An Impact of Sorbent-Filler on the Temperature of Thermal Degradation of Composite Sorption-Active Materials Based on Zeolite and Fluorinated Ethylene Derivatives

IF 0.6 4区 化学 Q4 CHEMISTRY, APPLIED
L. L. Ferapontova, Yu. A. Ferapontov, A. S. Sergunin, N. V. Posternak, I. V. Zakharov
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引用次数: 0

Abstract

The work continues the research of the physicochemical properties of composite sorption-active material (CSAM) based on polymers of fluorinated ethylene derivatives (fluoroplastics) and various adsorbents-fillers and is aimed at identifying patterns of influence of the adsorbent-filler amount in CSAM on the temperature of their thermal degradation in order to find optimal parameters of thermal regeneration. Based on studies using thermogravimetric and differential thermal analysis methods, a relationship was established between the temperature of thermal degradation of composite sorption-active materials based on polymers of fluorinated ethylene derivatives and the content of zeolite NaX therein. In the course of the experiments, it was found that at a temperature of 112.7 ± 1.5°C, the process of water vapor desorption from CSAM begins passing through a maximum at 172.8 ± 1.2°C and ending at 305.8 ± 1.9°C. The decrease in the weight of the studied CSAM samples was 26.0 ± 0.2%, which confirms almost complete desorption of water vapor from the samples under the experimental conditions. This conclusion may be proved by the gas chromatography analysis of the substances released in the temperature range of 90–310°C. Only water molecules and a small amount of acetone, which was used as a solvent at the synthesis stage, were recorded in the sample. The presence of only one endothermic effect on the DTA curves in the temperature range from 105 to 320°C indicates that during the desorption, energy is used up only on one stage—the separation of sorbate molecules from the sorbent surface. This hypothesis is validated by the fact that the DTG curves of water vapor desorption from CSAM and the NaX crystallite (acting as an adsorbent-filler) are almost identical. The fact that there is no influence of the matrix and sorbate diffusion in the secondary porous structure of the CSAM on the value of the activation energy of the desorption process, also confirms this hypothesis. It has been experimentally shown that thermal degradation of the polymer matrix begins in the temperature range of 390...450°C depending on the sample composition. An increase in the thermal stability of the fluoropolymer matrix of F-42V grade by 45–90°C with the introduction of more than 6 wt % of zeolite NaX was established. It was shown that thermal desorption at temperatures up to 390°C occurs without degradation of the material. This conclusion was validated experimentally through carrying out of 25 sorption–desorption cycles of water vapor by the studied materials and a comparison of these parameters with similar indicators of pelletized zeolite NaX-B-1G produced on a large scale, recorded under similar conditions. The geometry of sorbent samples was the same. Sorption was carried out under batch conditions at a relative humidity of ω = 44% and a temperature of (20 ± 2)°C for 120 min. Desorption of water vapor from the samples was conducted at a temperature of 340.8 ± 1.5°C for 4 h. After each sorption–desorption stage, the change in the sample weight was detected. The study of water vapor mass transfer processes in 25 successive sorption–desorption cycles confirmed the possibility of complete thermal regeneration of the obtained CSAM. The findings made it possible to recommend optimal technological parameters for the regeneration of CSAM with minimal resource costs.

Abstract Image

吸附剂-填料对沸石及氟化乙烯衍生物复合吸附活性材料热降解温度的影响
该工作继续研究基于氟化乙烯衍生物(氟塑料)和各种吸附剂-填料的聚合物的复合吸附活性材料(CSAM)的物理化学性质,旨在确定CSAM中吸附剂-填料量对其热降解温度的影响规律,以找到热再生的最佳参数。通过热重法和差热分析法的研究,建立了氟化乙烯衍生物聚合物复合吸附活性材料热降解温度与其沸石NaX含量之间的关系。在实验过程中发现,在112.7±1.5℃的温度下,CSAM的水蒸气解吸过程开始,在172.8±1.2℃达到最大值,在305.8±1.9℃结束。所研究的CSAM样品的重量减少了26.0±0.2%,证实了在实验条件下样品中的水蒸气几乎完全解吸。这一结论可以通过在90 ~ 310℃温度范围内释放的物质的气相色谱分析得到证实。样品中只记录了水分子和少量的丙酮,丙酮在合成阶段用作溶剂。在105 ~ 320℃的温度范围内,DTA曲线上只存在一个吸热效应,这表明在解吸过程中,能量只在一个阶段被消耗——山梨酸分子与吸附剂表面的分离。CSAM和NaX晶体(作为吸附剂-填料)水蒸气解吸的DTG曲线几乎相同,这一事实证实了这一假设。基质和山梨酸盐在CSAM次级多孔结构中的扩散对脱附过程活化能的值没有影响,也证实了这一假设。实验表明,聚合物基体的热降解始于390℃的温度范围。450°C,取决于样品成分。引入超过6 wt %的沸石NaX后,F-42V级含氟聚合物基体的热稳定性提高了45-90°C。结果表明,在高达390℃的温度下,热解吸不会导致材料的降解。通过实验对所研究材料进行了25次水蒸气的吸附-解吸循环,并将这些参数与在类似条件下记录的大规模生产的NaX-B-1G颗粒状沸石的类似指标进行了比较,验证了这一结论。吸附剂样品的几何形状相同。在相对湿度为ω = 44%,温度为(20±2)°C的批量条件下,吸附120 min。在340.8±1.5°C的温度下,对样品中的水蒸气进行解吸4 h。每个吸附-解吸阶段结束后,检测样品重量的变化。在连续25个吸附-解吸循环中对水蒸气传质过程的研究证实了所获得的CSAM完全热再生的可能性。这些发现使得以最小的资源成本推荐CSAM再生的最佳技术参数成为可能。
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来源期刊
CiteScore
1.60
自引率
11.10%
发文量
63
审稿时长
2-4 weeks
期刊介绍: Russian Journal of Applied Chemistry (Zhurnal prikladnoi khimii) was founded in 1928. It covers all application problems of modern chemistry, including the structure of inorganic and organic compounds, kinetics and mechanisms of chemical reactions, problems of chemical processes and apparatus, borderline problems of chemistry, and applied research.
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