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生物炭辅助芬顿类氧化法处理苯并[a]芘污染土壤。

Biochar-assisted Fenton-like oxidation of benzo[a]pyrene-contaminated soil.

机构信息

Southern Federal University, Rostov-on-Don, Russian Federation.

Federal Research Centre the Southern Scientific Centre of the Russian Academy of Sciences, Rostov-on-Don, Russian Federation.

出版信息

Environ Geochem Health. 2022 Jan;44(1):195-206. doi: 10.1007/s10653-020-00801-1. Epub 2021 Jan 7.

Abstract

In the present study, the biochar derived from sunflower husks was used as a mediator in the heterogeneous Fenton process. The physical and chemical characteristics were studied in terms of specific surface area, elemental contents, surface morphology, surface functional groups, thermal stability, and X-ray crystallography. The main aim was to evaluate the effectiveness of biochar in a heterogeneous Fenton process catalyzed by hematite toward the degradation of benzo[a]pyrene (BaP) in Haplic Chernozem. The Fenton-like reaction was performed at a pH of 7.8 without pH adjustment in chernozem soil. The effects of operating parameters, such as hematite dosage and HO concentrations, were investigated with respect to the removal efficiency of BaP. The overall degradation of 65% was observed at the optimized conditions where 2 mg g hematite and 1.25 M HO corresponded to the HO to Fe ratio of 22:1. Moreover, the biochar amendment showed an increment in the removal efficiency and promotion in the growth of spring barley (Hordeum sativum distichum). The BaP removal was reached 75 and 95% after 2.5 and 5% w/w addition of biochar, respectively. The results suggested that the Fenton-like reaction's effectiveness would be greatly enhanced by the ability of biochar for activation of HO and ejection of the electron to reduce Fe(III) to Fe(II). Finally, the presence of biochar could enhance the soil physicochemical properties, as evidenced by the better growth of Hordeum sativum distichum compared to the soil without biochar. These promising results open up new opportunities toward the application of a modified Fenton reaction with biochar for remediating BaP-polluted soils.

摘要

在本研究中,以葵花盘生物炭作为非均相 Fenton 过程中的媒介物。从比表面积、元素含量、表面形态、表面官能团、热稳定性和 X 射线结晶学等方面研究了其物理化学特性。主要目的是评估生物炭在赤铁矿非均相 Fenton 过程中对哈夫利切克土壤中苯并[a]芘(BaP)降解的有效性。在不调节土壤 pH 值的情况下,在 pH 值为 7.8 的条件下进行类 Fenton 反应。考察了赤铁矿用量和 HO 浓度等操作参数对 BaP 去除效率的影响。在优化条件下,即 2 mg g 赤铁矿和 1.25 M HO 对应于 HO 与 Fe 的比例为 22:1 时,观察到 65%的整体降解。此外,生物炭的添加提高了去除效率,并促进了春大麦(二穗大麦)的生长。分别添加 2.5 和 5%(w/w)的生物炭后,BaP 的去除率达到 75%和 95%。结果表明,生物炭激活 HO 和释放电子将 Fe(III)还原为 Fe(II)的能力极大地增强了类 Fenton 反应的有效性。最后,生物炭的存在可以增强土壤的物理化学性质,二穗大麦的生长情况明显好于没有生物炭的土壤。这些有前景的结果为利用改良的 Fenton 反应和生物炭修复 BaP 污染土壤开辟了新的机会。

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