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制造轻质集料作为污水污泥利用的一种可行方法。

Manufacturing of Lightweight Aggregates as an Auspicious Method of Sewage Sludge Utilization.

作者信息

Korol Jerzy, Głodniok Marcin, Hejna Aleksander, Pawlik Tomasz, Chmielnicki Błażej, Bondaruk Jan

机构信息

Department of Material Engineering, Central Mining Institute, Pl. Gwarków 1, 40-166 Katowice, Poland.

Department of Water Protection, Central Mining Institute, Pl. Gwarków 1, 40-166 Katowice, Poland.

出版信息

Materials (Basel). 2020 Dec 10;13(24):5635. doi: 10.3390/ma13245635.

Abstract

Sewage sludge is a high-volume and low-cost waste commonly generated worldwide, so its utilization is a vital issue. The application of this waste in the manufacturing of lightweight aggregates was investigated. The process was performed using intensive mixers with volumes of 5 and 30 L, as well as the industrial 500 L mixer. Then, granulates were sintered in a tube furnace. The influence of composition and mixer size on the particle size, microstructure, mechanical performance, and stability of lightweight aggregates in different environments was analyzed. The best results were obtained for a 500 L mixer, enhancing the industrial potential of the presented process. Increasing the share of sewage sludge in the composition of aggregates enhanced their porosity and reduced the specific weight, which caused a drop in compressive strength. Nevertheless, for all analyzed materials, the mechanical performance was superior compared to many commercial products. Therefore, sewage sludge can be efficiently applied as a raw material for the manufacturing of lightweight aggregates. The presented results confirm that a proper adjustment of composition allows easy the tailoring of aggregates' performance and cost.

摘要

污水污泥是全球普遍产生的一种量大且成本低的废弃物,因此其利用是一个至关重要的问题。对这种废弃物在轻质骨料制造中的应用进行了研究。该过程使用了容积为5升和30升的强力搅拌机以及工业用500升搅拌机来进行。然后,将颗粒在管式炉中烧结。分析了组成和搅拌机尺寸对不同环境下轻质骨料的粒度、微观结构、力学性能和稳定性的影响。使用500升搅拌机获得了最佳结果,提高了所提出工艺的工业应用潜力。增加污水污泥在骨料组成中的比例会提高其孔隙率并降低比重,这导致抗压强度下降。然而,对于所有分析的材料,其力学性能优于许多商业产品。因此,污水污泥可有效地用作制造轻质骨料的原材料。所呈现的结果证实,适当调整组成能够轻松地定制骨料的性能和成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22ed/7764059/fe39f60fca07/materials-13-05635-g001.jpg

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