粉煤灰与电镀污泥及活性污泥混合制备陶粒的应用

Bi Dao, Jingwen Zhang, Danli Xi, Bingkui Yin
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引用次数: 1

摘要

本文介绍了利用电镀污泥与粉煤灰和活性污泥混合制备陶粒的实验室研究。研究了电镀污泥的萃取毒性和烧结材料的掺混比例。通过正交试验,优选出预热温度、预热时间、烧结温度、烧结时间等最佳工艺条件。实验结果表明,烧结温度和烧结时间是陶粒制备过程中的两个主要影响因素。在粉煤灰∶电镀污泥∶活性污泥∶85:10:5、预热温度为700℃、预热时间为15 min、烧结温度为1200℃、烧结时间为30 min的最佳条件下,可获得最强陶粒。在最佳条件下生产的陶粒质量符合国家标准(GB/T17431-1998)。由此可见,利用粉煤灰和活性污泥制备电镀污泥陶粒是可行的。与传统的粉煤灰陶粒处理方法相比,该方法在电镀污泥的安全处理和粉煤灰陶粒的生产中更为经济有效。
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Application of Fly Ash Mixed with Electroplating Sludge and Activated Sudge Manufacture Ceramsite
This paper describes a laboratory study on ceramsite manufacture using electroplating sludge mixed with pulvized fly ash(PFA) and activated sludge. The extraction toxicity of electroplating sludge and the mixing scale of sintering materials were studied. An orthogonal test was conducted to select the best manufacturing conditions such as warm-up temperature, warm-up time, sintering temperature and sintering time. The test results reveal that the sintering temperature and sintering time are the two major effecting factors during the ceramsite preparation. The strongest ceramsite could be obtained at an optimal condition: the ratio of raw material scale at fly ash: electroplating sludge: activated sludge=85:10:5, warm-up temperature at 700¿, warm-up time at 15 minutes, sintering temperature at 1200¿, and sintering time at 30 minutes. The quality of the ceramsite produced at optimal condition complies with the referenced Chinese Standard (GB/T17431-1998). Accordingly, it can be concluded that the ceramsite made from electroplating sludge with fly ash and activated sludge is feasible and practicable. Comparing with traditional fly ash ceramsite methods, this method is considered to be more economic and effective in electroplating sludge safe disposal and fly ash ceramsites manufacturing.
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