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Low-temperature conversion of Fe-rich sludge to KFeS2 whisker: a new flocculant synthesis from laboratory scale to pilot scale

机译:富含Fe污泥的低温转化为KFES2晶须:从实验室规模到飞行规模的新絮凝剂合成

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Herein, a KFeS2 whisker was formed in mass production at a low temperature, with waste cold-rolling sludge as Fe source, which exhibited good performance in the removal of Zn/Ni from real electroplating effluent. At laboratory scale, KFeS2 was generated at 80?°C by the hydrothermal method, and KFeS2 whisker grew radially with the extension of the reaction time. This method was applied at pilot scale, where a similar KFeS2 whisker was also produced with waste cold-rolling sludge as Fe source, and a residual brownish supernatant was observed after the reaction and then completely recycled in the next round for KFeS2 synthesis. After recycling five times, the produced KFeS2 whisker did not change. The drying and storage of KFeS2 have also been verified. Freeze drying and vacuum drying were applicable, whereas air drying was not profitable. Moreover, the efficiency of Zn/Ni removal using undried KFeS2 was similar to that of dried KFeS2. The efficiencies of Zn/Ni removal using KFeS2 were apparently higher those of common reagents for wastewater treatment.
机译:在此,在低温下在批量生产中形成KFES2晶须,用废冷轧制污泥作为Fe源,其在从真正的电镀流出物中除去Zn / Ni的良好性能。在实验室规模,通过水热法在80℃下产生KFES2,并且KFES2晶须随着反应时间的延伸而径向增长。该方法以先导量级应用,其中还用废冷轧制污泥作为Fe源生产类似的KFES2晶须,并且在反应后观察到残留的褐色上清液,然后在下一轮中完全再循环以进行KFES2合成。回收五次后,生产的KFES2晶须没有改变。还已经验证了KFES2的干燥和储存。冷冻干燥和真空干燥是适用的,而空气干燥是不利的。此外,使用未经用的KFES 2去除Zn / Ni去除的效率与干燥的KFES2类似。使用KFES2去除Zn / Ni去除的效率显然较高,用于废水处理的常见试剂。

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