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酶钙化在防尘和提高降雨抗侵蚀性方面的应用。

Application of enzymatic calcification for dust control and rainfall erosion resistance improvement.

机构信息

Institute of Geotechnical Engineering, Southeast University, Nanjing 210096, Jiangsu, China.

Institute of Geotechnical Engineering, Southeast University, Nanjing 210096, Jiangsu, China.

出版信息

Sci Total Environ. 2021 Mar 10;759:143468. doi: 10.1016/j.scitotenv.2020.143468. Epub 2020 Nov 24.

Abstract

Globally, most cities are facing severe challenges associated with dust pollution and it is of great significance to propose an effective and environmentally friendly dust control method. This study used enzymatically induced calcite precipitation (EICP) technology for dust control. Moreover, polyvinyl acetate (PVAc) was added to the cementation solution to improve its rainfall erosion resistance. The results showed that the optimum ratio of urease solution to cementation solution differed according to the concentrations of reactants in the cementation solution. Under combined EICP and PVAc (50 g/L) treatment, the stability of the dust-slope significantly improved. Moreover, little dust soil loss was washed out by simulated rainfall because of the more stable spatial structure of CaCO precipitation. Furthermore, PVAc addition increased the surface strength of slopes, while the cemented layer became thinner. With this combined EICP and PVAc (50 g/L) treatment, in a field test, the treated area of the slope had higher surface strengths and stronger erosion resistance than untreated areas. These higher surface strengths were attributed to the smaller particle size, and the stronger cementing effect of grass seeds. These results demonstrated that EICP-PVAc treatment significantly controlled dust and mitigated surface erosion of dust-slopes. This represents promising potential for the prevention of dust pollution.

摘要

全球范围内,大多数城市都面临着严重的粉尘污染问题,因此提出一种有效且环保的粉尘控制方法具有重要意义。本研究采用酶诱导碳酸钙沉淀(EICP)技术进行粉尘控制。此外,在胶结液中添加了聚醋酸乙烯酯(PVAc)以提高其抗雨蚀能力。结果表明,脲酶溶液与胶结液的最佳比例取决于胶结液中反应物的浓度。在 EICP 和 PVAc(50 g/L)联合处理下,粉尘边坡的稳定性显著提高。此外,由于碳酸钙沉淀的空间结构更加稳定,很少有粉尘土被模拟降雨冲走。此外,PVAc 的添加增加了边坡的表面强度,而胶结层变薄。采用 EICP 和 PVAc(50 g/L)联合处理后,在现场试验中,处理后的边坡表面强度高于未处理的边坡,具有更强的抗侵蚀能力。这些更高的表面强度归因于较小的粒径和草种更强的胶结效果。这些结果表明,EICP-PVAc 处理能显著控制粉尘,减轻粉尘边坡的表面侵蚀。这为防治粉尘污染提供了有前景的潜在方法。

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