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Studies on Gasification and Melting Characteristics of Automobile Shredder Residue

机译:汽车碎渣残渣的气化和熔融特性研究

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The present technology to handle end of life vehicles (ELVs) is usually generating around 20-30% of automobile shredder residues (ASR) of a new car in weight, which is disposing of by landfill or combustion at cement kilns and incinerators. In recent past attempts to survey and compare various techniques such as pyrolysis, gasification and melting to treat ASR with better recycling rate has been made. Gasification and melting processes are operated at high temperatures with high destruction of hazardous components and the production of gases, mainly CO and H_2, which can be utilized as fuel gas or raw chemicals after cleaning. In this study, ASR sampled from a domestic shredding company was experimented in a lab-scale gasification and melting process to characterize some gaseous and slag products. At higher temperatures and lower air equivalent ratio (ER), CO, H_2 and CH_4 emission increased but CO_2, N_2 decreased. C_2H_6 change in concentration at different ER was not clear. However, there was a tendency of increasing amount of emission at lower temperatures. Carbon conversion efficiency, gas yield and CO_2 increased with increasing ER. Thus, when temperature was higher, gas yield & carbon conversion efficiency was higher. By-product yield was related to carbon conversion efficiency and gas yield. The amount of produced slags as residue was analyzed with the characteristics of them.
机译:用于处理报废车辆(ELV)的当前技术通常在新车中产生约20-30%的重量,这是通过在水泥窑和焚化炉中进行填埋或燃烧来处置的。近来,已经尝试调查和比较各种技术,例如热解,气化和熔融以更好的回收率处理ASR。气化和熔化过程在高温下进行,有害成分的破坏程度很高,并且产生的气体(主要是CO和H_2)可在清洁后用作燃料气体或化学原料。在这项研究中,在实验室规模的气化和熔融过程中对从一家国内粉碎公司取样的ASR进行了实验,以表征某些气态和炉渣产品。在较高温度和较低空气当量比(ER)下,CO,H_2和CH_4排放增加,而CO_2,N_2减少。在不同的ER下,C_2H_6的浓度变化尚不清楚。然而,存在在较低温度下增加排放量的趋势。碳转化效率,气体产率和CO_2随ER的增加而增加。因此,当温度较高时,气体产率和碳转化效率较高。副产物产率与碳转化效率和气体产率有关。分析了作为残渣产生的炉渣的数量及其特性。

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