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添加粉煤灰、掺海水的透水性混凝土:抗压强度、渗透性及磷去除性能

Fly Ash-Added, Seawater-Mixed Pervious Concrete: Compressive Strength, Permeability, and Phosphorus Removal.

作者信息

Hwang Sangchul, Yeon Jung Heum

机构信息

Civil Engineering Program, Texas State University, San Marcos, TX 78666, USA.

出版信息

Materials (Basel). 2022 Feb 14;15(4):1407. doi: 10.3390/ma15041407.

Abstract

A mix proportion of off-spec fly ash (FA)-added, seawater-mixed pervious concrete (SMPC) was optimized for compressive strength and permeability and then the optimized SMPC was tested for the rate and extent of aqueous phosphorus removal. An optimum mix proportion was obtained to attain the percentages (% wt.) of FA-to-binder at 15.0%, nano SiO (NS)-to-FA at 3.0%, liquid-to-binder at 0.338, and water reducer-to-binder at 0.18% from which a 7-day compressive strength of 14.0 MPa and a permeability of 5.5 mm/s were predicted. A long-term maximum compressive strength was measured to be ~16 MPa for both the optimized SMPC and the control ordinary pervious concrete (Control PC). The phosphorus removal was favorable for both the optimized SMPC and the Control PC based on the dimensionless Freundlich parameter (1/n). Both the optimized SMPC and Control PC had a first-order phosphorus removal constant of ~0.03 h. The optimized SMPC had a slightly lower capacity of phosphorus removal than the Control PC based on the Freundlich constant, K (mg kg L): 15.72 for the optimized SMPC vs. 16.63 for Control. This study demonstrates a cleaner production and application of off-spec FA-added, seawater-mixed pervious concrete to simultaneously attain water, waste, and concrete sustainability.

摘要

针对抗压强度和渗透性,对掺用不合格粉煤灰(FA)的海水混合透水混凝土(SMPC)的配合比进行了优化,然后对优化后的SMPC进行了磷去除率和去除程度的测试。获得了一个最佳配合比,使FA与胶凝材料的重量百分比达到15.0%,纳米二氧化硅(NS)与FA的比例为3.0%,水胶比为0.338,减水剂与胶凝材料的比例为0.18%,据此预测7天抗压强度为14.0MPa,渗透性为5.5mm/s。优化后的SMPC和对照普通透水混凝土(对照PC)的长期最大抗压强度均测得约为16MPa。基于无量纲弗伦德利希参数(1/n),优化后的SMPC和对照PC对磷的去除效果都较好。优化后的SMPC和对照PC的一级磷去除常数均约为0.03h。基于弗伦德利希常数K(mg kg L),优化后的SMPC的磷去除能力略低于对照PC:优化后的SMPC为15.72,对照PC为16.63。本研究展示了掺用不合格FA的海水混合透水混凝土的清洁生产和应用,以同时实现水、废物和混凝土的可持续性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8298/8880220/71b96baebb81/materials-15-01407-g001.jpg

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