PAPERmaking! Vol7 Nr2 2021

6976

Cellulose (2020) 27:6961–6976

Sampson WW (2008) Unified theory for structural statistics of flocculated and random fibre networks. J Pulp Pap Sci 34:91–98 Schmied FJ, Teichert C, Kappel L, Hirn U, Bauer W, Schennach R (2013) What holds paper together: nanometre scale exploration of bonding between paper fibres. Sci Rep 2013:3 Shahzad A (2012) Hemp fiber and its composites—a review. J Compos Mater 46(8):973–986 Skogberg A, Ma¨ki A-J, Metta¨nen M, Lahtinen P, Kallio P (2017) Cellulose nanofiber alignment using evaporation-induced droplet—casting and cell alignment on aligned nanocel- lulose surfaces. Biomacromol 18:3936–3953 Sormunen T, Ketola A, Miettinen A, Parkkonen J, Retulainen E (2019) X-ray nanotomography of individual pulp fibre

bonds reveals the effect of wall thickness on contact area. Sci Rep 9:4258 Subramanian G, Picu CR (2011) Mechanics of three-dimen- sional, nonbonded random fiber networks. Phys Rev E 83:056120 Turpeinen T, Lappalainen T, Kentta¨ E, Torvinen K (2018) Detection of iron and iron-cobalt labeled cellulose nanofibrils using ICP-OES and X l CT. Nord Pulp Pap Res J 33(4):610–617

Publisher’s Note Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.

123

Made with FlippingBook Online newsletter maker