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复合金属改性生物炭对水中低浓度磷的吸附

[Adsorption of Low-Concentration Phosphorus from Water by Composite Metal Modified Biochar].

作者信息

Sun Ting-Ting, Gao Fei, Lin Li, Li Rui, Dong Lei

机构信息

Basin Water Environmental Research Department, Changjiang River Scientific Research Institute, Changjiang Water Resources Commission, Wuhan 430010, China.

出版信息

Huan Jing Ke Xue. 2020 Feb 8;41(2):784-791. doi: 10.13227/j.hjkx.201904058.

Abstract

In this study, we synthesized composite metal modified biochar using fruit shell biochar impregnated with ferric chloride and potassium permanganate. We investigated its potential to adsorb phosphorus at low concentrations. Results show that the adsorption of low-concentration phosphorus by Fe and Mn modified biochar was significantly better than by non-modified biochar. SEM and FT-IR spectra indicate that iron and manganese oxides or iron hydroxides might be present on the surface of Fe and Mn modified biochar. When the phosphorus concentration is 0.5 mg·L at a temperature is 298 K and solid-to-liquid ratio (mg:L) of 500, the adsorption capacity of modified biochar is 0.96 mg·g. When the pH of the solution is 4 to 10, a higher removal rate and adsorption capacity are realized. The biochar equilibrium data were fitted to the Freundlich equation, which indicated that the adsorption was a multimolecular layer adsorption. Adsorption thermodynamics studies showed that Δ < 0, Δ > 0, and Δ > 0, indicating that the adsorption was a spontaneous, with positive entropy, and an endothermic process. The adsorption reached equilibrium after 60 min, and the adsorption kinetics followed a pseudo-second-order model. This research provides basic data for the removal of low-concentration phosphorus from a water body and sewage treatment plant.

摘要

在本研究中,我们通过用氯化铁和高锰酸钾浸渍果壳生物炭来合成复合金属改性生物炭。我们研究了其在低浓度下吸附磷的潜力。结果表明,铁和锰改性生物炭对低浓度磷的吸附明显优于未改性生物炭。扫描电子显微镜(SEM)和傅里叶变换红外光谱(FT-IR)表明,铁和锰改性生物炭表面可能存在铁和锰的氧化物或氢氧化铁。当磷浓度为0.5mg·L、温度为298K且固液比(mg:L)为500时,改性生物炭的吸附容量为0.96mg·g。当溶液pH值为4至10时,实现了更高的去除率和吸附容量。生物炭平衡数据符合Freundlich方程,这表明吸附为多分子层吸附。吸附热力学研究表明,Δ<0、Δ>0且Δ>0,表明吸附是自发的、具有正熵且为吸热过程。吸附在60分钟后达到平衡,吸附动力学遵循准二级模型。本研究为从水体和污水处理厂中去除低浓度磷提供了基础数据。

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