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Table 7 Effect of change in substrate concentration on adsorption process

From: Interaction of enzymes with lignocellulosic materials: causes, mechanism and influencing factors

Enzymes

Substrates

Comments

References

Cellic CTec2

Sorghum

Increased with increase in conc

Nghiem and Toht (2019)

T. longibrachiatum LC-M4

Sorghum

Increased with increase in conc

Dong et al. (2019)

Cellulase T. reesei

Cellulose

Increased with increase in conc

Tervasmäki et al. (2017)

Celluclast 1.5 L, Cellic CTec2 and Cellic CTec3

SO2-pretreated poplar and lodgepole pine

Increased with increase in conc

Mok (2015)

Cellulase T. reesei

Cellulose (Avicel PH 101)

Increased with increase in conc

Baig et al. (2016e)

Cellulase T. reesei

Lignin (Protobind)

Increased with increase in conc

Baig et al. (2016e)

Accellerase 1000 T. reesei

Cellulose

APC

SPC

SPR

Increased with increase in conc

Zheng et al. (2013a)

CBH I EG 2

Cellulose

Increased with increase in conc

Shi et al. (2016)

Spezyme-CP

Cellulose

Increased with increase in conc

Kumar and Wyman (2008)

GC-220

Cellulose

Increased with increase in conc

Kumar and Wyman (2008)

Cellulase

Avicel

Decreased with increase in conc

Eckard et al. (2013)

Cellulases

Pretreated forest wood

Increased with increase in conc

Matsakas et al. (2018)

Celluclast 1.5 L T. reesei

Corn stover and corn fiber

Increased with increase in conc

Arantes and Saddler (2011)

Cellic CTec 2

High CrI cellulose

Increased with increase in conc

Li et al. (2018)

  1. APC: dilute acid-pretreated corn stover; SPC: steam explosion-pretreated corn stover; CrI: Crystallinity Index SPR: steam explosion pretreated rice straw; Cellic CTec2: cellulase and hemicellulase complex; T. reesei: Trichoderma reesei; T. longibrachiatum: Trichoderma longibrachiatum