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沼气升级:去除硅氧烷的最佳活性炭性能。

Biogas upgrading: optimal activated carbon properties for siloxane removal.

机构信息

LEQUIA, Institute of the Environment. University of Girona , Campus Montilivi, 17071 Girona, Catalonia, Spain.

出版信息

Environ Sci Technol. 2014 Jun 17;48(12):7187-95. doi: 10.1021/es501274a. Epub 2014 Jun 2.

Abstract

A total of 12 commercial activated carbons (ACs) have been tested for the removal of octamethylcyclotetrasiloxane (D4) in dynamic adsorption experiments using different carrier gases and D4 concentrations. Characterization of the ACs included several physical and chemical techniques. The D4 adsorption capacities were strongly related with the textural development of the ACs. Results showed that the optimum adsorbent for D4 is a wood-based chemically activated carbon, which rendered an adsorption capacity of 1732 ± 93 mg g(-1) using 1000 ppm (v/v) of D4 with dry N2 as the carrier gas. When the concentration of D4 was lowered to typical values found in biogas, the adsorption capacity was halved. The presence of major biogas compounds (i.e., CH4 and CO2) and humidity further reduced the D4 adsorption capacity. The polymerization of D4 over the surface of all ACs was found to be relevant after prolonged contact times. The extent of this phenomenon, which may negatively affect the thermal regeneration of the AC, correlated reasonably well with the presence of phenolic and carboxylic groups on the carbon surfaces.

摘要

采用不同载气和 D4 浓度,对 12 种商用活性炭(AC)进行了动态吸附实验,以去除八甲基环四硅氧烷(D4)。对 AC 的表征包括多种物理和化学技术。D4 的吸附容量与 AC 的结构发展密切相关。结果表明,对于 D4 的最佳吸附剂是一种木质基化学活性炭,在使用干 N2 作为载气的情况下,用 1000 ppm(v/v)的 D4 处理时,其吸附容量为 1732±93mg g(-1)。当 D4 的浓度降低到沼气中常见的典型值时,吸附容量减半。沼气中的主要化合物(即 CH4 和 CO2)和湿度的存在进一步降低了 D4 的吸附容量。在长时间接触后,发现所有 AC 表面上的 D4 聚合反应是相关的。这种现象可能会对 AC 的热再生产生负面影响,其程度与碳表面上酚类和羧酸基团的存在有很好的相关性。

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