Jin L, Li W, Xu Q, Sun Q (2015a) Amino-functionalized nanocrystalline cellulose as an adsorbent
for anionic dyes. Cellul 22(4):2443–2456
Jin L, Sun Q, Xu Q, Xu Y (2015b) Adsorptive removal of anionic dyes from aqueous solutions
using microgel based on nanocellulose and polyvinylamine. Bioresour Technol 197:348–355
Jodeh S, Hamed O, Melhem A, Salghi R, Jodeh D, Azzaoui K, Benmassaoud Y, Murtada K (2018)
Magnetic nanocellulose from olive industry solid waste for the effective removal of methylene
blue from wastewater. Environ Sci Pollut Res 25(22):22060–22074
Kandhola G, Djioleu A, Rajan K, Labbé N, Sakon J, Carrier DJ, Kim JW (2020) Maximizing
production of cellulose nanocrystals and nanofibers from pre-extracted loblolly pine kraft pulp:
a response surface approach. Bioresource Bioprocess 7:1–16
Karim Z, Afrin S, Husain Q, Danish R (2017) Necessity of enzymatic hydrolysis for production and
functionalization of nanocelluloses. Crit Rev Biotechnol 37(3):355–370
Khoathane MC, Sadiku ER, Agwuncha CS (2015) Surface modification of natural fiber composites
and their potential applications. Surface Modification of Biopolymers; John Wiley & Sons, Inc.,
Hoboken, pp 370–400
Kim PJ, Kim K, Pol VG (2019) A comparative study of cellulose derived structured carbons on the
electrochemical behavior of lithium metal-based batteries. Energ Storage Mater 19:179–185
Klein M, Poverenov E (2020) Natural biopolymer-based hydrogels for use in food and agriculture. J
Sci Food Agric 100(6):2337–2347
Korhonen JT, Kettunen M, Ras RH, Ikkala O (2011) Hydrophobic nanocellulose aerogels as
floating, sustainable, reusable, and recyclable oil absorbents. ACS Appl Mater Interfaces 3
(6):1813–1816
Kumar AK, Sharma S (2017) Recent updates on different methods of pretreatment of lignocellulosic feedstocks: a review. Bioresource Bioprocess 4(1):7
Lasrado D, Ahankari S, Kar K (2020) Nanocellulose-based polymer composites for energy
applications—a review. J Appl Polym Sci 137(27):48959
Lebogang L, Bosigo R, Lefatshe K, Muiva C (2019) Ag 3 PO 4 /nanocellulose composite for effective
sunlight driven photodegradation of organic dyes in wastewater. Mater Chem Phys 236:121756
Leung AC, Hrapovic S, Lam E, Liu Y, Male KB, Mahmoud KA, Luong JH (2011) Characteristics
and properties of carboxylated cellulose nanocrystals prepared from a novel one-step procedure.
Small 7(3):302–305
Lin N, Dufresne A (2014) Nanocellulose in biomedicine: current status and future prospect. Eur
Polym J 59:302–325
Liu Y, Liu L, Wang K, Zhang H, Yuan Y, Wei H, Wang X, Duan Y, Zhou L, Zhang J (2020)
Modified ammonium persulfate oxidations for efficient preparation of carboxylated cellulose
nanocrystals. Carbohydr Polym 229:115572
Lombardo S, Thielemans W (2018) Thermodynamics of the interactions of positively charged
cellulose nanocrystals with molecules bearing different amounts of carboxylate anions. Phys
Chem Chem Phys 20(26):17637–17647
Luo Y, Liu M, Chen Y, Wang T, Zhang W (2019) Preparation and regeneration of iron-modified
nanofibres for low-concentration phosphorus-containing wastewater treatment. R Soc Open Sci
6(9):190764
Maatar W, Boufi S (2017) Microporous cationic nanofibrillar cellulose aerogel as promising
adsorbent of acid dyes. Cellul 24(2):1001–1015
Mahfoudhi N, Boufi S (2017) Nanocellulose as a novel nanostructured adsorbent for environmental
remediation: a review. Cellul 24(3):1171–1197
Mahmood H, Moniruzzaman M, Iqbal T, Khan MJ (2019) Recent advances in the pretreatment of
lignocellulosic biomass for biofuels and value-added products. Curr Opinion Green & Sustainab
Chem 20:18–24
Mahmud MM, Perveen A, Jahan RA, Matin MA, Wong SY, Li X, Arafat MT (2019) Preparation of
different polymorphs of cellulose from different acid hydrolysis medium. Int J Biol Macromol
130:969–976
4 Harnessing the Sustainable Bioresource, Cellulose at the Nanoscale for. . .
87
for anionic dyes. Cellul 22(4):2443–2456
Jin L, Sun Q, Xu Q, Xu Y (2015b) Adsorptive removal of anionic dyes from aqueous solutions
using microgel based on nanocellulose and polyvinylamine. Bioresour Technol 197:348–355
Jodeh S, Hamed O, Melhem A, Salghi R, Jodeh D, Azzaoui K, Benmassaoud Y, Murtada K (2018)
Magnetic nanocellulose from olive industry solid waste for the effective removal of methylene
blue from wastewater. Environ Sci Pollut Res 25(22):22060–22074
Kandhola G, Djioleu A, Rajan K, Labbé N, Sakon J, Carrier DJ, Kim JW (2020) Maximizing
production of cellulose nanocrystals and nanofibers from pre-extracted loblolly pine kraft pulp:
a response surface approach. Bioresource Bioprocess 7:1–16
Karim Z, Afrin S, Husain Q, Danish R (2017) Necessity of enzymatic hydrolysis for production and
functionalization of nanocelluloses. Crit Rev Biotechnol 37(3):355–370
Khoathane MC, Sadiku ER, Agwuncha CS (2015) Surface modification of natural fiber composites
and their potential applications. Surface Modification of Biopolymers; John Wiley & Sons, Inc.,
Hoboken, pp 370–400
Kim PJ, Kim K, Pol VG (2019) A comparative study of cellulose derived structured carbons on the
electrochemical behavior of lithium metal-based batteries. Energ Storage Mater 19:179–185
Klein M, Poverenov E (2020) Natural biopolymer-based hydrogels for use in food and agriculture. J
Sci Food Agric 100(6):2337–2347
Korhonen JT, Kettunen M, Ras RH, Ikkala O (2011) Hydrophobic nanocellulose aerogels as
floating, sustainable, reusable, and recyclable oil absorbents. ACS Appl Mater Interfaces 3
(6):1813–1816
Kumar AK, Sharma S (2017) Recent updates on different methods of pretreatment of lignocellulosic feedstocks: a review. Bioresource Bioprocess 4(1):7
Lasrado D, Ahankari S, Kar K (2020) Nanocellulose-based polymer composites for energy
applications—a review. J Appl Polym Sci 137(27):48959
Lebogang L, Bosigo R, Lefatshe K, Muiva C (2019) Ag 3 PO 4 /nanocellulose composite for effective
sunlight driven photodegradation of organic dyes in wastewater. Mater Chem Phys 236:121756
Leung AC, Hrapovic S, Lam E, Liu Y, Male KB, Mahmoud KA, Luong JH (2011) Characteristics
and properties of carboxylated cellulose nanocrystals prepared from a novel one-step procedure.
Small 7(3):302–305
Lin N, Dufresne A (2014) Nanocellulose in biomedicine: current status and future prospect. Eur
Polym J 59:302–325
Liu Y, Liu L, Wang K, Zhang H, Yuan Y, Wei H, Wang X, Duan Y, Zhou L, Zhang J (2020)
Modified ammonium persulfate oxidations for efficient preparation of carboxylated cellulose
nanocrystals. Carbohydr Polym 229:115572
Lombardo S, Thielemans W (2018) Thermodynamics of the interactions of positively charged
cellulose nanocrystals with molecules bearing different amounts of carboxylate anions. Phys
Chem Chem Phys 20(26):17637–17647
Luo Y, Liu M, Chen Y, Wang T, Zhang W (2019) Preparation and regeneration of iron-modified
nanofibres for low-concentration phosphorus-containing wastewater treatment. R Soc Open Sci
6(9):190764
Maatar W, Boufi S (2017) Microporous cationic nanofibrillar cellulose aerogel as promising
adsorbent of acid dyes. Cellul 24(2):1001–1015
Mahfoudhi N, Boufi S (2017) Nanocellulose as a novel nanostructured adsorbent for environmental
remediation: a review. Cellul 24(3):1171–1197
Mahmood H, Moniruzzaman M, Iqbal T, Khan MJ (2019) Recent advances in the pretreatment of
lignocellulosic biomass for biofuels and value-added products. Curr Opinion Green & Sustainab
Chem 20:18–24
Mahmud MM, Perveen A, Jahan RA, Matin MA, Wong SY, Li X, Arafat MT (2019) Preparation of
different polymorphs of cellulose from different acid hydrolysis medium. Int J Biol Macromol
130:969–976
4 Harnessing the Sustainable Bioresource, Cellulose at the Nanoscale for. . .
87
