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Selectivity Of Dielectric Heating:temperature-programmed Desorption (tpd)rnexperiments And Initiation Of Thermo-rnchromatographic Pulses

机译:介电加热的选择性:程序升温脱附(tpd)实验和热色谱脉冲的启动

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The occurrence and extent of selective dielectric heating with microwaves (MW) and radio waves (RW) was studied with a variety of model systems using temperature-programmed desorption (TPD). Over a wide pressure and temperature range, selectivity effects were neither found for polar adsorbates (compared to non-polar compounds) nor expressed by an overheating of metal clusters supported on a nearly MW- and RW-transparent support. In contrast, significant temperature gradients between particles consisting of materials with various dielectric losses could be established under certain conditions.rnThe utilization of adsorbates significantly modifying the dielectric properties of a material was investigated as a further approach to initiate selective dielectric heating. Applying water as a coupling medium, a combined heat and mass transport, which we call a thermo-chromatographic pulse, can be created in a packed-bed column consisting of various zeolites. In this case, selective heating of bed zones by more than 100 K was observed. The suitability of a material for the creation of thermo-chromatographic pulses depends on its dielectric properties as well as on its sorption properties with respect to water or other coupling media. The study provided further insight into not only the potential but also the limitations of selective dielectric heating of solid materials relevant to chemical engineering, environmental technology and sorption processing.
机译:使用温度编程解吸(TPD)的各种模型系统研究了微波(MW)和无线电波(RW)选择性电介质加热的发生和程度。在很宽的压力和温度范围内,既没有发现极性吸附物(与非极性化合物相比)的选择性效果,也没有通过在接近MW和RW透明的载体上负载的金属簇的过热来表现出选择性。相比之下,可以在一定条件下在由具有各种介电损耗的材料组成的颗粒之间建立显着的温度梯度。研究吸附物的利用显着改变了材料的介电性能,这是引发选择性介电加热的另一种方法。将水用作耦合介质,可以在由各种沸石组成的填充床色谱柱中产生传热和传质的组合,我们称其为热色谱脉冲。在这种情况下,观察到床层的选择性加热超过100K。材料对于产生热色谱脉冲的适用性取决于其介电性能以及其对水或其他耦合介质的吸附性能。该研究不仅提供了对固体材料选择性介电加热的潜力,而且还对与化学工程,环境技术和吸附处理有关的局限性提供了进一步的见解。

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