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多壁碳纳米管对柠檬酸还原六价铬的影响:在土壤修复中的应用意义。

Effect of multi-wall carbon nanotubes on Cr(VI) reduction by citric acid: Implications for their use in soil remediation.

机构信息

College of Environmental Science and Engineering, Zhongkai University of Agriculture and Engineering, Guangzhou, 510025, People's Republic of China.

College of Agriculture, Guangdong Ocean University, Zhanjiang, 524088, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2018 Aug;25(24):23791-23798. doi: 10.1007/s11356-018-2438-8. Epub 2018 Jun 6.

Abstract

The potential application of carbon nanotubes (CNTs) in waste water treatment and their effect on the fate of heavy metals in the environments have attracted wide attention. However, the influence of CNTs on the reduction of Cr(VI) to Cr(III) in soils remains unknown. In this study, Cr(VI) adsorption by carboxylated or hydroxylated multi-walled carbon nanotubes (MWCNT-COOH or MWCNT-OH) was investigated together with their catalytic effect on Cr(VI) reduction by citric acid. Across the initial concentration range examined (5-60 mg/L), the adsorption capacity of Cr(VI) by MWCNT-COOH and MWCNT-OH (pH 5.0) could reach to 8.09 and 7.85 mg/g, respectively. With the decrease in pH, the Cr(VI) adsorption by both MWCNTs increased, while their difference in adsorption capacity became more pronounced, evidenced by that the percentage of Cr(VI) adsorbed by MWCNT-COOH can be 1.3-fold higher than that of MWCNT-OH at a pH of 3.2. The Cr(VI) adsorption kinetics could be well described by pseudo-second-order (R > 0.95) and intra-particle diffusion models (R > 0.98). MWCNT-OH or MWCNT-COOH could accelerate the reduction of 0.1 mM Cr(VI) by 1.0 mM citric acid, with the first-order rate constant of 0.0325 and 0.0147 h, respectively. This finding was explained as that the reactivity of citric acid might be enhanced with its adsorption on the MWCNT surfaces. The catalysis of the functionalized CNTs on the Cr(VI) reduction was inhibited as the pH increased. The addition of MWCNTs to an oxisol can enhance the Cr(VI) reduction because the final concentration of aqueous Cr(III), compared with that without addition of MWCNTs, increased from 20.7 to 32.6 μM. Meanwhile, re-adsorption of aqueous Cr(III) onto the solid surfaces was also observed. The results above are important for understanding on the effect of CNTs on the fate of Cr(VI) and how they can be used to remediate Cr(VI)-polluted soils.

摘要

碳纳米管(CNTs)在废水处理中的潜在应用及其对环境中重金属命运的影响引起了广泛关注。然而,CNTs 对土壤中 Cr(VI)还原为 Cr(III)的影响尚不清楚。在本研究中,研究了羧基化或羟基化多壁碳纳米管(MWCNT-COOH 或 MWCNT-OH)对 Cr(VI)的吸附及其对柠檬酸催化还原 Cr(VI)的影响。在所研究的初始浓度范围内(5-60 mg/L),MWCNT-COOH 和 MWCNT-OH(pH 5.0)对 Cr(VI)的吸附容量分别可达 8.09 和 7.85 mg/g。随着 pH 的降低,两种 MWCNTs 的 Cr(VI)吸附量均增加,而吸附容量的差异变得更加明显,在 pH 为 3.2 时,MWCNT-COOH 吸附的 Cr(VI)百分比可高出 MWCNT-OH 的 1.3 倍。Cr(VI)吸附动力学可以很好地用伪二阶(R > 0.95)和内扩散模型(R > 0.98)来描述。MWCNT-OH 或 MWCNT-COOH 可以分别以 0.0325 和 0.0147 h 的一级速率常数加速 0.1 mM Cr(VI)由 1.0 mM 柠檬酸还原。这一发现可以解释为柠檬酸的反应性可能因其在 MWCNT 表面的吸附而增强。随着 pH 的升高,功能化 CNTs 对 Cr(VI)还原的催化作用受到抑制。在氧化土中添加 MWCNTs 可以增强 Cr(VI)的还原,因为与不添加 MWCNTs 相比,水溶液中 Cr(III)的最终浓度从 20.7 μM 增加到 32.6 μM。同时,也观察到水溶液 Cr(III)重新吸附到固体表面上。上述结果对于理解 CNTs 对 Cr(VI)命运的影响以及如何利用它们来修复 Cr(VI)污染土壤具有重要意义。

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