Rahman Ari, Urabe Takeo, Kishimoto Naoyuki, Mizuhara Shinji
a Department of Environmental Solution Technology , Ryukoku University , 1-5 Yokotani, Seta Oe-cho, Otsu-shi, Shiga Prefecture 520-2194 , Japan.
Environ Technol. 2015;36(19):2443-50. doi: 10.1080/09593330.2015.1034188. Epub 2015 Apr 24.
This research investigated the utilization of textile sludge as a substitute for clay in brick production. The addition of textile sludge to a brick specimen enhanced its pores, thus reducing the quality of the product. However, the addition of waste glass to brick production materials improved the quality of the brick in terms of both compressive strength and water absorption. Maximum compressive strength was observed with the following composition of waste materials: 30% textile sludge, 60% clay and 10% waste glass. The melting of waste glass clogged up pores on the brick, which improved water absorption performance and compressive strength. Moreover, a leaching test on a sludge-based brick to which 10% waste glass did not detect significant heavy metal compounds in leachates, with the product being in conformance with standard regulations. The recycling of textile sludge for brick production, when combined with waste glass additions, may thus be promising in terms of both product quality and environmental aspects.
本研究调查了纺织污泥作为制砖用粘土替代品的利用情况。在砖试件中添加纺织污泥会增加其孔隙,从而降低产品质量。然而,在制砖材料中添加废玻璃在抗压强度和吸水率方面均提高了砖的质量。在以下废料组成情况下观察到了最大抗压强度:30%纺织污泥、60%粘土和10%废玻璃。废玻璃的熔化堵塞了砖上的孔隙,这改善了吸水性能和抗压强度。此外,对添加了10%废玻璃的污泥基砖进行的浸出试验未在浸出液中检测到显著的重金属化合物,该产品符合标准规定。因此,将纺织污泥回收用于制砖,并添加废玻璃,在产品质量和环境方面可能都很有前景。