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Primerjava udobnostnih lastnosti higienskih vložkov za enkratno in večkratno uporabo
ID Kumer, Blažka (Author), ID Zupin, Živa (Mentor) More about this mentor... This link opens in a new window

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Abstract
V vsakdanji rabi se uporablja veliko izdelkov iz sintetičnih polimerov, ki pomembno prispevajo k nastajanju biološko nerazgradljivih odpadkov. Med njimi predstavljajo higienski vložki enega večjih ekoloških izzivov, saj vsebujejo sintetične polimere, kot so polietilen, polipropilen in poliester, ki izboljšujejo funkcionalne lastnosti, vendar otežujejo razgradnjo po uporabi. V raziskavi je bilo analiziranih šest vrst higienskih vložkov: Always, Libresse, Jessa, Jessa Cotton, Jasmin in Racman. Prvih pet predstavljajo vložki za enkratno uporabo, medtem ko je vložek Racman namenjen večkratni uporabi. Vložki za enkratno uporabo imajo netkano vrhnjo plast iz polipropilena, vpojno jedro iz lesne celuloze s supervpojnim polimerom ter neprepustno polietilensko spodnjo plast. Vložek Jessa Cotton ima bombažno vrhnjo plast, vložek Jasmin pa 100 % organski bombaž. Vložek Racman je zasnovan iz treh pletenih slojev: bombaž z elastanom, bambusova viskoza s poliestrom ter spodnja plast iz bombaža in poliestra s PUL-premazom. Rezultati so pokazali izrazite razlike v konstrukciji in funkcionalnih lastnostih. Vložki Jasmin so imeli najvišjo vpojnost (230,4 ml), največjo prepustnost zraka (3,85 l/min) in vodne pare (1202,5 g/m²dan). Vložek Racman je dosegel največjo mehansko odpornost na drgnjenje (brez pretrga po 20.000 ciklih) in najvišjo pretržno trdnost v suhem stanju (1,762 N/mm²). Izračun relativne vpojnosti je pokazal, da največ tekočine zadrži srednja plast (73–98 %), pri vložku Racman pa spodnja in srednja plast prispevata skoraj enak delež. Rezultati potrjujejo, da razmerje med poroznostjo, debelino in sestavo vlaken pomembno vpliva na vpojnost in udobnost vložkov. Nadaljnji razvoj trajnostnih materialov, kot so celulozni kompoziti, bambusova viskoza in biopolimeri, bi lahko izboljšal lastnosti vložkov za večkratno uporabo ter zmanjšal njihov okoljski vpliv.

Language:Slovenian
Keywords:Menstrualni vložki za enkratno uporabo, menstrualni vložki za večkratno uporabo, udobnostne lastnosti, mehanska stabilnost.
Work type:Master's thesis/paper
Organization:NTF - Faculty of Natural Sciences and Engineering
Year:2026
PID:20.500.12556/RUL-179155 This link opens in a new window
Publication date in RUL:06.02.2026
Views:521
Downloads:128
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Secondary language

Language:English
Title:Comparison of comfort properties of disposable and reusable sanitary pads
Abstract:
A large number of products made of synthetic polymers are used in everyday life, significantly contributing to the generation of non-biodegradable waste. Among them, sanitary pads represent one of the major environmental challenges, as they contain synthetic polymers such as polyethylene, polypropylene, and polyester, which improve functional properties but make it harder to biodegrade after use. In this study, six types of sanitary pads were analyzed: Always, Libresse, Jessa, Jessa Cotton, Jasmin, and Racman. The first five are disposable pads, while the Racman pad is designed for multiple use. Disposable pads consist of a nonwoven top sheet made of polypropylene, an absorbent core made of cellulose combined with a superabsorbent polymer, and an impermeable polyethylene back sheet. The Jessa Cotton pad has a cotton top layer, while the Jasmin pad's top layer is made of 100% organic cotton. The Racman pad is constructed of three knitted layers: a cotton-elastane top layer, a bamboo viscose-polyester absorbent layer, and a cotton-polyester bottom layer coated with a PUL (polyurethane laminate) barrier. The results revealed distinct differences in structure and functional performance. The Jasmin pad achieved the highest absorbency (230.4 ml), air permeability (3.85 l/min), and water vapor permeability (1202.5 g/m²·day). The Racman pad demonstrated the highest abrasion resistance (no rupture after 20,000 cycles) and the greatest tensile strength in the dry state (1.762 N/mm²). The analysis of relative absorbency showed that the middle layer retained most of the liquid (73–98%), while in the Racman pad, the middle and bottom layers contributed almost equally. The results confirm that the relationship between porosity, thickness, and fiber composition significantly affects absorbency and comfort. Further development of sustainable materials, such as cellulosic composites, bamboo viscose, and biopolymers, could enhance the comfort and performance of reusable pads while reducing their environmental impact.

Keywords:Disposable menstrual pads, reusable menstrual pads, comfort properties, mechanical stability

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