Biological removal of pharmaceutical compounds using white-rot fungi with concomitant FAME production of the residual biomass

被引:49
作者
Vasiliadou, I. A. [1 ]
Sanchez-Vazquez, R. [1 ]
Molina, R. [1 ]
Martinez, F. [1 ]
Melero, J. A. [1 ]
Bautista, L. F. [1 ]
Iglesias, J. [1 ]
Morales, G. [1 ]
机构
[1] Rey Juan Carlos Univ, Sch Expt Sci & Technol ESCET, C Tulipan S-N, Madrid 28933, Spain
关键词
PPCPs; Trametes versicolor; Ganoderma lucidum; In-situ transesterification treatment; Heterogeneous catalyst; Zr-SBA-15; PERSONAL CARE PRODUCTS; WASTE-WATER TREATMENT; MUNICIPAL SEWAGE-SLUDGE; BIODIESEL PRODUCTION; TRAMETES-VERSICOLOR; PHANEROCHAETE-CHRYSOSPORIUM; MANGANESE PEROXIDASE; ENVIRONMENTAL RISK; LIPID EXTRACTION; SOLID-WASTE;
D O I
10.1016/j.jenvman.2016.05.035
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The efficiency of two white-rot fungi (WRF), Trametes versicolor and Ganoderma lucidum, to eliminate thirteen pharmaceutical pollutants with concomitant biodiesel production from the accumulating lipid content after treatment, was examined. The removal efficiency was studied using both individual and combined strains. The results of individual and combined strains showed a total removal (100%) of diclofenac (DCF), gemfibrozil (GFZ), ibuprofen (IBP), progesterone (PGT) and ranitidine (RNT). Lower removals were achieved for 4-acetamidoantipyrin (AAA), clofibric acid (ACF), atenolol (AM), caffeine (CFN), carbamazepine (CZP), hydrochlorothiazide (HCT), sulfamethoxazole (SMX) and sulpiride (SPD), although the combination of both strains enhanced the system's efficiency, with removals ranging from 15 to 41%. This increase of the removal efficiency when combining both strains was attributed to the interactions developed between them (i.e., competition). Results from enzymatic and cytochrome P450 examination suggested that both extracellular (laccase, MnP, LiP) and intracellular oxidation mechanisms participate in the biological removal of pharmaceuticals. On the other hand, the "green" potential of the fungal sludge generated during the biological removal process was assessed for biodiesel production by means of one-step direct (in-situ) transformation. This process consists of the simultaneous extraction and conversion of lipids contained in the sludge by catalytic esterification/transesterification using a robust acid heterogeneous Zr-SBA-15 catalyst. This catalytic system provided conversions close to 80% of the saponifiable fraction (including free fatty acids and glycerides) in the presence of high amount of impurities. The overall weight FAME yield, based on the initial dried mass, was close to 30% for both strains. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:228 / 237
页数:10
相关论文
共 50 条
  • [21] Removal of trace organic contaminants by an MBR comprising a mixed culture of bacteria and white-rot fungi
    Nguyen, Luong N.
    Hai, Faisal I.
    Yang, Shufan
    Kang, Jinguo
    Leusch, Frederic D. L.
    Roddick, Felicity
    Price, William E.
    Nghiem, Long D.
    BIORESOURCE TECHNOLOGY, 2013, 148 : 234 - 241
  • [22] Cellulase production by white-rot basidiomycetous fungi: solid-state versus submerged cultivation
    Bentil, Joseph A.
    Thygesen, Anders
    Mensah, Moses
    Lange, Lene
    Meyer, Anne S.
    APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2018, 102 (14) : 5827 - 5839
  • [23] Understanding the role of mediators in the efficiency of advanced oxidation processes using white-rot fungi
    Vasiliadou, I. A.
    Molina, R.
    Pariente, M. I.
    Christoforidis, K. C.
    Martinez, F.
    Melero, J. A.
    CHEMICAL ENGINEERING JOURNAL, 2019, 359 : 1427 - 1435
  • [24] Improvement of lignin-degrading enzymes production from the white-rot fungus (Lentinus strigosus) and its application in synthetic dye removal
    Vaithanomsat, Pilanee
    Chedchant, Jirawate
    Kreetachat, Torpong
    Kosugi, Akihiko
    Apiwatanapiwat, Waraporn
    Thanapase, Warunee
    Chuntranuluck, Sawitri
    Mori, Yutaka
    AFRICAN JOURNAL OF MICROBIOLOGY RESEARCH, 2012, 6 (01): : 137 - 148
  • [25] Evaluation of Laccase Production by Two White-rot Fungi Using Solid-state Fermentation with Different
    An, Qi
    Li, Cong-Sheng
    Yang, Jing
    Chen, Si-Yu
    Ma, Kai-Yue
    Wu, Zhi-Yan
    Bian, Lu-Sen
    Han, Mei-Ling
    BIORESOURCES, 2021, 16 (03) : 5287 - 5300
  • [26] Recalcitrant Compounds Removal in Raw Leachate and Synthetic Effluents Using the White-Rot Fungus Bjerkandera adusta
    Bardi, Alessandra
    Yuan, Qiuyan
    Tigini, Valeria
    Spina, Federica
    Varese, Giovanna Cristina
    Spennati, Francesco
    Becarelli, Simone
    Di Gregorio, Simona
    Petroni, Giulio
    Munz, Giulio
    WATER, 2017, 9 (11):
  • [27] Effects of biological pre-treatment of lignocellulosic waste with white-rot fungi on the stimulation of 14C-phenanthrene catabolism in soils
    Omoni, Victor T.
    Lag-Brotons, Alfonso J.
    Ibeto, Cynthia N.
    Semple, Kirk T.
    INTERNATIONAL BIODETERIORATION & BIODEGRADATION, 2021, 165
  • [28] Can white-rot fungi be a real wastewater treatment alternative for organic micropollutants removal? A review
    Anton Mir-Tutusaus, Josep
    Baccar, Rim
    Caminal, Gloria
    Sarra, Montserrat
    WATER RESEARCH, 2018, 138 : 137 - 151
  • [29] Effect of aromatic compounds on the production of laccase and manganese peroxidase by white-rot basidiomycetes
    Elisashvili, Vladimir
    Kachlishvili, Eva
    Khardziani, Tamar
    Agathos, Spiros N.
    JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2010, 37 (10) : 1091 - 1096
  • [30] Understanding the factors controlling the removal of trace organic contaminants by white-rot fungi and their lignin modifying enzymes: A critical review
    Yang, Shufan
    Hai, Faisal I.
    Nghiem, Long D.
    Price, William E.
    Roddick, Felicity
    Moreira, Maria T.
    Magram, Saleh F.
    BIORESOURCE TECHNOLOGY, 2013, 141 : 97 - 108