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硼掺杂玉米秸秆生物炭的制备及表征:Fe(Ⅱ)去除平衡及动力学。

Preparation and characterization of boron-doped corn straw biochar: Fe (Ⅱ) removal equilibrium and kinetics.

机构信息

Joint laboratory of Northeast Agricultural University and Max Planck Institute of Colloids and Interfaces (NEAU-MPICI), Harbin 150030, China; School of Water Conservancy and Civil Engineering, Northeast Agricultural University, Harbin 150030, China.

Joint laboratory of Northeast Agricultural University and Max Planck Institute of Colloids and Interfaces (NEAU-MPICI), Harbin 150030, China; College of Engineering, Northeast Agricultural University, Harbin 150030, China.

出版信息

J Environ Sci (China). 2021 Aug;106:116-123. doi: 10.1016/j.jes.2021.01.001. Epub 2021 Jan 31.

Abstract

Nowadays, iron ions as a ubiquitous heavy metal pollutant are gradually concerned and the convenient and quick removal of excessive iron ions in groundwater has become a major challenge for the safety of drinking water. In this study, boron-doped biochar (B-BC) was successfully prepared at various preparation conditions with the addition of boric acid. The as-prepared material has a more developed pore structure and a larger specific surface area (up to 897.97 m²/g). A series of characterization results shows that boric acid effectively activates biochar, and boron atoms are successfully doped on biochar. Compared with the ratio of raw materials, the pyrolysis temperature has a greater influence on the amount of boron doping. Based on Langmuir model, the maximum adsorption capacity of 800B-BC at 25 °C, 40 °C, 55 °C are 50.02 mg/g, 95.09 mg/g, 132.78 mg/g, respectively. Pseudo-second-order kinetic model can better describe the adsorption process, the adsorption process is mainly chemical adsorption. Chemical complexation, ions exchange, and co-precipitation may be the main mechanisms for Fe removal.

摘要

如今,铁离子作为一种普遍存在的重金属污染物逐渐受到关注,如何方便快捷地去除地下水中过量的铁离子,成为饮用水安全的一大挑战。本研究在添加硼酸的条件下,成功制备了硼掺杂生物炭(B-BC)。所制备的材料具有更发达的孔结构和更大的比表面积(高达 897.97 m²/g)。一系列的表征结果表明,硼酸能有效激活生物炭,硼原子成功地掺杂在生物炭上。与原料的比例相比,热解温度对硼掺杂量的影响更大。基于 Langmuir 模型,在 25°C、40°C、55°C 下,800B-BC 的最大吸附容量分别为 50.02、95.09、132.78mg/g。准二级动力学模型能更好地描述吸附过程,吸附过程主要为化学吸附。Fe 的去除主要机制可能是化学络合、离子交换和共沉淀。

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