ángel Iglesias-Campos, Manuel Ángel Iglesias Campos et al.•ARTICLE•Journal of Cultural Heritage•2014•Cited by: 1•References: 6

  • First experiments for the use of microblasting technique with powdered cellulose as a new tool for dry cleaning artworks on paper

    Open Access•Manuel Ángel Iglesias-Campos, Manuel Ángel Iglesias Campos et al.•ARTICLE•Journal of Cultural Heritage•2014•Cited by: 1•References: 6

  • First experiments for the use of microblasting technique with powdered cellulose as a new tool for dry cleaning artworks on paper

    Open Access•Manuel Ángel Iglesias-Campos, Manuel Ángel Iglesias Campos et al.•ARTICLE•Journal of Cultural Heritage•2014•Cited by: 1•References: 6

  • Surface cleaning of intaglio prints with microblasting powdered cellulose and erasing: Treatment effects on inks and support texture

    Open Access•Manuel Ángel Iglesias-Campos, Manuel Ángel Iglesias Campos et al.•ARTICLE•Journal of Cultural Heritage•2015•References: 12

  • Evaluation of carbonated fossil bone consolidation by induction of calcium hydroxide nanoparticles in a Miocene Cheirogaster richardi specimen

    Open Access•Silvia Marín-Ortega, Manuel Ángel Iglesias-Campos et al.•ARTICLE•Journal of Cultural Heritage•2024•References: 51

    Nanolime consolidation improves cohesion and hardness on carbonate fossil bones. • Nanolime consolidation improves penetration and cohesion on carbonate fossil bones. • Treatment generates almost negligible physicochemical and aesthetic changes. • Newly created calcium carbonate is compatible with carbonate fossil bone substrate. In this research, calcium hydroxide nanoparticles, as a carbonate consolidation method, have been evaluated on carbona…

  • Comparative evaluation of fossil bone bioconsolidation via two endogenous bacterial strains: Bacillus subtilis and Sporosarcina pasteurii

    Open Access•Silvia Marín-Ortega, Manuel Ángel Iglesias-Campos et al.•ARTICLE•Journal of Cultural Heritage•2025•References: 5

    This research evaluates microbially induced calcium carbonate precipitation (MICP) generated by means of two endogenous bacterial strains inhabiting Titanochelon richardi (formerly Cheirogaster richardi ) fossil bone remains; in this case, Bacillus subtilis and Sporosarcina pasteurii. Both bacterial strains were inoculated on different samples to study their possible effectiveness and to verify whether an improvement in the cohesion and mechanica…

  • Microblasting of powdered lignocellulosic particles: Cleaning of a wooden joint cover of a medieval coffered ceiling

    Open Access•Anna Nualart-Torroja, Àfrica Pitarch Martí et al.•ARTICLE•Journal of Cultural Heritage•2026

Building materials and conservation (4 works) · Engineering (3 works) · Materials Science (3 works) · Calcium Carbonate Crystallization and Inhibition (2 works) · Cellulose (2 works) · Chemical Engineering (2 works) · Computer Science (2 works) · Cultural Heritage Materials Analysis (2 works) · Dirt (2 works) · Dry cleaning (2 works)

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