Water,
Год журнала:
2022,
Номер
14(7), С. 1002 - 1002
Опубликована: Март 22, 2022
Capacity-based
indicators
of
soil
physical
quality
(SPQ)
and
pore
distribution
parameters
were
proposed
to
assess
the
effects
compost
amendment
but
their
determination
was
limited
desorption
water
retention
experiments.
This
study
also
considered
size
obtained
from
adsorption
experiments
establish
effectiveness
in
modifying
hydrological
attributes
a
sandy
loam
soil.
Repacked
samples
with
different
ratios,
r,
subjected
wetting–drying
cycle,
data
fit
van
Genuchten
model
obtain
volume
functions.
The
bulk
density
minimally
affected
by
cycle
significant
negative
correlation
r
obtained.
sorption
process
involved
larger
more
heterogeneous
pores
than
one
thus
resulting
an
estimation
air
capacity
SPQ
(Pmac
AC)
that
higher
for
wetting–water
curve
(WWRC)
drying
(DWRC).
opposite
result
found
storage
(PAWC
RFC).
In
general,
generally
outside
optimal
range
estimates
DWRC
closer
reference
values.
entry
potential
increased
decreased
increase
rate.
Significant
correlations
between
estimated
same
not
WWRC.
It
concluded
addition
could
trigger
positive
on
processes
agronomic
service
as
both
infiltration
during
wetting
are
favored.
However,
evaluating
soils
needs
further
investigation.
Agronomy,
Год журнала:
2020,
Номер
10(11), С. 1838 - 1838
Опубликована: Ноя. 22, 2020
Composting
has
become
a
preferable
option
to
treat
organic
wastes
obtain
final
stable
sanitized
product
that
can
be
used
as
an
amendment.
From
home
composting
big
municipal
waste
treatment
plants,
is
one
of
the
few
technologies
practically
implemented
at
any
scale.
This
review
explores
some
essential
issues
in
field
composting/compost
research:
on
hand,
main
parameters
related
performance
are
compiled,
with
especial
emphasis
maturity
and
stability
compost;
other
rules
applying
compost
crops
applications
explored
detail,
including
all
effects
have
agricultural
land.
Especial
attention
paid
aspects
such
improvement
fertility
soils
once
applied,
suppressor
effect
negative
experiences
massive
application.
Journal of Environmental Management,
Год журнала:
2020,
Номер
277, С. 111443 - 111443
Опубликована: Окт. 10, 2020
The
use
of
co-composted
biochar
(COMBI)
made
by
the
addition
at
beginning
composting
process
has
greatly
increased
in
agriculture
during
last
decade.
There
are
more
benefits
using
co-composting
end
product
COMBI
than
compost
and
separately
or
mixture
two
products.
We
conducted
an
extensive
review
production
several
COMBIs
their
contribution
to
properties
as
well
further
agricultural
lands
improve
soil
health
increase
crop
yields,
remediate
areas
severely
contaminated
with
potentially
toxic
metals
(PTMs).
Although
number
researches
focused
on
its
application
is
so
far
limited,
there
enough
evidence
elucidate
importance
creating
such
products
promote
sustainable
environmental
safety.
Even
if
a
few
drawbacks
side
effects
found,
they
outweighed
many
achieved
comparison
other
amendments.
quality
both
largely
improved
ways
process,
which
turn
yields
up
300%
some
particular
cases.
This
work
overall
understanding
agriculture.
Based
review,
we
suggested
future
better
understand
mechanisms
long-term
awareness
role
over
time
through
alterations
surface
chemistry,
ionic
nutrient
adsorption,
supply
(aging
effect),
implications.
Sustainability,
Год журнала:
2021,
Номер
13(3), С. 1330 - 1330
Опубликована: Янв. 27, 2021
The
exercise
of
biochar
in
agribusiness
has
increased
proportionally
recent
years.
It
been
indicated
that
application
could
strengthen
soil
fertility
benefits,
such
as
improvement
microbial
activity,
abatement
bulk
density,
amelioration
nutrient
and
water-holding
capacity
immutability
organic
matter.
Additionally,
amendment
also
improve
availability
phosphorus
nitrogen
different
types
soil.
Most
interestingly,
the
locally
available
wastes
are
pyrolyzed
to
relationship
among
plants,
environment.
This
can
be
higher
importance
small-scale
farming,
produced
utilized
farms
for
crop
productivity.
Thus,
a
potential
help
achieving
sustainable
agriculture
However,
before
mainstream
formulation
renowned
use,
several
challenges
must
taken
into
consideration,
beneficial
impacts
use
seem
highly
appealing.
review
is
based
on
confined
knowledge
from
field-,
laboratory-
greenhouse-based
studies.
well
known
properties
vary
with
feedstock,
pyrolysis
temperature
(300,
350,
400,
500,
600
°C)
methodology
preparation.
high
concern
further
investigate
negative
consequences:
hydrophobicity;
large
scale
farmland;
production
cost,
primarily
energy
demand;
environmental
threat,
affordability
feedstock.
Nonetheless,
current
literature
reflects
significant
agroecosystem
order
tackle
threats
observed
(crop
fertility)
environment
(reducing
greenhouse
gas
emission).
Abstract
There
has
been
more
than
75%
rise
in
the
number
of
extreme
weather
events
such
as
drought
and
flood
during
2000–2019
compared
to
1980–1999
due
adverse
effects
climate
change,
causing
significant
deterioration
soil
water
quality.
Simultaneously,
growing
human
population
exerting
pressure
on
available
resources
overuse
or
unplanned
use.
While
greenhouse
gas
emissions
have
intensified,
fertility
agricultural
soils
declined
globally
exposure
frequent
flooding,
desertification,
salinization
(resulting
from
events).
The
current
review
aims
give
an
overview
damages
caused
soil–plant
system
by
provide
a
perspective
how
biochar
can
repair
damaged
system.
Biochar
is
known
improve
fertility,
increase
crop
productivity
mitigate
via
sustainable
recycling
bio-waste.
Beneficial
properties
alkaline
pH,
high
cation
exchange
capacity,
abundant
surface
functional
groups,
remarkable
area,
adequate
porosity,
excellent
holding
sufficient
nutrient
retention
capacity
help
This
paper
recommends
some
cautious
future
approaches
that
propel
biochar’s
use
improving
systems
promoting
functioning
weather-affected
areas
mitigation
effects.
Graphical