Research Square (Research Square),
Год журнала:
2023,
Номер
unknown
Опубликована: Ноя. 7, 2023
Abstract
Regional
air
pollution
is
a
multifaceted
and
dynamic
system,
rendering
linear
statistical
approaches
insufficient
in
capturing
its
inherent
patterns
of
variability,
particularly
the
intricate
spatiotemporal
fluctuations
multiple
indicators.
Therefore,
this
study
examines
synergistic
evolution
impact
mechanisms
PM2.5
O3
four
cities
China’s
Yangtze
River
Delta
base
from
2013
to
2022
by
complex
systems
theory.
Initially,
multifractality
long-term
persistence
between
are
confirmed
each
city
using
Multifractal
Detrended
Cross-Correlation
Analysis
(MFDCCA).
Subsequently,
evaluation
indicators
established
assess
control
effects.
Furthermore,
factors
influencing
coordinated
analyzed
Ensemble
Empirical
Mode
Decomposition
(EEMD).
Finally,
Self-Organized
Criticality
(SOC)
theory
introduced
understand
concentration
patterns.
The
results
indicate:
(1)
Multifractality
exist
cities,
strengthens
with
implementation
atmospheric
prevention
policies.
application
facilitates
explanation
quantification
effectiveness
O3.
(2)
Since
2013,
except
for
Nanjing,
effects
Shanghai,
Hangzhou,
Suzhou
have
been
unsatisfactory
not
effectively
improved.
(3)
Compared
human
activities,
measures,
periodic
meteorological
variations,
long-range
transport
regional
pollutants
greater
influence
on
regulation
(4)
SOC
may
be
primary
mechanism
O3,
sudden
events
such
as
epidemic
measures
can
disrupt
existing
balance
thereby
reducing
Research Square (Research Square),
Год журнала:
2023,
Номер
unknown
Опубликована: Ноя. 7, 2023
Abstract
Regional
air
pollution
is
a
multifaceted
and
dynamic
system,
rendering
linear
statistical
approaches
insufficient
in
capturing
its
inherent
patterns
of
variability,
particularly
the
intricate
spatiotemporal
fluctuations
multiple
indicators.
Therefore,
this
study
examines
synergistic
evolution
impact
mechanisms
PM2.5
O3
four
cities
China’s
Yangtze
River
Delta
base
from
2013
to
2022
by
complex
systems
theory.
Initially,
multifractality
long-term
persistence
between
are
confirmed
each
city
using
Multifractal
Detrended
Cross-Correlation
Analysis
(MFDCCA).
Subsequently,
evaluation
indicators
established
assess
control
effects.
Furthermore,
factors
influencing
coordinated
analyzed
Ensemble
Empirical
Mode
Decomposition
(EEMD).
Finally,
Self-Organized
Criticality
(SOC)
theory
introduced
understand
concentration
patterns.
The
results
indicate:
(1)
Multifractality
exist
cities,
strengthens
with
implementation
atmospheric
prevention
policies.
application
facilitates
explanation
quantification
effectiveness
O3.
(2)
Since
2013,
except
for
Nanjing,
effects
Shanghai,
Hangzhou,
Suzhou
have
been
unsatisfactory
not
effectively
improved.
(3)
Compared
human
activities,
measures,
periodic
meteorological
variations,
long-range
transport
regional
pollutants
greater
influence
on
regulation
(4)
SOC
may
be
primary
mechanism
O3,
sudden
events
such
as
epidemic
measures
can
disrupt
existing
balance
thereby
reducing