Study on Resource Recovery of Noncombustible/Bulky Waste before and after Electric Appliances Recycling Act

In order to improve resource recovery and treatment systems for municipal solid waste, a detailed investigation was conducted on noncombustible/bulky waste treatment processes both pre- and post- enactment of the electric appliances recycling act. A composition analysis of shredded noncombustible/bu...

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Published inJournal of the Japan Society of Waste Management Experts Vol. 19; no. 4; pp. 275 - 285
Main Authors Imai, Tsuyoshi, Li, Boyang, Higuchi, Takaya, Ukita, Masao, Sekine, Masahiko
Format Journal Article
LanguageJapanese
Published Japan Society of Material Cycles and Waste Management 2008
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ISSN1883-1648
1883-163X
DOI10.3985/jswme.19.275

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Abstract In order to improve resource recovery and treatment systems for municipal solid waste, a detailed investigation was conducted on noncombustible/bulky waste treatment processes both pre- and post- enactment of the electric appliances recycling act. A composition analysis of shredded noncombustible/bulky waste (12 times; 60 samples in total) was carried out by manual selection in order to estimate the material balance. It was understood from this that resource recovery of electric appliances has largely been improved, with the recovery of glass and plastics, etc. being the main factor. Moreover, about one-eighth of the noncombustible materials found in the incinerator (i.e. batteries) originated from noncombustible/bulky wastes. In addition to improving noncombustible/bulky waste treatment systems, it is also necessary to develop strategies for reducing the amount of noncombustible materials being mixed into combustible waste systems.
AbstractList In order to improve resource recovery and treatment systems for municipal solid waste, a detailed investigation was conducted on noncombustible/bulky waste treatment processes both pre- and post- enactment of the electric appliances recycling act. A composition analysis of shredded noncombustible/bulky waste (12 times; 60 samples in total) was carried out by manual selection in order to estimate the material balance. It was understood from this that resource recovery of electric appliances has largely been improved, with the recovery of glass and plastics, etc. being the main factor. Moreover, about one-eighth of the noncombustible materials found in the incinerator (i.e. batteries) originated from noncombustible/bulky wastes. In addition to improving noncombustible/bulky waste treatment systems, it is also necessary to develop strategies for reducing the amount of noncombustible materials being mixed into combustible waste systems.
Author Li, Boyang
Higuchi, Takaya
Imai, Tsuyoshi
Ukita, Masao
Sekine, Masahiko
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  organization: Depatment of Civil and Environmental Engineering, Yamaguchi University
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– reference: 8) 田中信壽,松藤敏彦,関戸知雄:都市ごみリサイクルとその技術・仕組みについて――粗大ごみについて――,資源と環境,第9巻,第2号,pp.135-143 (2000)
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– reference: 6) 安田憲二,高橋通正,吉野秀吉:粗大ごみの破砕処理にともなう有害物質の排出挙動,廃棄物学会論文誌,第5巻,第3号,pp.108-117 (1994)
– reference: 19) 谷川 昇:今後のごみの物理組成調査方法,廃棄物学会論文誌,第11巻,第6号,pp.405-410 (2000)
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– reference: 12) 関戸知雄,田中信壽,松藤敏彦,松尾孝之:家庭系粗大ごみ中に含まれる鉛量の推定,土木学会論文集,No.671/V II-18, pp.49-58 (2001)
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– reference: 3) 上野 潔:家電リサイクルとエコデザイン,廃棄物学会誌,第15巻,第3号,pp.115-122 (2004)
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incineration
metal resource
noncombustible/bulky waste
Title Study on Resource Recovery of Noncombustible/Bulky Waste before and after Electric Appliances Recycling Act
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