Contents
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Preface
N. M.
Bikales |
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Recycling
of cheap packaging waste versus expensive engineering materials |
1 |
S.
Karlsson, A.-C. Albertsson*
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Catalytic
degradation of polyethylene and polypropylene to fuel oil |
7 |
Y.
Sakata |
|
Co-pyrolysis
of waste polymers with coal |
19 |
P.
Straka, J. Buchtele, J. Kovárová*
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New approach to recycling of thermosets |
25 |
J. E. Kresta*, H. X. Xiao, B. Suthar X. H. Li, S. P. Sun, D. Klempner
|
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Stepwise
pyrolysis for recycling of plastic mixtures |
35 |
H.
Bockhorn*, A. Hornung, U. Hornung
|
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Integrated
waste management - A pragmatic, by case-by-case approach optimizing
recycling and energy recovery |
43 |
D.
Bürkle
|
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Recyling
of mixted automotive plastics |
55 |
R.
D. Deanin, C. M. Barry, S. Woramongconchai, S. C. Parikh |
|
Technical
methods in plastics pyrolysis |
63 |
A.
G. Buekens*, J. G. Schoeters |
|
Polymer
recycling - Status and perspectives
|
83 |
W.
Michaeli, K. Breyer
|
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Innovative
concept for the upgrading of recyclates by restabitization and
repair molecules |
97 |
R.
Pfaendner*, H. Herbst, K. Hoffmann
|
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Polymer
cracking - New hydrocarbons from old plastics
|
113 |
S.
Hardman, D. C. Wilson
|
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Recycled
injection-molded and fibre -reinforced polyethylene/ polypropylene |
121 |
B.
Riedl |
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Recycling
technology of poly(ethylene terephthatate) materials |
129 |
C.
C. Lin |
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New
trends in chemical recycling of poly(ethylene terephthatate) |
137 |
T.
Spychaj*, D. Paszun |
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Recycling
of polymeric composites |
147 |
T.
Mang*, F. Haulena |
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The
role of additives in the recycling of polymers |
157 |
F.
P. La Mantia |
|
The
influence of recycling on the properties of wood fibre-ptastic
composites |
167 |
J.
J. Balatinecz*, M. M. Sain |
|
New
chemical recycling methodologies: Hydrous pyrolysis to recover
monomers from polyolefins |
175 |
G.
Audisio*, F. Bertini, P. L. Beltrame, L. Bergamasco, A. Castelli |
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Quality
assurance of recycled engineering plastics using blend technology |
183 |
C.
Klason*, H. Bertilsson, X. Liu
|
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Biodegradable
materials - Present situation and future perspectives |
193 |
C.
Bastioli |
|
Conversion
of polymers and biomass to chemical intermediates with supercritical
water |
205 |
K.
Arai
|
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Degradabitity
of biodegradable plastics under controlled composting conditions |
215 |
K.
Nakasaki |
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Ecological
and economical aspects of polymer recycling |
223 |
J.
Brandrup |
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Chlorinated
products of plastic pyrolysis |
237 |
M.
Blazsó |
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The
origin and role of structural inhomogeneities and impurities in
material recycling of plastics |
247 |
J.
Pospísil*, Z. Horák, Z. Krulis, S. Nespurek |
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Approaches
to deal with the issue of plastic packages and the environment |
265 |
J.
Miltz |
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Food
pollution by bilayer package with a recycled polymer: effect of
some parameters |
277 |
S.
Laoubi, J. M. Vergnaud*, B. Mouffok |
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Addendum:
Papers from the IUPAC Working Party on Recycling of Polymers,
Prague, July 1997 |
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Final
report of the IUPAC working party on recycling of polymers |
287 |
N.
M. Bikales |
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Polymer
recycling: Thermodynamics and economics |
295 |
R.
S. Stein |
|
Collection
of post-consumer plastics for recycling |
315 |
M.
M. Fisher, R. N. Liesemer |
|
Rubber
recycling |
327 |
H.
Schnecko |
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Plastics
recycling: An Australian overview |
245 |
R.
W. Truss, J. H. O'Donnell |
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Energy
recovery |
359 |
T.
Akehata |
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