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高温处理竹生物炭对芳香族化合物的吸附机制及相关性

Correlations and adsorption mechanisms of aromatic compounds on a high heat temperature treated bamboo biochar.

作者信息

Yang Kun, Yang Jingjing, Jiang Yuan, Wu Wenhao, Lin Daohui

机构信息

Department of Environmental Science, Zhejiang University, Hangzhou 310058, China.

Department of Environmental Science, Zhejiang University, Hangzhou 310058, China.

出版信息

Environ Pollut. 2016 Mar;210:57-64. doi: 10.1016/j.envpol.2015.12.004. Epub 2015 Dec 17.

Abstract

Adsorption of aromatic compounds, including polycyclic aromatic hydrocarbons, nitrobenzenes, phenols, and anilines, on a bamboo biochar produced at 700 °C (Ba700) was investigated with the mechanism discussion by isotherm fitting using the Polanyi-theory based Dubinin-Ashtakhov (DA) model. Correlations of adsorption capacity (Q(0)) of organic compounds with their molecular sizes and melting points, as well as correlations of adsorption affinity (E) with their solvatochromic parameters (i.e., π* and αm), on the biochar, were developed and indicating that adsorption is captured by the pore filling mechanism and derived from the hydrophobic effects of organic compounds and the forming of π-π electron donor-acceptor (EDA) interactions and hydrogen bonding interactions of organic molecules with surface sites of the biochar. The effects of organic molecular sizes and melting points on adsorption capacity are ascribed to the molecular sieving effect and the packing efficiency of the organic molecules in the biochar pores, respectively. These correlations can be used to quantitatively estimate the adsorption of organic compounds on biochars from their commonly physicochemical properties including solvatochromic parameters, melting points and molecular cross-sectional area. The prediction using these correlations is important for assessing the unknown adsorption behaviors of new organic compounds and also helpful to guide the surface modification of biochars and make targeted selection in the environmental applications of biochars as adsorbents.

摘要

研究了包括多环芳烃、硝基苯、酚类和苯胺在内的芳香族化合物在700℃制备的竹生物炭(Ba700)上的吸附情况,并通过基于Polanyi理论的Dubinin-Ashtakhov(DA)模型进行等温线拟合来探讨吸附机理。建立了生物炭上有机化合物的吸附容量(Q(0))与其分子大小和熔点之间的相关性,以及吸附亲和力(E)与其溶剂化显色参数(即π*和αm)之间的相关性,结果表明吸附是通过孔填充机制实现的,源于有机化合物的疏水作用以及有机分子与生物炭表面位点形成的π-π电子供体-受体(EDA)相互作用和氢键相互作用。有机分子大小和熔点对吸附容量的影响分别归因于生物炭孔隙中的分子筛分效应和有机分子的堆积效率。这些相关性可用于根据有机化合物的常见物理化学性质(包括溶剂化显色参数、熔点和分子截面积)定量估算其在生物炭上的吸附情况。利用这些相关性进行预测对于评估新有机化合物未知的吸附行为很重要,也有助于指导生物炭的表面改性,并在生物炭作为吸附剂的环境应用中进行有针对性的选择。

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