School of Resource and Environment, Northeast Agricultural University, Harbin, 150030, China.
College of Science, Northeast Agricultural University, Harbin, 150030, China.
Environ Sci Pollut Res Int. 2018 Jan;25(2):1405-1417. doi: 10.1007/s11356-017-0492-2. Epub 2017 Oct 31.
In this study, biochars (BC, ZnBC, and PBC) produced from wheat straw at relatively lower pyrolysis are successfully fabricated using different pretreatment techniques (without and with ZnCl or HPO). The specific surface area (SSA), elemental analysis, and Fourier transform infrared spectra (FTIR) are used to analyze physicochemical properties of unmodified and modified biochars. ZnBC and PBC show higher specific surface area and more micropore structure than pure BC. Kinetic models (pseudo-first order, pseudo-second order, and intra-particle diffusion) as well as isotherm models (Langmuir and Freundlich) are applied to analyze adsorption behavior. Adsorption on biochars can be better fitted by the pseudo-second-order and intra-particle diffusion models, indicating that micropores and mesopores play important roles on adsorption process and chemisorption is dominant. The adsorption process is also affected by physical and chemical adsorption. In conclusion, biochar is a low-cost, effective, and environment-friendly adsorbent implicating in the environment for pesticide removal. Graphical abstract.
在这项研究中,成功地使用不同的预处理技术(无预处理和使用 ZnCl2 或 H3PO4 预处理)从麦秆在相对较低的热解温度下制备生物炭(BC、ZnBC 和 PBC)。比表面积(SSA)、元素分析和傅里叶变换红外光谱(FTIR)用于分析未改性和改性生物炭的物理化学性质。ZnBC 和 PBC 比纯 BC 具有更高的比表面积和更多的微孔结构。应用动力学模型(准一级、准二级和内扩散)和等温线模型(Langmuir 和 Freundlich)来分析吸附行为。吸附在生物炭上可以更好地用准二级和内扩散模型拟合,表明微孔和中孔在吸附过程中起重要作用,化学吸附占主导地位。吸附过程还受到物理和化学吸附的影响。总之,生物炭是一种低成本、有效和环保的吸附剂,可用于环境中去除农药。