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从茶渣中制备磁性多孔生物炭去除水溶液中四环素的简便方法:热解温度的影响。

Facile preparation of magnetic porous biochars from tea waste for the removal of tetracycline from aqueous solutions: Effect of pyrolysis temperature.

机构信息

School of Resources and Environment, Anhui Agricultural University, Hefei, 230036, China.

School of Resources and Environment, Anhui Agricultural University, Hefei, 230036, China.

出版信息

Chemosphere. 2022 Mar;291(Pt 3):132713. doi: 10.1016/j.chemosphere.2021.132713. Epub 2021 Oct 25.

Abstract

Pyrolysis process significantly influences the physicochemical properties and potential application of magnetic porous biochars (MPBCs). However, the effects of pyrolysis temperature on the properties of MPBCs as well as substantial adsorption are still unclear. This study reported a facile method to obtain the MPBC from tea waste via pyrolysis of a mixture of hydrochar, KHCO, and FeCl·6HO under different temperatures (500-800 °C), and explored further the adsorption toward tetracycline (TC). Results showed pyrolysis temperature obviously influenced the physicochemical properties of MPBCs, and MPBC pyrolyzed at 700 °C (MPBC-700) has a highest specific surface area (1066 m g) and pore volume (2.693 cm g). However, the adsorption potential increased consistently from 59.35 mg g for MPBC-500 to 333.22 mg g for MPBC-800, suggesting that the surface area and pore volume were not the only factors determining TC adsorption. Further analysis showed that the pore-filling, π-π interaction, complexation, and hydrogen bonding contributed together to TC adsorption. Moreover, all MPBCs possessed a high saturation magnetization, indicating the easy separation by an external magnet. Therefore, MPBCs (especially at 700 °C) can act as the excellent adsorbents for contaminant removal due to their high separation, adsorption, and reuse performance.

摘要

热解过程显著影响磁性多孔生物炭(MPBCs)的物理化学性质和潜在应用。然而,热解温度对 MPBCs 特性以及大量吸附的影响仍不清楚。本研究报道了一种简便的方法,通过在不同温度(500-800°C)下将水热炭、KHCO 和 FeCl·6HO 的混合物热解,从茶废料中获得 MPBC,并进一步探索了其对四环素(TC)的吸附。结果表明,热解温度明显影响 MPBCs 的物理化学性质,在 700°C 下热解的 MPBC(MPBC-700)具有最高的比表面积(1066 m²/g)和孔体积(2.693 cm³/g)。然而,吸附潜力从 MPBC-500 的 59.35 mg/g 持续增加到 MPBC-800 的 333.22 mg/g,表明比表面积和孔体积不是决定 TC 吸附的唯一因素。进一步分析表明,孔填充、π-π 相互作用、络合和氢键共同促进了 TC 的吸附。此外,所有 MPBC 都具有高饱和磁化强度,表明通过外部磁场易于分离。因此,MPBCs(特别是在 700°C 下)由于其高分离、吸附和再利用性能,可以作为去除污染物的优异吸附剂。

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