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污水污泥沼气中硅氧烷的行为和吸附去除。

Behaviour and adsorptive removal of siloxanes in sewage sludge biogas.

机构信息

Department of Urban and Environmental Engineering, Graduate School of Engineering, Kyoto University, C-Cluster, Kyoto University - katsura, Nishikyo-ku, Kyoto, Japan.

出版信息

Water Sci Technol. 2010;61(8):2003-12. doi: 10.2166/wst.2010.101.

Abstract

We investigated the behaviour of siloxanes, which adversely affect biogas engines, as well as their concentration levels in sewage sludge biogas in Japan. We also performed experiments on the absorptive removal of siloxanes using various adsorbents and determined the main adsorbent characteristics required for the removal of siloxanes. The results of our study on the concentration and composition of siloxanes in biogas were similar to previous reports. Moreover, we found that the concentration of siloxanes changes in relation to the outside air temperature based on real-time measurements of siloxanes using a continuous analyser. We further speculated that the continuous analyser would accurately indicate the siloxane concentration in model biogas but overestimate the siloxane concentration in actual biogas because of positive interference by VOCs and other biogas components. In the siloxane adsorption experiment, the equilibrium uptake of both cyclic siloxanes, D4 and D5, was positively related to the BET-specific surface area of the adsorbents and the fraction of the external surface area taken up by relatively large diameter pores. We attributed the adsorption results to the fact that the siloxane molecules are generally larger than micropores; therefore, they are less susceptible to adsorption to micropores. Based on these results, we concluded that adsorbents with large BET-specific surface areas, especially those with a high external specific surface area and pores of relatively large diameters, are desired for the removal of siloxanes.

摘要

我们研究了硅氧烷在日本污水污泥沼气中的行为及其浓度,硅氧烷会对沼气发动机产生不利影响。我们还使用各种吸附剂进行了硅氧烷吸附去除实验,并确定了去除硅氧烷所需的主要吸附剂特性。我们对沼气中硅氧烷浓度和组成的研究结果与之前的报告相似。此外,我们发现,根据使用连续分析仪实时测量硅氧烷的结果,硅氧烷的浓度会随外界温度的变化而变化。我们进一步推测,连续分析仪将准确指示模型沼气中的硅氧烷浓度,但由于 VOC 和其他沼气成分的正干扰,会高估实际沼气中的硅氧烷浓度。在硅氧烷吸附实验中,环状硅氧烷 D4 和 D5 的平衡吸附量与吸附剂的 BET 比表面积和相对大直径孔的外表面面积分数呈正相关。我们将吸附结果归因于硅氧烷分子通常大于微孔的事实;因此,它们不太容易被吸附到微孔中。基于这些结果,我们得出结论,对于去除硅氧烷,需要具有大 BET 比表面积的吸附剂,特别是具有高外比表面积和相对大直径孔的吸附剂。

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