The
efficient
conversion
of
cellulose
to
high
value-added
products
is
important
for
the
utilization
biomass.
Achieving
hydrolysis
and
timely
separation
essential
target.
Herein,
a
modified
sulfonated
graphene
oxide/polydopamine
deposited
polyethersulfone
(mGO(SO3H)-PDA/PES)
membrane
reactor,
combining
in
same
unit
effect
effect,
was
prepared
by
suction
filtration
subsequent
polymerization
adhesion
mGO(SO3H)
on
surface.
structure
PES
deposition
PDA
regulated
sure
that
small
molecules
can
pass
through
membrane,
while
could
not.
As
result,
mGO(SO3H)-PDA/PES
realized
under
cross-flow
circulation
mode
at
0.1
MPa,
avoiding
further
degradation
reducing
sugar
products.
yields
total
(TRS)
glucose
separated
hydrolysate
reached
93.2%
85.5%,
respectively.
This
strategy
provides
potential
guidance
cellulose.
The
efficient
conversion
of
cellulose
to
high
value-added
products
is
important
for
the
utilization
biomass.
Achieving
hydrolysis
and
timely
separation
essential
target.
Herein,
a
modified
sulfonated
graphene
oxide/polydopamine
deposited
polyethersulfone
(mGO(SO3H)-PDA/PES)
membrane
reactor,
combining
in
same
unit
effect
effect,
was
prepared
by
suction
filtration
subsequent
polymerization
adhesion
mGO(SO3H)
on
surface.
structure
PES
deposition
PDA
regulated
sure
that
small
molecules
can
pass
through
membrane,
while
could
not.
As
result,
mGO(SO3H)-PDA/PES
realized
under
cross-flow
circulation
mode
at
0.1
MPa,
avoiding
further
degradation
reducing
sugar
products.
yields
total
(TRS)
glucose
separated
hydrolysate
reached
93.2%
85.5%,
respectively.
This
strategy
provides
potential
guidance
cellulose.