Current status and future prospects of biochar application in electrochemical energy storage devices: A bibliometric review
Desalination,
Год журнала:
2024,
Номер
581, С. 117597 - 117597
Опубликована: Апрель 2, 2024
Язык: Английский
Microplastic Contaminated Root Zone Supplementation With Ascorbic Acid Enhance Photosynthesis, Antioxidant Defense, ROS Scavenging, and Secondary Metabolites in Rice
Journal of soil science and plant nutrition,
Год журнала:
2025,
Номер
unknown
Опубликована: Март 4, 2025
Язык: Английский
Scope and Research Perspective of Lithium Biofortification in Crop Plants
Опубликована: Фев. 27, 2025
Язык: Английский
Dynamics and Impacts of Microplastics (MPs) and Nanoplastics (NPs) on Ecosystems and Biogeochemical Processes: The Need for Robust Regulatory Frameworks
ACS Omega,
Год журнала:
2025,
Номер
unknown
Опубликована: Апрель 24, 2025
Язык: Английский
Comparison study on ammonia recovery from anaerobic digestion slurry by different biochar: Focusing on the effect of feedstock, pyrolysis temperature, and particle size
Current Research in Biotechnology,
Год журнала:
2024,
Номер
7, С. 100218 - 100218
Опубликована: Янв. 1, 2024
Treating
anaerobic
digestion
(AD)
slurry
as
industrial
wastewater
not
only
consumes
a
significant
amount
of
energy
but
also
wastes
its
inherent
abundant
nutrients,
particularly
the
high
ammonium
content.
Ammonia
recovery
from
AD
has
attracted
attention
in
recent
years
and
biochar
tentatively
been
used
to
adsorb
ammonia
nitrogen.
However,
most
previous
studies
pure
chloride
solution
simulate
ammonia-rich
ignored
influence
other
components.
Furthermore,
how
physico-chemical
properties
adsorption
performance
remains
unknown.
Therefore,
this
study
focused
on
investigation
behavior
different
types
nitrogen
slurry.
Biochar
generated
rice
straw,
coconut
shell,
wood
shaving
under
pyrolysis
temperatures
300
°C,
500
700
°C
were
food
waste
(FW)
slurry,
five
particle
sizes
tested.
The
results
showed
that
derived
straw
(up
9.44
mg/g)
shell
8.86
had
higher
capacity
than
5.13
mg/g).
Moreover,
low
temperature
resulted
capacity,
while
size
surface
area
critical
factors
determining
capacity.
correlation
demonstrated
H/C
(aromaticity),
O/C
(hydrophilicity),
pH,
electrical
conductivity
(EC),
ash
content
influenced
significantly.
Based
kinetics
model
results,
it
seems
physical
was
main
mechanism,
ion
exchange
reaction
with
function
groups
contributed
adsorption.
lower
observed
where
real
FW
compared
used,
which
implied
microorganisms
may
colonize
or
pores
biochar,
resulting
negative
effect
biochar.
provided
technical
support
for
Язык: Английский
Microplásticos y nanoplásticos: una amenaza para la salud humana y el medio ambiente
Mundo Nano Revista Interdisciplinaria en Nanociencia y Nanotecnología,
Год журнала:
2024,
Номер
18(34), С. 1e - 26e
Опубликована: Сен. 20, 2024
Los
microplásticos
y
nanoplásticos
representan
una
amenaza
para
la
salud
humana
el
medio
ambiente.
Estos
fragmentos
a
escala
nanométrica
micrométrica
provienen
de
diversas
fuentes
generación,
todas
ellas
resultado
actividades
humanas
productos
fabricados
por
hombre.
Las
repercusiones
ambiente
son
preocupantes
debido
su
naturaleza
química,
estos
presentan
desafíos
significativos
detección
eliminación
poder
actuar
como
vectores
transferencia
contaminantes
químicos
biológicos.
En
cuanto
los
métodos
identificación
eliminación,
actualmente
se
exploran
enfoques
físicos,
biotecnológicos.
Sin
embargo,
aún
necesita
investigar
profundidad,
mejorar
eficacia
viabilidad
estas
técnicas
en
necesaria
abordar
problema.
La
gestión
representa
un
desafío
multifacético,
cual
requiere
acción
coordinada
mitigar
sus
impactos
negativos.
presente
revisión
aborda
daño
potencial
causado
micro
al
equilibrio
medioambiental,
las
fisicoquímicos
posibles
rutas
eliminación.
Uncovering layer by layer the risk of nanoplastics to the environment and human health
Journal of Toxicology and Environmental Health Part B,
Год журнала:
2024,
Номер
28(2), С. 63 - 121
Опубликована: Дек. 13, 2024
Nanoplastics
(NPs),
defined
as
plastic
particles
with
dimensions
less
than
100
nm,
have
emerged
a
persistent
environmental
contaminant
potential
risk
to
both
environment
and
human
health.
might
translocate
across
biological
barriers
accumulate
in
vital
organs,
leading
inflammatory
responses,
oxidative
stress,
genotoxicity,
already
reported
several
organisms.
Disruptions
cellular
functions,
hormonal
balance,
immune
responses
were
also
linked
NPs
exposure
vitro
assays.
Further,
been
found
adsorb
other
pollutants,
such
organic
pollutants
(POPs),
leach
additives
potentially
amplifying
their
advere
impacts,
increasing
the
threat
organisms
greater
alone.
However,
toxic
effects
remain
largely
unexplored,
requiring
further
research
elucidate
risks
health,
especially
accumulation,
degradation,
migration,
interactions
systems
long-term
consequences
of
chronic
these
compounds.
This
review
provides
an
overview
current
state-of-art
regarding
mechanisms
toxicity
within
cells.
Язык: Английский