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EN
Biological methods of removal of synthetic dyes are cost effective and environmentally safe but still need improvement. The preliminary studies were focused on possibility of application of the freshwater algae Mougeotia sp. for the removal of synthetic dyes belonging to different chemical groups. Decolorization of water solutions of six dyes from four chemical groups were studied: azo – Evans blue (EB) and Congo red (CR); triphenylmethane (TPM) – brilliant green (BG) and crystal violet (CV); fluorone – bengal rose (BR) and anthraquinone – remazol brilliant blue R (RB). Dyes were used at three concentrations 0.005, 0.025 and 0.05 g/dm3. The best results of dyes removal were reached in case of both triphenylmethane dyes (BG and CV) and fluorone BR for all used dyes concentrations (97–100 %). Increase of azo dyes concentration was connected with the decrease of the removal efficiency (CR – 68–100 %; EB – 37–87 %). In case of the antraquinone RB the inverse effect was observed and the best removal results were reached at higher dye concentrations. Preliminary results point out the possibility of use Mougeotia sp. in processes of synthetic dyes removal, but further studies are required.
EN
Commonly used synthetic dyes cause serious problems with their efficient removal from sewage. The bioaugmentation of sewage treatment systems with highly decolorizing bacteria may be a solution. The aim of the study was the screening of bacteria with high ability to remove synthetic dyes (brilliant green (BG), crystal violet (CV), erythrosine (Er). The bacteria were isolated from municipal sewage, compost and rotten beech wood. Mineral and nutrient solid growth media supplemented with dyes (BG or EB) at a concentration 0.1 gL-1 were used. At second stage of screening the liquid nutrient broth supplemented with one of dye (BG, CV or Er at concentration 0.1 gL-1) was used. The contents of dyes in samples (after 96 h) were measured spectrophotometrically. The largest number of decolorizers were obtained from wastewater, then from compost and the rotten wood. In the case of BG and CV even small differences in the structure of the molecules affect the results of dyes removal. The structurally simpler BG was definitely better removed than CV. The results of the removal of Er were worse than BG but better than CV. Bacteria isolated at mineral medium removed dyes with higher efficiency.
PL
Spośród licznych metod usuwania często toksycznych barwników zalecane są metody biologiczne, gdyż nie powodują powstawania kolejnej grupy substancji uciążliwych, przy czym szczególne znaczenie w procesach dekoloryzacji ścieków barwnych mają grzyby. Przeprowadzono badania nad określeniem potencjalnych zdolności 24 wyizolowanych szczepów grzybów (MW11, MW13, MW31, MW34, MW36, MW44, MW45, MW48, MW49, MW60, MW66, MW73, MW79, MW84, MW86, MW103, MW113, MW132, MW133, MW140, MW141, MW143, MW170 i MW171) do usuwania wybranych barwników syntetycznych. W badaniach wykorzystano barwniki fluorenowe (erytrozyna i róż bengalski), trójfenylometanowe (zieleń brylantowa i fiolet gencjany) oraz dwuazowy błękit Evansa. Eksperymenty przeprowadzono na dwóch podłożach YEPG i MSB, w postaci płynnej i stałej. Wyniki badań potwierdziły zdolność szczepów MW11, MW48, MW 60, MW66, MW103, MW113 i MW49 do dekoloryzacji barwników ze skutecznością sięgającą w wielu przypadkach ponad 90%. Stwierdzono, że szczególnie aktywne na obu podłożach były szczepy MW113 i MW49. Wykazano również, że wydajność procesu dekoloryzacji zależała nie tyle od grupy, do której należał dany barwnik, ile od struktury i składu samego barwnika oraz formy podłoża wykorzystanego w badaniach i zastosowanego szczepu. Potwierdziło to konieczność stosowania zestawu różnorodnych testów w badaniach przesiewowych, gdyż wyniki jednego testu mogą nie dać pełnego obrazu potencjalnych zdolności testowanych organizmów.
EN
Of the numerous methods that are in use for reducing colorants (many of the dyes are toxic), preference should be given to biological methods, as they do not produce additional groups of troublesome pollutants. In recent times much consideration has been focused on fungal decolorization of dye effluents. The aim of this work was to evaluate the potential ability of 24 isolated fungal strains (MW11, MW13, MW31, MW34, MW36, MW44, MW45, MW48, MW49, MW60, MW66, MW73, MW79, MW84, MW86, MW103, MW113, MW132, MW133, MW140, MW141, MW143, MW170 and MW171) to decolorize the synthetic dyes chosen. Use was made of fluorone dyes (erythrosine and Bengal rose), triphenylmethane dyes (brilliant green and gentian violet), the diazo Evans blue dye, and the following two media, YEPG and MSB (both liquid and solid). The experimental results have corroborated the ability of the strains to decolorize the dyes tested, in many instances with an efficiency higher than 90%. The strains MW113 and MW49 were found to be particularly active regardless of the medium applied. The study has revealed that the efficiency of the decolorization process depends not so much on the group into which the dye has been classified, as on the specific structure and composition of the dye, as well as on the form of the medium and on the strain used in the experiment. This finding substantiates the necessity of using a set of different tests even in the screening experiments, because the results of a single test may not be sufficient for a complete description of the potential abilities of the organisms tested.
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