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Uporaba meduznega mukusa v procesih dekontaminacije vode
ID Lengar, Živa (Author), ID Stopar, David (Mentor) More about this mentor... This link opens in a new window, ID Rotter, Ana (Comentor)

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Abstract
Globalno segrevanje ozračja ustvarja pogoje, primerne za življenje meduz. Po vsem svetu prihaja do množičnih pojavljanj meduz oziroma tako imenovanega cvetenja. Slednje ima številne negativne vplive na človeka. Meduze povzročajo gospodarsko škodo na področju turizma, ribolova, ribogojstva in mašijo hladilne sisteme jedrskih elektrarn. Zaradi naštetih vzrokov se iščejo novi načini uporabe meduzne biomase. Veliko uporabnost kaže mukus meduz, ki je glikoproteinski polimer. V magistrskem delu smo proučevali mukus meduz Rhizostoma pulmo. Opisali smo njegove lastnosti in preverili možnost uporabe mukusa kot flokulanta v procesih čiščenja z mikroplastiko kontaminirane vode. Preverili smo tudi sposobnost vezave različnih vrst mikroplastike in dejavnikov, ki vplivajo na razgradnjo mukusa. Ugotovili smo, da ima mukus sposobnost vezave delcev polistirena. Ne veže pa delcev polietilena. Vezava delcev je povečala strukturiranost mukusa, kar se je odražalo v povečani viskoznosti. Kemijsko razgrajen mukus ni bil sposoben vezave delcev. Mukus pri naših pogojih gojenja ni bil mikrobno razgradljiv.

Language:Slovenian
Keywords:okoljska biotehnologija, meduze, Rhizostoma pulmo, mukus, mikroplastika
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:BF - Biotechnical Faculty
Publisher:[Ž. Lengar]
Year:2020
PID:20.500.12556/RUL-115397 This link opens in a new window
UDC:606:502:574.583 (043.2)
COBISS.SI-ID:12983555 This link opens in a new window
Publication date in RUL:26.04.2020
Views:1400
Downloads:403
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Secondary language

Language:English
Title:The use of jellyfish mucus in decontamination of water
Abstract:
Global warming creates conditions suitable for jellyfish life. Sudden blooms of great abundance are getting worldwide attention and have many negative effects on humans. They are causing economic damage in the fields of tourism, fishing, aquaculture, and nuclear plants. Jellyfish mucus, a glycoprotein polymer, has many biotechnological applications. In the master thesis we studied mucus of jellyfish Rhizostoma pulma. We described its properties and used mukus as a flocculant in the purification processes of water contaminated with microplastics. We tested its ability to bond to different types of microplastics and studied factors that influenced its degradation. We have found that mucus binds polystyrene particles. However, it did not bind polyethylene particles. Particle binding increased structure of the mucus, which was reflected in increased viscosity. Chemically degraded mucus was not capable of binding polystyrene particles. The mucus was not microbiologically degradable under our growing conditions.

Keywords:environmental biotechnology, jellyfish, Rhizostoma pulmo, mucus, microplastic

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