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Laine J (2007) General aspects of papermaking chemistry. In: Ale´n R (ed) Papermaking chemistry, 2nd edn. Gummerus oy, Jyva¨skyla¨, pp 28–53 Lakshminarayanan R, Valiyaveettil S, Luan Loy G (2003) Selective nucleation of calcium carbonate polymorphs: role of surface functionalization and poly(vinyl alcohol) additive. Cryst Growth Des 3(6):953–958. https://doi.org/ 10.1021/cg034022j Leskela¨ M (1998) Optical properties. In: Niskanen K (ed) Paper physics. Gummerus Oy, Jyva¨skyla¨, pp 117–137 Matula J, Ra¨sa¨nen J, Tahkola K (2018) In-line PCC technology cleans up circulation water from dissolved materials, metals and bio based microorganisms resulting to clean process and high runnability. In: PaperCon 2018. Char- lotte, North Carolina, April 15–18 Mohamadzadeh-Saghavaz K, Resalati H, Ghasemian A (2014) Cellulose-precipitated calcium carbonate composites and their effect on paper properties. Chem pap 68(6):774–778. https://doi.org/10.2478/s11696-013-0513-7 Mosbye J, Laine J (2002) The charge and chemical composition of fines in mechanical pulp. Nord Pulp Pap Res J 17(3):352–356. https://doi.org/10.3183/npprj-2002-17-03- p352-356 Odabas N, Henniges U, Potthast A, Rosenau T (2016) Cellulosic fines: properties and effects. Prog Mater Sci 83:574–594. https://doi.org/10.1016/j.pmatsci.2016.07.006 Park Y, Rawat P, Ford E (2017) Role of Polymerized Micelles on the Calcium Carbonate Mineralization of Nanofibers. Ind Eng Chem Res 56:8241–8250. https://doi.org/10.1021/ acs.iecr.7b00902 Rantanen J (2016) The manufacturing potential of micro and nanofibrillated cellulose composite papers Ph.D. Disser- tation (Tech.), Aalto University Rantanen J, Dimic-Misic K, Kuusisto J, Maloney TC (2015) The effect of micro and nanofibrillated cellulose water uptake on high filler content composite paper properties and fur- nish dewatering. Cellulose 22:4003–4015. https://doi.org/ 10.1007/s10570-015-0777-x Retulainen E, Niskanen K, Nilsen N (1998) Fibers and bonds. In: Niskanen K (ed) Paper physics. Gummerus Oy, Jyva¨skyla¨, pp 55–83 Schmidt JA (2010) Electronic spectroscopy of lignins. In: Hei- ther C, Dimmel DR, Schmidt JA (eds) Lignin and lignans: advances in chemistry. CRC Press, Miami, pp 49–102 Seo BS, Ahn JH, Lee HL (2017) Upgrading waste paper by in- situ calcium carbonate formation. J Clean Prod

155(1):212–217. https://doi.org/10.1016/j.jclepro.2016.09. 003 Shen J, Song Z, Qian X, Liu W (2009) Modification of paper- making grade fillers: a brief review. BioResources 4(3):1190–1209 Silenius P (2002) Improving the combinations of critical prop- erties and process parameters of printing and writing papers and paperboards by new paper-filling methods. Dissertation PhD (Tech.), Helsinki University of Technology Sjostrom E (1989) The origin of charge on cellulosic fibers, Nord. Pulp Paper Res J 4(2):90–93. https://doi.org/10. 3183/npprj-1989-04-02-p090-093 Stephens CJ, Kimy Y-Y, Evans SD, Meldrum FC, Christenson HK (2011) Early stages of crystallization of calcium car- bonate revealed in picoliter droplets. J Am Chem Soc 133:5210–5213. https://doi.org/10.1021/ja200309m Stoica-Guzun A, Stroescu M, Jinga S, Jipa I, Dobre T, Dobre L (2012) Ultrasound influence upon calcium carbonate pre- cipitation on bacterial cellulose membranes. Ultrason Sonochem 19:909–915. https://doi.org/10.1016/j.ultsonch. 2011.12.002 Subramanian R (2008) Engineering fine paper by utilising the structural elements of the raw materials. Ph.D. Dissertation (Tech.), Helsinki University of Technology Suhas, Carrott PJM, Ribeiro Carrott MML (2007) Lignin – from natural adsorbent to activated carbon: a review. Biore- source Technol 98:2301–2312. https://doi.org/10.1016/j. biortech.2006.08.008 Sundberg A, Holmbom B (2004) Fines in spruce TMP, BTMP and CTMP - chemical composition and sorption of man- nans, Nord. Pulp Pap Res J 19(2):176–182. https://doi.org/ 10.3183/npprj-2004-19-02-p176-182 Tang Y, Zhang F, Cao Z, Jing W, Chen Y (2012) Crystallization of CaCO3 in the presence of sulfate and additives: exper- imental and molecular dynamics simulation studies. J Colloid Interf Sci 337(1):430–437. https://doi.org/10. 1016/j.jcis.2012.02.069 Torre M, Rodrigues AR, Saura-Calixto F (1992) Study of the interactions of calcium Ions with lignin, cellulose, and pectin. J Aric Food Chem 40:1762–1766. https://doi.org/ 10.1021/jf00022a007

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