首页> 外文会议>Air Waste Management Association Annual International Conference on Incineration and Thermal Treatment Technologies >THE FORMATION MECHANISM OF THE VITRIFIED SLAG IN A PLASMA ARC REACTOR FOR HAZARDOUS WASTE TREATMENT
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THE FORMATION MECHANISM OF THE VITRIFIED SLAG IN A PLASMA ARC REACTOR FOR HAZARDOUS WASTE TREATMENT

机译:危险废物处理等离子体弧形反应器中玻璃化炉渣的形成机理

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摘要

Various hazardous wastes with additives have been vitrified to investigate the formation mechanism of the glassy slag by a 30 kW DC plasma-arc reactor developed by the Institute of Mechanics, Chinese Academy of Sciences, The average temperature in the reaction area is controlled at 1500°C, The chemical compositions of three sorts of fly ashes are analyzed by XRF (X-Ray Fluorescence). Fly ashes with vitrifying additives can be vitrified to form glassy slag, which show that the ratio of the whole oxygen ions to the whole network former ions in glass (R) is appropriate in the range of 2~3 to form durable vitrified slag. In this experiment, the arc power is controlled below 5 kW to inhibit waste evaporation. To enhance the effects of heat transfer to wastes, ferrous powder has been added into the graphite crucible, which aggregates as ingot below the molten silicate after vitrification. The slag fails to form glass if the quenching rate is less than 1 K/min. Therefore, the slag will break into small chips due to the sharp quenching rate, which is more than 100 K/sec.
机译:具有添加剂的各种危险废物已经玻璃化以研究由中国科学院力学研究所开发的30 kW DC等离子电弧反应器的玻璃渣的形成机制,反应区域的平均温度在1500°控制C,通过XRF(X射线荧光)分析三种飞灰的化学组成。用玻璃化添加剂飞行灰烬可以塑造以形成玻璃渣,表明整个氧离子与整个网络以上的玻璃(R)的前离子的比例在2〜3的范围内形成耐用的玻璃化渣。在该实验中,电弧功率控制在5 kW以下,以抑制废物蒸发。为了增强热传递对废物的影响,已经将含铁粉末加入到石墨坩埚中,该石墨坩埚将其作为铸造硅酸盐低于熔融硅酸盐的铸锭。如果淬火速率小于1 k / min,则炉渣未能形成玻璃。因此,由于尖锐的淬火速率,炉渣将分成小芯片,其大于100k / sec。

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