Results 111 to 120 of about 631 (176)
A Bio-Inspired Approach to Improve the Toughness of Brittle Bast Fibre-Reinforced Composites Using Cellulose Acetate Foils. [PDF]
Graupner N, Müssig J.
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Research on the Preparation of Supercapacitor Separators with High Wettability and Excellent Temperature Adaptability Through In Situ Deposition of Nano-Barium Sulfate on Regenerated Cellulose. [PDF]
Li H, Li J, Zhao C, Zhao F.
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Toxicological impacts of microplastic fibers: A review assessing risk to human and aquatic health. [PDF]
O'Connor A +3 more
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Upcycling industrial peach waste to produce dissolving pulp. [PDF]
Plakantonaki S +6 more
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Cellulose-based sensors for decentralized monitoring in precision agriculture. [PDF]
Rayappa MK +3 more
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Multifunctional thermoregulating and water repellent cellulosic textile.
Madani Z +8 more
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Polymer Degradation and Stability, 1999
This paper describes the work on the reaction between the solvent spun cellulose fibre, Lyocell, and N-hydroxymethyl phosphono proprionamide (Pyrovatex CP). The reaction between this latter compound and cotton is a well known method of producing a flame retardant fibre. However, it has been shown that, when used on Lyocell, only half the amount of this
M.E Hall, A.R Horrocks, Helena Seddon
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This paper describes the work on the reaction between the solvent spun cellulose fibre, Lyocell, and N-hydroxymethyl phosphono proprionamide (Pyrovatex CP). The reaction between this latter compound and cotton is a well known method of producing a flame retardant fibre. However, it has been shown that, when used on Lyocell, only half the amount of this
M.E Hall, A.R Horrocks, Helena Seddon
openaire +1 more source
Journal of Applied Polymer Science, 2007
AbstractThe mechanical properties and morphologies of polyblends of lyocell with three different fillers are compared. Poly(vinyl alcohol) (PVA), poly(vinyl alcohol‐co‐ethylene) (EVOH), and poly(acrylic acid‐co‐maleic acid) (PAM) were used as fillers in blends with lyocell produced through solution blending.
Jin‐Hae Chang +2 more
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AbstractThe mechanical properties and morphologies of polyblends of lyocell with three different fillers are compared. Poly(vinyl alcohol) (PVA), poly(vinyl alcohol‐co‐ethylene) (EVOH), and poly(acrylic acid‐co‐maleic acid) (PAM) were used as fillers in blends with lyocell produced through solution blending.
Jin‐Hae Chang +2 more
openaire +1 more source

