College of Chemistry Chemical Engineering, and Environmental Engineering, Liaoning Shihua University, Fushun 113001, Liaoning, China.
College of Chemistry Chemical Engineering, and Environmental Engineering, Liaoning Shihua University, Fushun 113001, Liaoning, China.
Sci Total Environ. 2020 Sep 15;735:139553. doi: 10.1016/j.scitotenv.2020.139553. Epub 2020 May 20.
The nano-sized zero valent iron assisted biochar from hazelnut shell (nZVI@biochar) was prepared and assessed for the feasibility as the binding agent in diffusive gradients in thin-films (DGT) technique. The 1.5% agarose solution containing the optimal nZVI@biochar dose of 15 g L was used to prepare the nZVI@biochar binding gel which owned a high capacity (1010 ± 50 μg disc) and a rapid uptake within 30 min. The elution efficiency of phenol from the loaded binding gel was up to 99.3% using the mixture of 1% hydroxylamine hydrochloride and 0.05 mol L HCl. The phenol uptake of nZVI@biochar-DGT increased linearly with the increase of deployment time (R = 0.9938) and was in accord with the theoretical values from DGT equation, while there was no notable interference of the sample matrixes on the phenol uptake of nZVI@biochar-DGT in the spiked freshwaters. The good performance of nZVI@biochar-DGT was found under a range of pH (4.1-10.2), ionic strength (as pNaNO) (0.155-4), and dissolved organic matter up to 20 mg L. In field, the monitoring of nZVI@biochar-DGT was more representative than the results from the grab-sampling with better precision and lower sampling frequency, which can provide reliable information, reduce the cost of human resources, and improve efficiency. These illustrate that the nZVI@biochar is more suitable as the binding agent of DGT for uptake of phenol and nZVI@biochar-DGT is an effective tool to monitor in-situ phenol in waters.
榛子壳制备的纳米零价铁辅助生物炭(nZVI@biochar)被制备并评估作为扩散梯度薄膜(DGT)技术中的结合剂的可行性。使用含有最佳 nZVI@biochar 剂量 15 g L 的 1.5%琼脂糖溶液制备 nZVI@biochar 结合凝胶,该凝胶具有高容量(1010 ± 50 μg 盘)和在 30 分钟内快速吸收。使用 1%盐酸羟胺和 0.05 mol L HCl 的混合物,从负载结合凝胶中洗脱酚的效率高达 99.3%。nZVI@biochar-DGT 对酚的摄取随部署时间的增加而呈线性增加(R = 0.9938),与 DGT 方程的理论值一致,而在加标淡水样品中,样品基质对 nZVI@biochar-DGT 摄取酚没有明显干扰。nZVI@biochar-DGT 在 pH(4.1-10.2)、离子强度(以 pNaNO 表示)(0.155-4)和溶解有机物高达 20 mg L 的范围内表现出良好的性能。在现场,nZVI@biochar-DGT 的监测比传统的抓取采样更具代表性,具有更好的精度和更低的采样频率,能够提供可靠的信息,降低人力资源成本,提高效率。这些表明,nZVI@biochar 更适合作为 DGT 的结合剂,用于吸收酚,nZVI@biochar-DGT 是监测水中酚的有效工具。