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The elimination of siloxanes from the biogas of a wastewater treatment plant by means of an adsorption process

机译:通过吸附工艺消除废水处理厂沼气中的硅氧烷

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Siloxanes present in the biogas produced during anaerobic digestion in wastewater treatment plants (WWTPs) can damage the mechanism of cogeneration heat engines and obstruct the process of energy valorization. The objective of this research is to detect the presence of siloxanes in the biogas and evaluate a procedure for their elimination. A breakthrough curve of a synthetic decamethylcyclopentasiloxane on an experimental bed of activated carbon was modeled and the theoretical mathematical model of the adsorption process was adjusted. As a result, the constants of the model were obtained: the mass transfer constant, Henry's equilibrium constant, and the Eddy diffusion. The procedure developed allows the adsorption equilibrium of siloxanes on activated carbon to be predicted, and makes it possible to lay the basis for the design of an appropriate activated carbon module for the elimination of siloxanes in a WWTP.
机译:废水处理厂(WWTP)厌氧消化过程中产生的沼气中存在的硅氧烷可能会破坏热电联产热机的机理,并阻碍能量平衡过程。这项研究的目的是检测沼气中硅氧烷的存在,并评估其消除方法。模拟了活性炭实验床上合成十甲基环五硅氧烷的穿透曲线,并调整了吸附过程的理论数学模型。结果,获得了模型的常数:传质常数,亨利平衡常数和涡旋扩散。开发的程序可以预测硅氧烷在活性炭上的吸附平衡,并有可能为设计合适的活性炭模块以消除WWTP中的硅氧烷奠定基础。

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