Zhang G, Zhang Y F, Fang L
School of Environment Science and Technology, Tianjin University, China.
Indoor Air. 2008 Feb;18(1):37-43. doi: 10.1111/j.1600-0668.2007.00502.x. Epub 2007 Dec 17.
One-dimensional partial differential equations were used to model the simultaneous water and VOC (Volatile Organic Compound) adsorption and desorption in a silica gel rotor which was recommended for indoor air cleaning. The interaction among VOCs and moisture in the adsorption and desorption process was neglected in the model as the concentrations of VOC pollutants in typical indoor environment were much lower than that of moisture and the adsorbed VOCs occupied only a minor portion of adsorption capacity of the rotor. Consequently VOC transfer was coupled with heat and moisture transfer only by the temperatures of the rotor and the air stream. The VOC transfer equations were solved by discretizing them into explicit up-wind finite differential equations. The model was validated with experimental data. The calculated results suggested that the regeneration time designed for dehumidification may be prolonged to allow complete removal of the VOC pollutants from the rotor. The regeneration temperature designed for dehumidification provides considerable efficiency for indoor air cleaning. The application of the model in estimating the cleaning capacity of the rotor for VOC pollutants was demonstrated.
Silica gel rotors, usually used to dehumidify air, were found to be effective to remove VOCs by experiments recently. But the removal characteristics of VOCs are different from that of moisture. Therefore, the rotor structure and operating parameters for dehumidification needs to be optimized for the use of removing moisture and VOCs. This paper gives a way for the optimization.
一维偏微分方程被用于模拟硅胶转轮中水分与挥发性有机化合物(VOC)的同时吸附和解吸过程,该转轮推荐用于室内空气净化。在该模型中,吸附和解吸过程中VOCs与水分之间的相互作用被忽略,因为典型室内环境中VOC污染物的浓度远低于水分浓度,且吸附的VOCs仅占转轮吸附容量的一小部分。因此,VOC的传递仅通过转轮和气流的温度与热量及水分传递相耦合。通过将VOC传递方程离散化为显式迎风有限差分方程来求解。该模型通过实验数据进行了验证。计算结果表明,为除湿设计的再生时间可能需要延长,以便从转轮中完全去除VOC污染物。为除湿设计的再生温度为室内空气净化提供了相当高的效率。展示了该模型在估算转轮对VOC污染物净化能力方面的应用。
硅胶转轮通常用于空气除湿,最近的实验发现其对去除VOCs也有效。但VOCs的去除特性与水分不同。因此,用于除湿的转轮结构和运行参数需要针对去除水分和VOCs进行优化。本文给出了一种优化方法。