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首页> 外文期刊>Journal of Material Cycles and Waste Managemen >Brominated Flame Retardants And Heavy Metals In Automobile Shredder Residue (asr) And Their Behavior In The Melting Process
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Brominated Flame Retardants And Heavy Metals In Automobile Shredder Residue (asr) And Their Behavior In The Melting Process

机译:汽车碎纸机残留物中的溴化阻燃剂和重金属及其在熔融过程中的行为

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摘要

The End-of-life Vehicles Recycling Act went into effect on January 1, 2005, in Japan and requires the proper treatment of airbags, chlorofluorocarbons (CFCs), and automobile shredder residue (ASR). The need for optimal treatment and recycling of ASR, in particular, has been increasing year after year because ASR is regarded as being difficult to treat. Dioxin-related compounds, brominated flame retardants (BFRs), heavy metals, chlorine and organ-otin compounds are all present in high concentrations in ASR. The authors conducted ASR melting treatment tests using a 10-tons/day-scale direct melting system (DMS), which employs shaft-type gasification and melting technology. The results obtained showed that dioxin-related compounds and BFRs were decomposed by this melting treatment. The high-temperature reducing atmosphere in the melting furnace moved volatile heavy metals such as lead and zinc into the fly ash where they were distributed at a rate of more than 90% of the input amount. This treatment was also found to be effective in the decomposition of organotin, with a rate of decomposition higher than 99.996% of the input amount. Via the recovery of heavy metals concentrated in the fly ash, all the products discharged from this treatment system were utilized effectively for the complete realization of an ASR recycling system that requires no final disposal sites.
机译:《汽车报废回收法》于2005年1月1日在日本生效,要求对安全气囊,氯氟烃(CFC)和汽车残渣(ASR)进行适当处理。特别是对ASR的最佳处理和循环利用的需求逐年增加,因为人们认为ASR难以治疗。与二恶英有关的化合物,溴化阻燃剂(BFR),重金属,氯和有机烟碱化合物都以高浓度存在于ASR中。作者使用10吨/天规模的直接熔化系统(DMS)进行了ASR熔化处理测试,该系统采用竖井式气化和熔化技术。获得的结果表明,通过该熔融处理,二恶英相关的化合物和BFR被分解。熔化炉中的高温还原气氛将易挥发的重金属(例如铅和锌)移入粉煤灰中,并以输入量的90%以上的比例分布。还发现该处理对于有机锡的分解是有效的,分解速率高于输入量的99.96%。通过回收粉煤灰中的重金属,从该处理系统排出的所有产品均得到有效利用,从而完全实现了无需最终处置场所的ASR回收系统。

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