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不同农业固体废物制备生物炭对普萘洛尔吸附的比较研究

Comparative Study for Propranolol Adsorption on the Biochars from Different Agricultural Solid Wastes.

作者信息

Nie Wenjie, Che Qianqian, Chen Danni, Cao Hongyu, Deng Yuehua

机构信息

College of Geology and Environment, Xi'an University of Science and Technology, 58 Yanta Road, Xi'an 710054, China.

Shaanxi Provincial Key Laboratory of Geological Support for Coal Green Exploitation, Xi'an 710054, China.

出版信息

Materials (Basel). 2024 Jun 7;17(12):2793. doi: 10.3390/ma17122793.

Abstract

Currently, large amounts of agricultural solid wastes have caused serious environmental problems. Agricultural solid waste is made into biochar by pyrolysis, which is an effective means of its disposal. As the prepared biochar has a good adsorption capacity, it is often used to treat pollutants in water, such as heavy metals and pharmaceuticals. PRO is an emerging contaminant in the environment today. However, there are limited studies on the interaction between biochars with PRO. Thus, in this study, we investigate the adsorption of PRO onto the biochars derived from three different feedstocks. The order of adsorption capacity was corn stalk biochar (CS, 10.97 mg/g) > apple wood biochar (AW, 10.09 mg/g) > rice husk biochar (RH, 8.78 mg/g). When 2 < pH < 9, the adsorption capacity of all the biochars increased as the pH increased, while the adsorption decreased when pH > 9, 10 and 10.33 for AW, CS and RH, respectively. The adsorption of PRO on biochars was reduced with increasing Na and Ca concentrations from 0 to 200 mg·L. The effects of pH and coexisting ions illustrated that there exist electrostatic interaction and cation exchange in the process. In addition, when HA concentration was less than 20 mg/L, it promoted the adsorption of PRO on the biochars; however, when the concentration was more than 20 mg/L, its promoting effect was weakened and gradually changed into an inhibitory effect. The adsorption isotherm data of PRO by biochars were best fitted with the Freundlich model, indicating that the adsorption process is heterogeneous adsorption. The adsorption kinetics were fitted well with the pseudo-second-order model. All the results can provide new information into the adsorption behavior of PRO and the biochars in the aquatic environment and a theoretical basis for the large-scale application of biochar from agricultural solid wastes.

摘要

目前,大量农业固体废物已造成严重的环境问题。农业固体废物通过热解制成生物炭,这是其处置的有效手段。由于制备的生物炭具有良好的吸附能力,它常被用于处理水中的污染物,如重金属和药物。PRO是当今环境中一种新兴的污染物。然而,关于生物炭与PRO之间相互作用的研究有限。因此,在本研究中,我们研究了PRO在源自三种不同原料的生物炭上的吸附情况。吸附容量顺序为玉米秸秆生物炭(CS,10.97 mg/g)>苹果木生物炭(AW,10.09 mg/g)>稻壳生物炭(RH,8.78 mg/g)。当2 < pH < 9时,所有生物炭的吸附容量随pH升高而增加,而当pH > 9时,AW、CS和RH的吸附容量分别在pH为10和10.33时下降。随着Na和Ca浓度从0增加到200 mg·L,PRO在生物炭上的吸附减少。pH和共存离子的影响表明该过程中存在静电相互作用和阳离子交换。此外,当HA浓度小于20 mg/L时,它促进PRO在生物炭上的吸附;然而,当浓度大于20 mg/L时,其促进作用减弱并逐渐变为抑制作用。生物炭对PRO的吸附等温线数据最符合Freundlich模型,表明吸附过程为非均相吸附。吸附动力学与准二级模型拟合良好。所有结果可为PRO和生物炭在水环境中的吸附行为提供新信息,并为农业固体废物生物炭的大规模应用提供理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16bd/11204899/81ab10fe60cd/materials-17-02793-g001.jpg

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