Ultrasmall copper-metal organic framework (Cu-MOF) quantum dots decorated on waste derived biochar for enhanced removal of emerging contaminants: Synergistic effect and mechanistic insight
Journal of Environmental Management,
Journal Year:
2024,
Volume and Issue:
366, P. 121802 - 121802
Published: July 13, 2024
Language: Английский
CeO2-based functional materials: Advancing photo and electro-driven catalysis for environmental remediation and energy conversion
Yan Zhang,
No information about this author
Yue Zhou,
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Dalin Sun
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et al.
Coordination Chemistry Reviews,
Journal Year:
2024,
Volume and Issue:
527, P. 216395 - 216395
Published: Dec. 13, 2024
Language: Английский
Chemistry of CeO2-derived nanocomposites photocatalysts for environment monitoring and energy conversion
CHINESE JOURNAL OF CATALYSIS (CHINESE VERSION),
Journal Year:
2025,
Volume and Issue:
71, P. 70 - 113
Published: April 1, 2025
Language: Английский
Synthesis of Ag2ZnGeO4/g-C3N4 binary heterostructure: A Z-scheme heterojunction photocatalyst for enhanced tetracycline degradation under visible light
Zhaoxin Sun,
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Yuzhen Li,
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Runbin Duan
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et al.
Chemical Engineering Science,
Journal Year:
2024,
Volume and Issue:
296, P. 120253 - 120253
Published: May 21, 2024
Language: Английский
Cobalt-Doped Hydrochar Derived from Microalgae as an Efficient Peroxymonosulfate Activator for Paraben Degradation
Chenyan Hu,
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Suxin Wu,
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Jia-Li Wang
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et al.
Catalysts,
Journal Year:
2024,
Volume and Issue:
14(10), P. 695 - 695
Published: Oct. 6, 2024
Hydrochar,
an
attractive
member
of
the
carbonaceous
materials,
is
derived
from
biomass
and
projects
great
potential
in
peroxymonosulfate
(PMS)
activation,
but
has
not
been
studied
much.
Herein,
by
using
large-scale
cultured
Chlorella
vulgaris
field-collected
bloom
algae,
a
series
porous
hydrochar
was
synthesized
via
facile
hydrothermal
carbonization
reaction,
while
Co
doping
significantly
increased
their
specific
surface
areas,
degree,
functional
groups.
These
Co-doped
(xCo-HC,
x:
amount
precursor)
could
efficiently
activate
PMS,
resulting
nearly
100%
removal
five
common
paraben
pollutants
within
40
min.
A
dosage
0.2Co-HC
0.15
g/L,
PMS
concentration
0.6
unadjusted
pH
6.4
were
verified
more
appropriately
for
degradation.
The
coexistence
Cl−,
SO42−,
humic
acid
inhibited
degradation,
HCO3−
showed
enhancing
effect.
No
observable
change
found
at
presence
NO3−.
Quenching
results
illustrated
that
produced
•SO4−
during
conversion
doped
Co3+/Co2+
acted
as
dominant
active
species
•O2−,
1O2,
•OH
contributed
relatively
less.
algae-based
potentially
facilitated
electron
transfer
xCo-HC/PMS
system.
Overall,
this
study
develops
new
strategy
resource
utilization
abundant
algae.
Language: Английский
Magnetic recyclable g-C3N4/CuFe2O4/MnO2 activated peroxymonosulfate process via dual Z-scheme heterojunction for photodegradation of ciprofloxacin
Jia Zeng,
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Tinghong Gao,
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Li Zhou
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et al.
Journal of environmental chemical engineering,
Journal Year:
2024,
Volume and Issue:
12(6), P. 114502 - 114502
Published: Oct. 18, 2024
Language: Английский
A review on algae-mediated adsorption and catalytic processes for organic water pollution remediation
R. Suresh,
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Saravanan Rajendran,
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Wei‐Hsin Chen
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et al.
Frontiers in Materials,
Journal Year:
2024,
Volume and Issue:
11
Published: Aug. 26, 2024
Wastewaters
consist
of
organic
pollutants
that
have
environmental
concerns.
are
treated
by
different
methods,
but
efficient,
low-cost,
and
sustainable
techniques
still
need
to
be
developed.
Algae-based
water
pollution
remediation
considered
approaches.
This
review
exclusively
discusses
the
facets
macro
microalgae
in
treatment
toxicants.
The
current
trends
algae-mediated
treatments
been
discussed
under
adsorption
degradation
methods.
A
focus
on
algae
fuel
cell,
mediated
activation
oxidizing
agents,
Fenton-like
reactions,
photocatalysis
was
given.
algae-based
adsorptive
catalytic
materials
mentioned.
role
synthesis
catalysts
which
were
employed
pollutant
removal
methods
also
explained.
integrated
highlighted.
toxicant
performances
medium
summarized.
conclusion
future
prospects
derived
from
literature
survey
described.
will
helpful
for
researchers
who
working
field
remediation.
Language: Английский