Treatment of high-concentration phosphorus wastewater based on foamed concrete

Yuecheng He, Yue Jian, Qixing Huang, Y. Tao, Liurui Peng, Chuan Huang, Wenlai Xu
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引用次数: 1

Abstract

Abstract Phosphorus is a nonrenewable resource, and the recovery of phosphorus from wastewater containing high concentrations of phosphorus is of great importance. In this work, a novel method for highly efficient treatment of high-concentration phosphorus-containing wastewater (50 mg/L, 100 mg/L and 150 mg/L) with low energy consumption was developed by using the block waste foam concrete (FC) as a potential phosphorus recovery material. The results showed that acid leaching significantly improved the accumulation efficiency of phosphorus in calcium hydroxyphosphate (HAP) via accelerating the release of calcium in wastewater. The recovery rate of phosphorus could reach 99.0% under the pH value of 9.0 at 25 °C, using 2.0 g FC. It was also found that the microporous structure of the surface of FC provided the adsorption sites for phosphorus, resulting in the adsorption rate in different concentrations of phosphorus-containing wastewater up to 14.5%. It indicated that FC achieved the recovery of phosphorus from high-concentration phosphorus-containing wastewater by coupling HAP crystallization and physical adsorption to polyphosphorus.
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泡沫混凝土处理高浓度磷废水
摘要磷是一种不可再生资源,从高浓度磷废水中回收磷具有重要意义。本研究以块状废泡沫混凝土(FC)为潜在的磷回收材料,开发了一种低能耗高效处理高浓度含磷废水(50 mg/L、100 mg/L和150 mg/L)的新方法。结果表明,酸浸通过加速废水中钙的释放,显著提高了羟基磷酸钙(HAP)中磷的富集效率。25℃,pH = 9.0,使用2.0 g FC,磷的回收率可达99.0%。研究还发现,FC表面的微孔结构为磷提供了吸附位点,在不同浓度含磷废水中的吸附率可达14.5%。结果表明,FC通过HAP结晶与物理吸附相结合,实现了高浓度含磷废水中磷的回收。
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