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Published in: Cellulose 18/2019

27-09-2019 | Original Research

Cationic starch and polyacrylamides for alkenyl succinic anhydride (ASA) emulsification for sizing of cellulosic fibers

Authors: Kumar Ashish, Nishi K. Bhardwaj, Surendra P. Singh

Published in: Cellulose | Issue 18/2019

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Abstract

Paper is composed of polysaccharides mainly cellulose and carbohydrates. The hydroxyl groups present in cellulose react with various substances added to fibrous slurry. Treating the cellulosic fibers chemically, which tends to develop the resistance to aqueous liquid absorption, is known as internal sizing of paper. The main internal alkaline sizing chemicals are alkyl ketene dimer and alkenyl succinic anhydride (ASA). In situ emulsification of ASA using cationic starch (CS) is conventionally practiced because of the low shelf life of ASA emulsion. In the present communication polyacrylamides (PAMs) have been used as an alternative chemical to cationic starch at very low dosages than cationic starch and varying ratios of ASA to polyacrylamides to stabilize the ASA droplets. The colloidal stability of ASA emulsions was measured in terms of particle size distribution, sizing performance, pH and percent hydrolysis of ASA with the passage of time. The ASA emulsions prepared with PAMs at very low dosage were observed with superior colloidal stability and sizing behaviour than the CS stabilized emulsion.

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Literature
go back to reference Bajpai P, Sharma A, Satyajit D, Raghvan V (2008) Optimization of ASA emulsion and impact of fillers on ASA sizing. IPPTA J 20:99–104 Bajpai P, Sharma A, Satyajit D, Raghvan V (2008) Optimization of ASA emulsion and impact of fillers on ASA sizing. IPPTA J 20:99–104
go back to reference Chen GCI, Woodward TW (1986) Optimization of alkenyl succinic anhydride emulsification and sizing. Tappi J 69:95–97 Chen GCI, Woodward TW (1986) Optimization of alkenyl succinic anhydride emulsification and sizing. Tappi J 69:95–97
go back to reference Chen Q, Ni Y, He Z (2012a) Substitution of high-yield-pulp for hardwood bleached kraft pulp in paper production and its effect on alkenyl succinic anhydride sizing. BioResources 7:1462–1473 Chen Q, Ni Y, He Z (2012a) Substitution of high-yield-pulp for hardwood bleached kraft pulp in paper production and its effect on alkenyl succinic anhydride sizing. BioResources 7:1462–1473
go back to reference Chen Q, Ni Y, He Z (2012b) Using cationic polymers to improve alkenyl succinic anhydride (ASA) sizing efficiency in high-yield pulp containing furnish. BioResources 7:3948–3959 Chen Q, Ni Y, He Z (2012b) Using cationic polymers to improve alkenyl succinic anhydride (ASA) sizing efficiency in high-yield pulp containing furnish. BioResources 7:3948–3959
go back to reference Davison RW (1986) A general mechanism of internal sizing. In: Proceedings of TAPPI, Papermakers Conference. TAPPI Press, Atlanta, pp 17–27 Davison RW (1986) A general mechanism of internal sizing. In: Proceedings of TAPPI, Papermakers Conference. TAPPI Press, Atlanta, pp 17–27
go back to reference Ding P, Liu W, Zhao Z (2011) Roles of short amine in preparation and sizing performance of partly hydrolyzed ASA emulsion stabilized by laponite particles. Colloids Surfaces Physicochem Eng Aspects 384:150–156CrossRef Ding P, Liu W, Zhao Z (2011) Roles of short amine in preparation and sizing performance of partly hydrolyzed ASA emulsion stabilized by laponite particles. Colloids Surfaces Physicochem Eng Aspects 384:150–156CrossRef
go back to reference Dosite DR, Nowicki RJ (1998) Alkenyl succinic anhydride size containing a natural gum for paper products. WO Pat 9951816 Dosite DR, Nowicki RJ (1998) Alkenyl succinic anhydride size containing a natural gum for paper products. WO Pat 9951816
go back to reference Farley EE, Anderson G, Favors KD (2002) Emulsification of alkenyl succinic anhydride size for paper and emulsifiers for use in their manufacture. WO Pat. 2002035003 Farley EE, Anderson G, Favors KD (2002) Emulsification of alkenyl succinic anhydride size for paper and emulsifiers for use in their manufacture. WO Pat. 2002035003
go back to reference Finar IL (1986) Organic chemistry: the fundamental principles, 6th edn. English Language Book Society, Longman, pp 1375–1376 Finar IL (1986) Organic chemistry: the fundamental principles, 6th edn. English Language Book Society, Longman, pp 1375–1376
go back to reference Gess JM, Rende DS (2005) The sizing of paper, 3rd edn. Tappi Press, Atlanta Gess JM, Rende DS (2005) The sizing of paper, 3rd edn. Tappi Press, Atlanta
go back to reference Glover DE (1997) Alkenyl succinic anhydride sizing emulsions containing low and high molecular weight cationic polymers. WO Pat. 9749865 Glover DE (1997) Alkenyl succinic anhydride sizing emulsions containing low and high molecular weight cationic polymers. WO Pat. 9749865
go back to reference Gong B, Liu W, Chen X, Tan H, Zhang X, Wang H, Song Z (2017) Stabilizing alkenyl succinic anhydride (ASA) emulsions with starch nanocrystals and fluorescent carbon dots. Carbohyd Polym 165:13–21CrossRef Gong B, Liu W, Chen X, Tan H, Zhang X, Wang H, Song Z (2017) Stabilizing alkenyl succinic anhydride (ASA) emulsions with starch nanocrystals and fluorescent carbon dots. Carbohyd Polym 165:13–21CrossRef
go back to reference Hatanaka S, Takahashi Y, Roberts JC (1991) Sizing with saponified alkenyl succinic acid. Tappi J 74:177–181 Hatanaka S, Takahashi Y, Roberts JC (1991) Sizing with saponified alkenyl succinic acid. Tappi J 74:177–181
go back to reference Hubbe M (2007) Paper’s resistance to wetting: a review of internal sizing chemicals and their effects. BioResources 2:106–145 Hubbe M (2007) Paper’s resistance to wetting: a review of internal sizing chemicals and their effects. BioResources 2:106–145
go back to reference Ibrahim MM, Mobarak F, El-Din EIS, Ebaid AEHE, Youssef MA (2009) Modified Egyptian talc as internal sizing agent for papermaking. Carbohyd Polym 75:130–134CrossRef Ibrahim MM, Mobarak F, El-Din EIS, Ebaid AEHE, Youssef MA (2009) Modified Egyptian talc as internal sizing agent for papermaking. Carbohyd Polym 75:130–134CrossRef
go back to reference Isogai A, Morimoto S (2004) Sizing performance and hydrolysis resistance of alkyl oleate succinic anhydrides. Tappi J 3:8–12 Isogai A, Morimoto S (2004) Sizing performance and hydrolysis resistance of alkyl oleate succinic anhydrides. Tappi J 3:8–12
go back to reference Jaycock MJ, Meredew CJ, Roberts JC (2000) Paper sizing composition containing alkenyl succinic anhydride with long storage life and good workability. WO Pat. 2000020686 AI Jaycock MJ, Meredew CJ, Roberts JC (2000) Paper sizing composition containing alkenyl succinic anhydride with long storage life and good workability. WO Pat. 2000020686 AI
go back to reference Jun GYLDM (2002) Effect of cationic starch on the emulsification of ASA. China Pulp Paper 5:008 Jun GYLDM (2002) Effect of cationic starch on the emulsification of ASA. China Pulp Paper 5:008
go back to reference Khurana C, Sharma P, Pandey OP, Chudasama B (2016) Synergistic effect of metal nanoparticles on the antimicrobial activities of antibiotics against biorecycling microbes. J Mater Sci Technol 32(6):524–532CrossRef Khurana C, Sharma P, Pandey OP, Chudasama B (2016) Synergistic effect of metal nanoparticles on the antimicrobial activities of antibiotics against biorecycling microbes. J Mater Sci Technol 32(6):524–532CrossRef
go back to reference Kumar P, Choonara YE, Toit LCD, Modi G, Naidoo D, Pillay V (2012) Novel high-viscosity polyacrylamidated chitosan for neural tissue engineering: fabrication of anisotropic neurodurable scaffold via molecular disposition of persulfate-mediated polymer slicing and complexation. Int J Mol Sci 13:13966–13984CrossRef Kumar P, Choonara YE, Toit LCD, Modi G, Naidoo D, Pillay V (2012) Novel high-viscosity polyacrylamidated chitosan for neural tissue engineering: fabrication of anisotropic neurodurable scaffold via molecular disposition of persulfate-mediated polymer slicing and complexation. Int J Mol Sci 13:13966–13984CrossRef
go back to reference Kumar A, Bhardwaj NK, Singh SP (2018) Sizing performance of alkenyl succinic anhydride (ASA) emulsion stabilized by polyvinylamine macromolecules. Colloids Surf A 539:132–139CrossRef Kumar A, Bhardwaj NK, Singh SP (2018) Sizing performance of alkenyl succinic anhydride (ASA) emulsion stabilized by polyvinylamine macromolecules. Colloids Surf A 539:132–139CrossRef
go back to reference Lauzon RV (2001) Sizing emulsion stabilized with cationic colloidal coacervate. WO Pat. 2000034583 Lauzon RV (2001) Sizing emulsion stabilized with cationic colloidal coacervate. WO Pat. 2000034583
go back to reference Lee HL, Kim JS, Youn HJ (2004) Improvement of ASA sizing efficiency using hydrophobically modified and acid-hydrolyzed starches. Tappi J 3:3–6 Lee HL, Kim JS, Youn HJ (2004) Improvement of ASA sizing efficiency using hydrophobically modified and acid-hydrolyzed starches. Tappi J 3:3–6
go back to reference Lu P, Liu W, Wang H, Wang Z (2013) Using chitosan as sizing promoter of ASA emulsion stabilized by montmorillonite. BioResources 8:4923–4936 Lu P, Liu W, Wang H, Wang Z (2013) Using chitosan as sizing promoter of ASA emulsion stabilized by montmorillonite. BioResources 8:4923–4936
go back to reference Martorana E, Belle J, Kleemann S (2008) ASA optimisation–control of particle size, stability, and hydrolysis. Prof Papermak 5:34–42 Martorana E, Belle J, Kleemann S (2008) ASA optimisation–control of particle size, stability, and hydrolysis. Prof Papermak 5:34–42
go back to reference Merisalo JP (2009) Optimization of ASA emulsion in internal sizing of paper and board, M.tech. Thesis, University of Helsinki Merisalo JP (2009) Optimization of ASA emulsion in internal sizing of paper and board, M.tech. Thesis, University of Helsinki
go back to reference Pavia DL, Lampman GM, Kriz GS, Vyvyan JR (2010) Spectroscopy, 3rd edn. Brooks/Cole, Boston Pavia DL, Lampman GM, Kriz GS, Vyvyan JR (2010) Spectroscopy, 3rd edn. Brooks/Cole, Boston
go back to reference Qian K, Liu W, Zhang J, Li H, Wang H, Wang Z (2013) Using urea to improve stability, sizing performance and hydrolysis resistance of ASA emulsion stabilized by laponite. Colloids Surf A 421:125–134CrossRef Qian K, Liu W, Zhang J, Li H, Wang H, Wang Z (2013) Using urea to improve stability, sizing performance and hydrolysis resistance of ASA emulsion stabilized by laponite. Colloids Surf A 421:125–134CrossRef
go back to reference Scott WE (1996) Principles of wet end chemistry. Tappi Press, Atlanta Scott WE (1996) Principles of wet end chemistry. Tappi Press, Atlanta
go back to reference Sharma A, Kakkar S, Chauhan VS, Chakrabarti SK, Varadhan R (2012) Efficacy of ASA sizing with agro-residue and recycled pulps using different fillers. IPPTA J 24(3):93–98 Sharma A, Kakkar S, Chauhan VS, Chakrabarti SK, Varadhan R (2012) Efficacy of ASA sizing with agro-residue and recycled pulps using different fillers. IPPTA J 24(3):93–98
go back to reference Sharma A, Chauhan VS, Kakkar S, Chakrabarti SK, Varadhan R (2013) Control of degree of sizing through measurement of contact angle and surface energy. IPPTA J 22(2):143–147 Sharma A, Chauhan VS, Kakkar S, Chakrabarti SK, Varadhan R (2013) Control of degree of sizing through measurement of contact angle and surface energy. IPPTA J 22(2):143–147
go back to reference Silverstein RM, Bassler GC, Morrill TC (1991) Spectrometric identification of organic compounds, 5th edn. Wiley, p 123 Silverstein RM, Bassler GC, Morrill TC (1991) Spectrometric identification of organic compounds, 5th edn. Wiley, p 123
go back to reference Sun B, Hou Q, Liu Z, He Z, Ni Y (2014) Stability and efficiency improvement of ASA in internal sizing of cellulosic paper by using cationically modified cellulose nanocrystals. Cellulose 21:2879–2887CrossRef Sun B, Hou Q, Liu Z, He Z, Ni Y (2014) Stability and efficiency improvement of ASA in internal sizing of cellulosic paper by using cationically modified cellulose nanocrystals. Cellulose 21:2879–2887CrossRef
go back to reference Tan H, Liu W, Yu D, Li H, Hubbe MA, Gong B, Zhang W, Wang H, Li G (2014) ASA-in-water emulsions stabilized by laponite nanoparticles modified with tetramethylammonium chloride. Chem Eng Sci 116:682–693CrossRef Tan H, Liu W, Yu D, Li H, Hubbe MA, Gong B, Zhang W, Wang H, Li G (2014) ASA-in-water emulsions stabilized by laponite nanoparticles modified with tetramethylammonium chloride. Chem Eng Sci 116:682–693CrossRef
go back to reference Wang DQ, Hu KT (2005) The hydrolysis stability of ASA and its effect on sizing. China Pulp Paper 24:14–17 Wang DQ, Hu KT (2005) The hydrolysis stability of ASA and its effect on sizing. China Pulp Paper 24:14–17
go back to reference Wang H, Liu W, Zhou X, Li H, Qian K (2013) Stabilization of ASA-in-water emulsions by Laponite modified with alanine. Colloids Surf A 436:294–301CrossRef Wang H, Liu W, Zhou X, Li H, Qian K (2013) Stabilization of ASA-in-water emulsions by Laponite modified with alanine. Colloids Surf A 436:294–301CrossRef
go back to reference Wasser RB (1997) Synthetic cationic polymers as promoters for alkenyl succinic anhydride (ASA) sizing. WO Pat. 9705330 Wasser RB (1997) Synthetic cationic polymers as promoters for alkenyl succinic anhydride (ASA) sizing. WO Pat. 9705330
go back to reference Yu D, Liu W (2009) Preparation and sizing performance of inorganic particle stabilized ASA emulsion. China Pulp Paper 28:26–29 Yu D, Liu W (2009) Preparation and sizing performance of inorganic particle stabilized ASA emulsion. China Pulp Paper 28:26–29
go back to reference Zhang W, Liu W, Li H, Hubbe MA, Yu D, Li G, Wang H (2014) Improving stability and sizing performance of alkenylsuccinic anhydride (ASA) emulsion by using melamine-modified Laponite particles as emulsion stabilizer. Ind Eng Chem Res 53:12330–12338CrossRef Zhang W, Liu W, Li H, Hubbe MA, Yu D, Li G, Wang H (2014) Improving stability and sizing performance of alkenylsuccinic anhydride (ASA) emulsion by using melamine-modified Laponite particles as emulsion stabilizer. Ind Eng Chem Res 53:12330–12338CrossRef
go back to reference Zhao Z, Liu W (2010) Preparation of nano-TiO2 stabilized ASA emulsion and its sizing behavior on BCTMP. In: Sun R, Fu S (eds) Research progress in paper industry and biorefinery. South China University of Technology Press, Guangzhou, pp 1645–1648 Zhao Z, Liu W (2010) Preparation of nano-TiO2 stabilized ASA emulsion and its sizing behavior on BCTMP. In: Sun R, Fu S (eds) Research progress in paper industry and biorefinery. South China University of Technology Press, Guangzhou, pp 1645–1648
go back to reference Zhao Z, Liu W, Liu Z, Ding P, Li H (2013) Phase inversion of TiO2 nanoparticle stabilized emulsions of alkenyl succinic anhydride. Chem Eng Sci 87:246–257CrossRef Zhao Z, Liu W, Liu Z, Ding P, Li H (2013) Phase inversion of TiO2 nanoparticle stabilized emulsions of alkenyl succinic anhydride. Chem Eng Sci 87:246–257CrossRef
Metadata
Title
Cationic starch and polyacrylamides for alkenyl succinic anhydride (ASA) emulsification for sizing of cellulosic fibers
Authors
Kumar Ashish
Nishi K. Bhardwaj
Surendra P. Singh
Publication date
27-09-2019
Publisher
Springer Netherlands
Published in
Cellulose / Issue 18/2019
Print ISSN: 0969-0239
Electronic ISSN: 1572-882X
DOI
https://doi.org/10.1007/s10570-019-02758-6

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