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基于污泥的生物炭对磷酸盐和铵的解吸特性

Desorption characteristics of phosphate and ammonium from sludge-based biochar.

作者信息

Yin Qianqian, Liu Mengtian, Li Yonghua

机构信息

Department of Power Engineering, North China Electric Power University, Baoding, People's Republic of China.

出版信息

Environ Technol. 2022 May;43(12):1892-1902. doi: 10.1080/09593330.2020.1858179. Epub 2020 Dec 4.

Abstract

It is effective to adsorb phosphate and ammonium from water by sludge-based biochar, while the desorption performance has not been studied systematically. Biochar in this study was prepared through the co-pyrolysis of sludge and walnut shells to remove and from water. The desorption characteristics of and from the post-adsorption sludge-based biochar were investigated. The effects of the adsorption condition (concentration of adsorption solution) and desorption conditions (pH value of desorption solution and desorption temperature and time) on desorption performance were examined. Several techniques were performed to characterise the properties of the post-adsorption sludge-based biochar. The adsorption amount of the pure sewage sludge biochar (SBC) for and the biochar derived from the co-pyrolysis of sewage sludge and walnut shell with the mixing ratio of 3:1 (MBC3-1) for were 14.19/ 23.75 mg/g and 9.28/ 16.23 mg/g, respectively, when the concentrations of the adsorbates were 100 and 500 mg/L. The desorption experiments showed that the acidic condition (pH = 2) was beneficial for and desorption. The highest desorption ratio reached 7.58% for and 2.18% for . The desorption of was endothermic, whereas that of was exothermic. The desorption amounts of and decreased and increased, respectively, with the increase in desorption time. This study of the desorption characteristics of and in sludge-based biochar provides a theoretical basis for the subsequent utilisation of sludge-based biochar.

摘要

基于污泥的生物炭对水中磷酸盐和铵具有吸附效果,但对其解吸性能尚未进行系统研究。本研究中的生物炭是通过污泥与核桃壳共热解制备而成,用于去除水中的[具体物质,原文未明确写出]。研究了吸附后基于污泥的生物炭对[具体物质,原文未明确写出]的解吸特性。考察了吸附条件(吸附溶液浓度)和解吸条件(解吸溶液pH值、解吸温度和时间)对解吸性能的影响。采用多种技术对吸附后基于污泥的生物炭的性质进行了表征。当吸附质浓度为100和500mg/L时,纯污水污泥生物炭(SBC)对[具体物质,原文未明确写出]的吸附量分别为14.19/23.75mg/g,污水污泥与核桃壳以3:1混合比例共热解得到的生物炭(MBC3-1)对[具体物质,原文未明确写出]的吸附量分别为9.28/16.23mg/g。解吸实验表明,酸性条件(pH = 2)有利于[具体物质,原文未明确写出]的解吸。[具体物质,原文未明确写出]的最高解吸率分别达到7.58%和2.18%。[具体物质,原文未明确写出]的解吸是吸热的,而[具体物质,原文未明确写出]的解吸是放热的。随着解吸时间的增加,[具体物质,原文未明确写出]的解吸量减少,而[具体物质,原文未明确写出]的解吸量增加。本研究对基于污泥的生物炭中[具体物质,原文未明确写出]的解吸特性进行了研究,为后续基于污泥的生物炭的利用提供了理论依据。

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