Premium
Recycling of styrene polymers from shredded screen housings containing brominated flame retardants
Author(s) -
Schlummer Martin,
Mäurer Andreas
Publication year - 2006
Publication title -
journal of applied polymer science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.575
H-Index - 166
eISSN - 1097-4628
pISSN - 0021-8995
DOI - 10.1002/app.24377
Subject(s) - bromine , fire retardant , styrene , polymer , environmental science , materials science , european union , waste management , composite material , copolymer , engineering , metallurgy , business , economic policy
Recycling of plastics from screen housing poly mers is considered to be helpful to fulfill the requirements of the European waste of electric and electronic equipment directive. However, brominated flame retardants (BFR) and polybrominated dioxins and furans, which are partly limited in marketable products by European and German legislation, have been identified in waste screen housings and need to be eliminated. On application to housing shredder, sink and float was investigated as sorting technology, since BFR‐equipped styrene polymers exhibit higher densities compared to corres ponding non‐BFR types. The feasibility of this concept was proven by database studies and density monitoring of waste screen housing. Laboratory and small‐technical scale trials with different mixtures of TV‐sets and PC monitor housings revealed that only 5–20% of the original bromine load remained in the target fractions, resulting in bromine levels between 0.18–1.39%. Recycled polymers from fractions rich in HIPS‐based TV‐set casings did not exceed given threshold limits for PBDD/F and octabromodiphenylether. They were recovered with yields of 52–63% and exhibited mostly virgin‐like mechanical properties. In contrast, PC monitor housing fractions were characterized by low yield, high bromine levels in recycled products and brittle recycled polymers. Furthermore, pilot application of another separation approach, the specific swell and float technology, allowed the separation of upgraded HIPS qualities from bromine‐reduced TV‐set fractions. In contrast, this success has not yet been achieved with waste PC monitors. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 102: 1262–1273, 2006