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Manufacture of Non-Toxic Lava from Recovery of the Incineration Ash by Plasma Fusing Technology

机译:通过等离子体融合技术制造无毒熔岩从焚烧灰度恢复

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This research investigated and explored the overall technical and legal suggestions on mixed ash (bottom ash + fly ash) from the first BOT(built-operation then transfer) incineration plant in south Taoyuan of Taiwan, with the hope of serving as the reference for treating ash from urban refuse incinerator and making sustainable operation management policies in Taiwan. Both bottom ash and fly ash contain high-content harmful metals like lead, chrome, and cadmium, with the lead content exceeding standard value. Plasma fusing technology may effectively settle toxic heavy metals and reduce their dissolution rate. The results show that the increase in percentage of bottom ash could maintain post-fusing strength and produce solidification effect, but this reduced the stability of toxic heavy metals and raised their dissolution rate. Suitable mixture ratio of bottom ash and fly ash was 2:1, volume reduction ratio 0.349, and weight reduction ratio 0.4936. The mixture was fulvous and dense with gloss and adequate strength. The dissolution test of lava products complied with national standards, and they might be used for recycling aggregates and solidifying cement.
机译:本研究调查并探讨了台湾桃园南部第一机器人(底灰+粉煤灰)的混合灰(底灰+粉煤灰)的整体技术和法律建议,希望作为治疗的参考来自城市垃圾焚烧炉的灰,并在台湾进行可持续运行管理政策。底灰和粉煤灰均含有铅,铬和镉等高含量的有害金属,铅含量超过标准值。等离子体熔化技术可以有效地沉降有毒重金属并降低溶出速率。结果表明,底部灰分百分比可以保持熔断性的强度并产生凝固效果,但这降低了有毒重金属的稳定性,并提高了它们的溶解速率。合适的底灰和飞灰的混合比为2:1,体积减少率为0.349,重量减少率为0.4936。混合物呈富有富含的光泽和充分强度。熔岩产品的溶出试验符合国家标准,它们可用于回收骨料和固化水泥。

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