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Transitional Adsorption and Partition of Nonpolar and Polar Aromatic Contaminants by Biochars of Pine Needles with Different Pyrolytic Temperatures

机译:不同热解温度下松针生物炭对非极性和极性芳香污染物的过渡吸附和分配

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摘要

The combined adsorption and partition effects of biochars with varying fractions of noncarbonized organic matter have not been clearly defined. Biochars, produced by pyrolysis of pine needles at different temperatures (100-700℃, referred as P100-P700), were characterized by elemental analysis, BET-N_2 surface areas and FTIR. Sorption isotherms of naphthalene, nitrobenzene, and m-dinitrobenzene from water to the biochars were compared. Sorption parameters (N and logK_f) are linearly related to sorbent aromaticities, which increase with the pyrolytic temperature. Sorption mechanisms of biochars are evolved from partitioning-dominant at low pyrolytic temperatures to adsorption-dominant at higher pyrolytic temperatures. The quantitative contributions of adsorption and partition are determined by the relative carbonized and noncarbonized fractions and their surface and bulk properties. The partition of P100-P300 biochars originates from an amorphous aliphatic fraction, which is enhanced with a reduction of the substrate polarity; for P400-P600, the partition occurs with a condensed aromatic core that diminishes with a further reduction of the polarity. Simultaneously, the adsorption component exhibits a transition from a polarity-selective (P200-P400) to a porosity-selective (P500-P600) process, and displays no selectivity with P700 and AC in which the adsorptive saturation capacities are comparable to predicted values based on the mondlayer surface coverage of molecule.
机译:尚未明确定义生物炭与不同比例的非碳化有机物的结合吸附和分配作用。通过元素分析,BET-N_2比表面积和FTIR对松针在不同温度(100-700℃,称为P100-P700)下热解产生的生物炭进行表征。比较了萘,硝基苯和间二硝基苯从水到生物炭的吸附等温线。吸附参数(N和logK_f)与吸附剂芳族性线性相关,吸附剂芳族性随热解温度的升高而增加。生物炭的吸附机理从低热解温度下的分配占主导地位发展到较高热解温度下的吸附占主导地位。吸附和分配的定量贡献取决于相对碳化和未碳化的馏分及其表面和整体性质。 P100-P300生物炭的分配来自无定形脂肪族部分,该部分随底物极性的降低而增强;对于P400-P600,分配发生在缩合的芳族核上,该芳族核随着极性的进一步降低而减小。同时,吸附组分表现出从极性选择(P200-P400)到孔隙率选择(P500-P600)的过渡过程,并且在P700和AC中没有显示出选择性,在这种情况下,吸附饱和容量可与基于预测的值相比在分子层的表面覆盖。

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  • 来源
    《Environmental Science & Technology》 |2008年第14期|5137-5143|共7页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 14:05:18

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