Recycling corn stalks as an effective biosorbent for heavy metal removal from wastewater: Investigation on the adsorption performance and mechanism
Dezhi Zhao,
No information about this author
Haiping Chen,
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Qingxin Zhao
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et al.
Environmental Technology & Innovation,
Journal Year:
2025,
Volume and Issue:
unknown, P. 104140 - 104140
Published: March 1, 2025
Language: Английский
Stable low-cost composite sulfonated PEEK polyethylene extraction membranes for battery purity Li2CO3 from brine
Wei Li,
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Rong‐Rong He,
No information about this author
Nan Sun
No information about this author
et al.
Desalination,
Journal Year:
2025,
Volume and Issue:
unknown, P. 118816 - 118816
Published: March 1, 2025
Language: Английский
Lab-scale Experiments with a Monovalent Ion Selective Membrane Capacitive Deionization for Nitrate Removal
Hanna Rosentreter,
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Maja Moch,
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David Schödel
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et al.
Water Resources and Industry,
Journal Year:
2025,
Volume and Issue:
unknown, P. 100288 - 100288
Published: April 1, 2025
Language: Английский
The effect of organic additive on electrochemical fabrication of microstructured electrode for reverse electrodialysis
Eunji Kwon,
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Donghyun Lee,
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Insoo Choi
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et al.
Journal of the American Ceramic Society,
Journal Year:
2025,
Volume and Issue:
unknown
Published: April 16, 2025
Abstract
For
reverse
electrodialysis
(RED)
to
be
effectively
scaled
up
and
commercialized,
it
is
essential
develop
an
electrode
system
that
more
active,
stable,
cost‐effective.
In
this
study,
additive‐assisted
electrodeposition
was
utilized
fabricate
a
Pt/Ti
electrode.
Trisodium
citrate
(TSC)
selected
as
leveling
additive,
its
impact
on
the
reduction
behavior
of
Pt
precursor
fabricated
investigated.
The
addition
TSC
shifted
potential
ion
negatively
due
ligand
stabilization,
which
suppressed
nucleation
growth
deposit.
A
surface‐enlarged,
small‐grained,
uniform
over‐layer
with
high
coverage
confirmed
through
FE‐SEM
XRD
analysis.
largest
electrochemical
surface
9%
enhanced
utilization
decreased
charge
transfer
resistance.
in
donates
electrons
metal‐ligand
transfer,
increasing
electron
density
facilitating
redox
reaction
at
RED
single
cell
from
produces
0.88
W/m
2
power
demonstrates
long‐term
operation
stack.
Language: Английский