2015
DOI: 10.1088/1742-6596/646/1/012030
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Electrostatic separator for micronized mixtures of metals and plastics originating from waste electric and electronic equipment

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Cited by 9 publications
(3 citation statements)
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“…Upper plate is rotated by stepper motor 28BYJ-38 which is controlled by an Arduino board and can rotate continuously so the separation procedure can be done unceasingly. Positive polarity corona discharge produces less ozone than negative polarity corona discharge [3], so in this model from 0 kV to 25 kV of positive DC voltage was applied. Resonant feeders are considered to apply for placing samples one by one on the separator plate, as such feeders are widely used in the plastic industry.…”
Section: Arrangementmentioning
confidence: 99%
See 1 more Smart Citation
“…Upper plate is rotated by stepper motor 28BYJ-38 which is controlled by an Arduino board and can rotate continuously so the separation procedure can be done unceasingly. Positive polarity corona discharge produces less ozone than negative polarity corona discharge [3], so in this model from 0 kV to 25 kV of positive DC voltage was applied. Resonant feeders are considered to apply for placing samples one by one on the separator plate, as such feeders are widely used in the plastic industry.…”
Section: Arrangementmentioning
confidence: 99%
“…Several studies have been published on the separation of electric parts of objects using electrostatic charging [1]. It is an important technology, because the production of plastics and other materials has increased significantly in the previous decades [2], and with an efficient and reliable solution, metals can be recycled, plastic can be collected in other places [3]. Two major steps of the technologies that allow the recovery from waste: finely grinding of the material (if necessary) and separation of constituents [4].…”
Section: Introductionmentioning
confidence: 99%
“…Znajdują zastosowanie również w procesach elektrografii, separacji materiałów zawierających frakcje dyspergowane, we wzbogacaniu rudy, itp. Udoskonalenie technologii elektronowo-jonowych pozwoliło na zastosowanie elektrycznych metod separacji, wykorzystujących różnice między właściwościami składników materiałów wyjściowych w zakresie przewodnictwa elektrycznego i przenikalności dielektrycznej na skalę przemysłową [1][2][3][4][5]. Ponadto, separacja elektryczna nie wymaga wykorzystania wody.…”
Section: Wstępunclassified