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用于高效吸附Pb(II)的聚氨基膦酸功能化水炭的合成

Synthesis of polyaminophosphonated-functionalized hydrochar for efficient sorption of Pb(II).

作者信息

Li Bing, Liu Jia-Lin, Xu Huan

机构信息

College of Chemistry and Materials Engineering, Zhejiang A&F University, Hangzhou, Zhejiang, 311300, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2022 Jul;29(33):49808-49815. doi: 10.1007/s11356-022-19350-4. Epub 2022 Feb 26.

Abstract

Surface modification can effectively improve the ability of hydrochar to capture pollutants from wastewater. In this work, polyaminophosphonated-functionalized hydrochar (PAP-HC) was successfully synthesized by a chemical grafting approach and applied efficiently to adsorb aqueous Pb(II). Properties of PAP-HC were characterized by ICP, FTIR, XPS, SEM-EDS, elemental analysis, zeta potential, and BET. The Pb(II) adsorbing behavior of PAP-HC was tested by batch adsorbing assays, including the pH impact, uptake kinetics, sorption isotherms, sorption thermodynamics, and PAP-HC recycling. Sorption isotherms were better illustrated by a Langmuir equation, while the kinetic profile was modeled by a pseudo-second-order equation. Adsorption of Pb(II) onto PAP-HC mainly relied on chelating Pb(II) with aminophosphonate groups of PAP-HC by XPS and FTIR analyses. The actual adsorbed amount of PAP-HC maximized to 179.92 mg·g at 298 K, which showed high adsorption ability. Nitric acid and hydroxide solutions were suitable for desorption of adsorbed Pb(II) and activated PAP-HC, respectively. PAP-HC can be reused for at least five cycles without obvious change in adsorption performance. The results suggest PAP-HC is a prospective adsorbent to capture Pb(II) from wastewater.

摘要

表面改性可以有效提高水炭从废水中捕获污染物的能力。在本研究中,通过化学接枝法成功合成了聚氨基膦酸功能化水炭(PAP-HC),并将其高效应用于吸附水溶液中的Pb(II)。采用电感耦合等离子体质谱(ICP)、傅里叶变换红外光谱(FTIR)、X射线光电子能谱(XPS)、扫描电子显微镜-能谱仪(SEM-EDS)、元素分析、zeta电位和比表面积分析仪(BET)对PAP-HC的性能进行了表征。通过批量吸附试验测试了PAP-HC对Pb(II)的吸附行为,包括pH值影响、吸附动力学、吸附等温线和吸附热力学以及PAP-HC的循环利用。Langmuir方程能更好地描述吸附等温线,而动力学曲线则用准二级方程进行模拟。通过XPS和FTIR分析表明,Pb(II)在PAP-HC上的吸附主要依赖于PAP-HC的氨基膦酸基团与Pb(II)的螯合作用。在298 K时,PAP-HC的实际吸附量最大可达179.92 mg·g,显示出较高的吸附能力。硝酸和氢氧化物溶液分别适用于解吸吸附的Pb(II)和活化PAP-HC。PAP-HC可以重复使用至少五个循环,吸附性能无明显变化。结果表明,PAP-HC是一种从废水中捕获Pb(II)的潜在吸附剂。

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