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Chemical and sewage sludge co-incineration in a full-scale MSW incinerator: toxic trace element mass balance

机译:大规模MSW焚化炉中的化学和污水污泥共焚:有毒微量元素质量平衡

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Co-incineration of sludges with MSW is a quite common practice in Europe. This paper illustrates a case of co-incineration of both sewage sludges and chemical sludges, the latter obtained from drinking water production, in a waste-to-energy (WTE) plant located in northern Italy and equipped with a grate furnace, and compares the toxic trace elements mass balance with and without the co-incineration of sludges. The results show that co-incineration of sewage and chemical sludges does not result in an increase of toxic trace elements the total release in environment, with the exception of arsenic, whose total release increases from 1 mg t_(fuel)~(-1) during standard operation to 3 mg t_(fuel)~(-1) when sludges are co-incinerated. The increase of arsenic release is, however, attributable to the sole bottom ashes, where its concentration is five times higher during sludge co-incineration. No variation is observed for arsenic release at the stack. This fact is a further guarantee that the co-incineration of sludges, when performed in a state-of-the-art WTE plant, does not have negative effects on the atmospheric environment.
机译:在欧洲,污泥与城市固体废弃物共焚化是很普遍的做法。本文举例说明了一个污泥和化学污泥同时焚化的情况,后者是从饮用水生产中获得的,污泥和化学污泥是在意大利北部配备了炉排炉的垃圾发电(WTE)厂中进行的,并进行了比较。有毒和无污泥共焚时,有毒微量元素的质量平衡。结果表明,污水和化学污泥的共焚不会导致有毒微量元素在环境中的总释放量增加,但砷除外,砷的总释放量从1 mg t_(燃料)〜(-1)增加在标准操作中,污泥被共同焚烧时为3 mg t_(燃料)〜(-1)。然而,砷释放的增加归因于唯一的底部灰烬,在污泥共焚化过程中,其底部浓度高出五倍。没有观察到烟囱中砷释放的变化。这一事实进一步保证了污泥的共焚化在最先进的WTE工厂中进行时不会对大气环境产生负面影响。

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