You Nan, Li Ji-Yu, Fan Hong-Tao, Shen Hua
College of Chemistry Chemical Engineering, and Environmental Engineering, Liaoning University of Petroleum & Chemical Technology, Fushun 113001, Liaoning, China.
College of Applied Chemistry, Shenyang University of Chemical Technology, Shenyang 100142, Liaoning, China.
J Adv Res. 2018 Sep 27;15:77-86. doi: 10.1016/j.jare.2018.09.005. eCollection 2019 Jan.
Nitrophenols (such as o-nitrophenol (ONP), p-nitrophenol (PNP), and 2,4-dinitrophenol (DNP)) are priority environmental pollutants. Their toxicity is pH dependent, and these molecular species of nitrophenols exhibit higher toxicity than their anionic counterparts. Herein, for the first time, a method for the in situ measurement of nitrophenols in acidic industrial wastewater was developed using diffusive gradients in thin films (DGT) with lignocellulose hazelnut shell-derived activated carbons (HSACs) as the binding agents. Nylon membranes (0.1 μm rated) with diffusion coefficients of (2.02 ± 0.13) × 10 cm s for ONP, (1.39 ± 0.09) × 10 cm s for PNP and (1.20 ± 0.08) × 10 cm s for DNP at 25 °C were used as the DGT diffusion layers. The accumulation of ONP, PNP, and DNP in DGT samplers based on the HSAC and nylon membranes (HSAC-DGT) agreed well with the theoretical curves predicted by the DGT equation in synthetic solutions with 200 μg L nitrophenol. The uptake of the HSAC-DGT samplers for ONP, PNP, and DNP was found to be independent of the ionic strength of pNaNO (-log [NaNO] (mol L)) in the range of 0.7-3 and the pH range of 3-7 for ONP and PNP and 3-6 for DNP, which is beneficial for their accumulation. The matrices of the tested water samples exhibited no notable interference during nitrophenol analysis by the HSAC-DGT samplers. The results of field deployments in acidic industrial wastewater containing 268.3 ± 79.2 μg L DNP were satisfactorily accurate, thus demonstrating that the HSAC-DGT samplers are good candidates for use in the in situ measurement of nitrophenols in acidic aqueous solutions.
硝基酚(如邻硝基酚(ONP)、对硝基酚(PNP)和2,4 - 二硝基酚(DNP))是重点环境污染物。它们的毒性取决于pH值,且这些硝基酚分子形态的毒性高于其阴离子形态。在此,首次开发了一种利用薄膜扩散梯度(DGT)结合木质纤维素榛子壳衍生的活性炭(HSACs)原位测量酸性工业废水中硝基酚的方法。在25°C下,扩散系数分别为ONP(2.02±0.13)×10 cm² s⁻¹、PNP(1.39±0.09)×10 cm² s⁻¹和DNP(1.20±0.08)×10 cm² s⁻¹的0.1μm孔径尼龙膜用作DGT扩散层。基于HSAC和尼龙膜的DGT采样器(HSAC - DGT)中ONP、PNP和DNP的累积与含有200μg L硝基酚的合成溶液中DGT方程预测的理论曲线吻合良好。发现HSAC - DGT采样器对ONP、PNP和DNP的摄取在pNaNO₃(-log[NaNO₃](mol L⁻¹))的离子强度范围为0.7 - 3以及ONP和PNP的pH范围为3 - 7、DNP的pH范围为3 - 6时与离子强度无关,这有利于它们的累积。在通过HSAC - DGT采样器进行硝基酚分析期间,测试水样的基质未表现出明显干扰。在含有268.3±79.2μg L DNP的酸性工业废水中进行现场部署的结果准确性令人满意,从而表明HSAC - DGT采样器是用于原位测量酸性水溶液中硝基酚的良好候选者。