108. Saxena A, Chauhan PS (2017) Role of various enzymes for deinking paper: a review. Crit Rev
Biotechnol 37:598–612
109. Pathak P, Bhardwaj NK, Singh AK (2011) Optimization of chemical and enzymatic deinking
of photocopier waste paper. BioRes 6:447–463
110. Knutson K, Ragauskas A (2004) Laccase-mediator biobleaching applied to a direct yellow
dyed paper. Biotechnol Prog 20:1893–1896
111. Leduc C, Lanteigne-Roch LM, Daneault C (2011) Use of enzymes in deinked pulp bleaching.
Cell Chem Technol 45:657–663
112. Mohandass C, Raghukumar C (2005) Biological deinking of inkjet-printed paper using Vibrio
alginolyticus and its enzymes. J Ind Microbiol Biotechnol 32:424–429
113. Singh G, Arya SK (2019) Utility of laccase in pulp and paper industry: a progressive step
towards the green technology. Int J Biol Macromol 134:1070–1084
114. Kuhad RC, Mehta G, Gupta R, Sharma KK (2010) Fed batch enzymatic saccharification of
newspaper cellulosics improves the sugar content in the hydrolysates and eventually the
ethanol fermentation by Saccharomyces cerevisiae. Biomass Bioenergy 34:1189–1194
115. Salonen SM (1990) Method for manufacturing paper or cardboard and product containing
cellulase. US patent 4980023
116. Wielen LCV, Panek JC, Pfromm PH (1999) Fracture of toner due to paper swelling. Tappi J
82:115–121
117. Shrinath A, Szewczak JT, Bowen IJ (1991) A review of ink removal techniques in current
deinking technology. Tappi J 74:85–93
118. Chakrabarti S, Verma P, Tripathi S, Barnie S, Varadhan R (2011) Stickies: management and
control. IPPTA J 23:101–107
119. Friberg T (1996) Cost impact of stickies. Prog Pap Recycl 6:70–72
120. Oldack RC, Gustafson FJ (2005) Initiative to promote environmentally benign adhesives
(IPEBA): solving a sticky issue. Prog Pap Recycl 14:6–8
121. Venditti RA, Lucas BE, Huo X, Jameel H, Chang HM (2007) Paper recycling factors affecting
the screening of pressure sensitive adhesives. Prog Pap Recycl 16:18–31
122. Fabry B, Delagoutte T, Serieys L, Schelcher M (2014) Enzyme in paper recycling: effect of
enzyme on stickies. ATIP Association Technique de L’Industrie Papetiere 68:10–18
123. Zhang E, Zhai W, Luo Y, Scott K, Wang X, Diao G (2016) Acclimatization of microbial
consortia to alkaline conditions and enhanced electricity generation. Bioresour Technol
211:736–742
124. Savile CK, Janey JM, Mundorff EC, Moore JC, Tam S, Jarvis WR et al (2010) Biocatalytic
asymmetric synthesis of chiral amines from ketones applied to sitagliptin manufacture.
Science 329:305–309
125. Xie X, Watanabe K, Wojcicki WA, Wang CC, Tang Y (2006) Biosynthesis of lovastatin
analogs with a broadly specific acyltransferase. Chem Biol 13:1161–1169
126. Yazawa K, Numata K (2014) Recent advances in chemoenzymatic peptide syntheses. Molecules 19:13755–13774
127. Narai-Kanayama A, Hanaishi T, Aso K (2012) α-Chymotrypsin-catalyzed synthesis of polyL-cysteine in a frozen aqueous solution. J Biotechnol 157:428–436
128. Uyama H, Fukuoka T, Komatsu I, Watanabe T, Kobayashi S (2002) Protease-catalyzed
regioselective polymerization and copolymerization of glutamic acid diethyl ester.
Biomacromolecules 3:318–323
129. Takahagi W, Seo K, Shibuya T, Takano Y, Fujishima K, Saitoh M et al (2019) Peptide
synthesis under the alkaline hydrothermal conditions on Enceladus. ACS Earth Space Chem
3:2559–2568
130. Baker PJ, Numata K (2012) Chemoenzymatic synthesis of poly(L-alanine) in aqueous environment. Biomacromolecules 13:947–951
131. Chen ST, Chen SY, Hsiao SC, Wang KT (1991) Application of industrial protease “Alcalase”
in peptide synthesis. Biomed Biochim Acta 50:S181–S186
42
G. Mamo and B. Mattiasson
Précédent

- 51/353

Suivant