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生物炭/纳米零价锌基材料用于去除受污染水中的砷。

Biochar/nano-zerovalent zinc-based materials for arsenic removal from contaminated water.

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Environmental Science and Engineering, Donghua University, Shanghai, China.

Institute of Soil and Environmental Sciences, University of Agriculture Faisalabad, Faisalabad, Pakistan.

出版信息

Int J Phytoremediation. 2023;25(9):1155-1164. doi: 10.1080/15226514.2022.2140778. Epub 2022 Nov 10.

Abstract

In this study, we explored the potential of a newly prepared nano-zero valent zinc (nZVZn), biochar (BC)/nZVZn and BC/hydroxyapatite-alginate (BC/HA-alginate) composites for the removal of inorganic As species from water. Relatively, higher percentage removal of As(III) and As(V) was obtained by nZVZn at pH 3.4 (96% and 94%, respectively) compared to BC/nZVZn (90% and 88%) and BC/HA-alginate (88% and 80%) at pH 7.2. Freundlich model provided the best fit ( = up to 0.98) for As(III) and As(V) sorption data of all the sorbents, notably for nZVZn. The pseudo-second order model well-described kinetics of As(III) and As(V) ( = 0.99) sorption on all the sorbents. The desorption experiments demonstrated that the As removal efficiency, up to the third sorption/desorption cycle, was in the order of nZVZn ∼ BC/HA-alginate (88%) > BC/nZVZn (84%). The Fourier transform infrared spectroscopy depicted that the -OH, -COOH, Zn-O and Zn-OH surface functional groups were responsible for the sorption of As(III) or As(V) on the sorbents investigated here. This study highlights that removal of As species from water by BC/nZVZn composite can be compared with nZVZn, suggesting that integrating BC with nZVZn could efficiently remove As from As-contaminated drinking water.

摘要

在这项研究中,我们探索了一种新制备的纳米零价锌(nZVZn)、生物炭(BC)/nZVZn 和 BC/藻酸钠-羟磷灰石(BC/HA-alginate)复合材料去除水中无机砷物种的潜力。相对而言,在 pH 3.4 时,nZVZn 对 As(III)和 As(V)的去除率相对较高(分别为 96%和 94%),而在 pH 7.2 时,BC/nZVZn 和 BC/HA-alginate 的去除率分别为 90%和 88%,88%和 80%。Freundlich 模型为所有吸附剂的 As(III)和 As(V)吸附数据提供了最佳拟合( = 高达 0.98),特别是对于 nZVZn。准二级动力学模型很好地描述了所有吸附剂上 As(III)和 As(V)( = 0.99)的吸附动力学。解吸实验表明,在第三次吸附/解吸循环中,As 去除效率的顺序为 nZVZn ∼ BC/HA-alginate(88%)>BC/nZVZn(84%)。傅里叶变换红外光谱表明,-OH、-COOH、Zn-O 和 Zn-OH 表面官能团是导致 As(III)或 As(V)在研究吸附剂上吸附的原因。这项研究强调了 BC/nZVZn 复合材料从水中去除 As 物种的能力可与 nZVZn 相媲美,表明将 BC 与 nZVZn 结合可以有效地从含 As 污染的饮用水中去除 As。

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