dr inż. Milena Marycz | Politechnika Gdańska

Treść strony

dr inż. Milena Marycz

Kontakt:

email:
milena.marycz@pg.edu.pl
strona:
https://mostwiedzy.pl/milena-marycz,824369-1

Zajmowane stanowiska:

Adiunkt

miejsce pracy:
Katedra Inżynierii Materiałów Funkcjonalnych WETI
Budynek B Wydziału Elektroniki, Telekomunikacji i Informatyki, NE 313
dr inż. Milena Marycz

Publikacje:

  1. Publikacja
    • R. Shinde
    • A. Hackula
    • M. Marycz
    • A. Bose
    • R. O'Shea
    • S. Barth
    • J. D. Murphy
    • D. M. Wall

    - TRENDS IN BIOTECHNOLOGY - Rok 2025

    Anaerobic digestion (AD) is an important biotechnology for treating biodegrad- able residues and producing bioenergy, yet its full potential remains untapped. We investigate a two-phase AD system for biorefinery applications, producing valuable bioproducts, such as volatile fatty acids (VFAs) and biogas, from grass feedstock. We introduce a demand-driven operational approach to match mar- ket conditions, while minimising water...

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  2. Publikacja

    - CHEMOSPHERE - Rok 2023

    The present study systematically evaluated the potential of Candida subhashii, Fusarium solani and their consortium for the abatement of n-hexane, trichloroethylene (TCE), toluene and α-pinene in biofilters (BFs) and biotrickling filters (BTFs). Three 3.2 L BFs packed with polyurethane foam and operated at a gas residence time of 77 s with an air mixture of hydrophobic volatile organic compounds (VOCs) were inoculated with C. subhashii,...

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  3. Publikacja

    - Rok 2023

    The growing importance placed on air quality by environmental regulations and public opinion necessitate the minimization and removal of volatile organic compound emissions (VOCs), including odours. The removal of hydrophobic VOCs from the air by biological methods remains a major technical challenge (despite its importance in the shift to green engineering). A potential solution to this challenge is the use of fungi in biofiltration....

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  4. The physical/chemical abatement of gas pollutants creates many technical problems, is costly and entails significant environmental impacts. Biological purification of off-gases is a cheap and ecologically safe way of neutralization of gas pollutants. Despite the recent advances, the main technological challenge nowadays is the purification of volatile organic compounds (VOCs) of hydrophobic character due to their low solubility...

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  5. Publikacja

    - CHEMOSPHERE - Rok 2022

    This work systematically compared the potential of a conventional fungal biofilter (BF) and a fungal biotrickling filter (BTF) for the abatement of a mixture of hydrophobic volatile organic compounds (VOCs). Candida subhashii was herein used for the first time, to the best of the author's knowledge, to remove n-hexane, trichloroethylene, toluene and α-pinene under aerobic conditions. C. subhashii immobilized on polyurethane foam...

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