The International Journal of Logistics Management,
Journal Year:
2023,
Volume and Issue:
35(3), P. 755 - 803
Published: July 14, 2023
Purpose
This
study
reviews
scholarly
work
in
sustainable
green
logistics
and
remanufacturing
(SGLR)
their
subdisciplines,
combination
with
bibliometric,
thematic
content
analyses
that
provide
a
viewpoint
on
categorization
future
research
agenda.
paper
provides
insight
into
current
trends
the
subjects
of
interest
by
examining
most
essential
referenced
articles
promoting
sustainability
climate-neutral
logistics.
Design/methodology/approach
For
literature
review,
authors
extracted
sifted
2180
review
papers
for
period
2008–2023
from
Scopus
database.
The
performed
bibliometric
using
multiple
software
programs
such
as
Gephi,
VOSviewer
R
programming.
Findings
SGLR
can
be
grouped
seven
clusters:
(1)
circular
economy
facets;
(2)
Decarbonization
operations
to
nurture
business;
(3)
Green
supply
chain
management;
(4)
Drivers
barriers
reverse
economy;
(5)
Business
models
(6)
Transportation
problems
(7)
Digitalization
management.
Practical
implications
In
this
fundamental
ideas
are
established,
gaps
identified
proposed.
These
propositions
categorized
three
main
streams,
i.e.
SGLR,
Enhancing
scopes,
sectors
industries
context
Developing
more
efficient
effective
climate
change-related
solutions
environmental-related
concerning
SGLR.
addition,
two
conceptual
strategies
developed
presented
managers
practitioners
consider
when
adopting
principles
chains.
also
highlights
need
academics
go
beyond
frameworks
build
new
techniques
instruments
monitoring
performance
real
world.
Originality/value
an
overview
evolution
SGLR;
it
clarifies
concepts,
environmental
concerns
change
practices,
particularly
those
directed
Journal of Composites Science,
Journal Year:
2023,
Volume and Issue:
7(2), P. 84 - 84
Published: Feb. 16, 2023
Due
to
its
low
cost,
over
the
past
decades,
biosorption
technology
has
been
extensively
carried
out
treat
heavy
metal-laden
wastewater
using
biosorbents.
Recent
studies
on
metal
mechanisms
and
simulation
of
mathematical
modeling
process
have
enhanced
scientific
understanding
about
binding
between
target
cations
functional
group
different
surfaces
biomasses
as
a
biosorbent.
However,
so
far,
none
provided
an
overview
mechanistic
removal
from
aqueous
solutions
inexpensive
To
close
this
knowledge
gap,
article
discusses
applicability
surface
complexation
(SC)
model
for
pollutant.
Insightful
ideas
directions
future
research
in
treatment
digital
technologies
are
also
presented.
It
was
conclusive
literature
survey
115
articles
(1987–2023)
that
Aspergillus
niger,
Penicillium
chrysogenum,
Rhizopus
nigricans
represent
biomaterials
substantial
adsorption
capacities,
up
200
mg
Au(I)/g,
142
Th/g,
166
Pb(II)/g,
respectively.
The
metal-binding
involved
include
ion
exchange,
complexation,
micro-precipitation.
Ion
exchange
is
only
play
key
roles
sequestering
fungal
cells
with
chitin
chitosan.
X-ray
energy
dispersion
(XED)
scanning
electron
microscopy
(SEM)
analysis
were
used
evaluate
inorganic
pollutants
physico-chemical
characterization
cell
biomass.
As
by
biosorbent
affected
properties,
occurs.
affinity
depends
type
groups
such
phosphate,
carboxyl,
amine.