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用感应炉粉尘部分替代水泥以提高混凝土性能,同时考虑是否有黑曲霉真菌的影响:一种绿色建筑方法。

Partial replacement of cement with induction furnace dust for enhancing concrete properties with and without Aspergillus niger fungus: a green building approach.

机构信息

Guru Nanak Dev Engineering College, Ludhiana, Punjab, India.

CSIR - National Physical Laboratory, New Delhi, Delhi, India.

出版信息

Environ Sci Pollut Res Int. 2022 Oct;29(48):72445-72460. doi: 10.1007/s11356-022-21097-x. Epub 2022 Jun 2.

DOI:10.1007/s11356-022-21097-x
PMID:35655014
Abstract

Induction furnace dust (IFD) is a waste product of the alloy-making process whose disposal by landfill process becomes unsafe due to the presence of heavy metals in high concentrations. It further reduces the fertility of soil and pollutes the air making it harmful for human health. However, efforts can be made to utilize this dust in construction material as it has the same oxides (silica, aluminium oxide, and magnesium oxide) as found in cement, bricks, fine aggregates, coarse aggregates, etc. This study is aimed at the utilization of pre-treated induction furnace dust with Aspergillus niger fungus to replace cement for the construction of concrete structures through Taguchi design of experiments (DOE). The purpose of Aspergillus niger fungus is to reduce the heavy metal concentration from IFD to prevent the surroundings from getting toxic. The optimization of operating parameters such as dust replacement (5%, 10%, and 15%), curing days (7, 14, and 28 days), and cell count of fungus (10, 10, and 10 CFU/ml of distilled water) is done using Multi-objective Genetic Algorithm (G.A.) for effective compressive strength and water absorption capacity of cubes. The best results have been found in the case of IFD treated with Aspergillus niger fungus having dust replacement, curing time, and cell count of 14.96%, 28 days, and 9.22 × 10 CFU/ml of distilled water respectively for concrete production.

摘要

感应炉尘(IFD)是合金制造过程中的一种废物产品,由于其中存在高浓度的重金属,通过填埋处理变得不安全。它进一步降低了土壤的肥力,并污染了空气,对人类健康造成危害。然而,可以努力将这种灰尘用于建筑材料中,因为它具有与水泥、砖块、细骨料、粗骨料等相同的氧化物(二氧化硅、氧化铝和氧化镁)。本研究旨在通过田口设计实验(DOE)利用黑曲霉真菌预处理感应炉尘来替代水泥用于混凝土结构的施工。黑曲霉真菌的目的是降低 IFD 中的重金属浓度,以防止周围环境中毒。使用多目标遗传算法(G.A.)对灰尘替代(5%、10%和 15%)、养护天数(7、14 和 28 天)和真菌细胞计数(10、10 和 10 CFU/ml 蒸馏水)等操作参数进行优化,以获得立方体的有效抗压强度和吸水率。在 IFD 用黑曲霉真菌处理的情况下,发现最好的结果是灰尘替代率、养护时间和细胞计数分别为 14.96%、28 天和 9.22×10 CFU/ml 蒸馏水,用于混凝土生产。

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