首页> 外文期刊>Separation and Purification Technology >Synthesis and fabrication of adsorptive carbon nanoparticles (ACNs)/PDMS mixed matrix membranes for efficient CO2/CH4 and C3H8/CH4 separation
【24h】

Synthesis and fabrication of adsorptive carbon nanoparticles (ACNs)/PDMS mixed matrix membranes for efficient CO2/CH4 and C3H8/CH4 separation

机译:吸附碳纳米粒子(ACNS)/ PDMS混合基质膜的合成和制备用于有效CO2 / CH4和C3H8 / CH4分离的分离

获取原文
获取原文并翻译 | 示例
           

摘要

Polydimethylsiloxane (PDMS) mixed matrix membranes (MMM)s containing microporous adsorptive carbon nanoparticles (ACNs) are developed for CO2 /CH4 and C3H8/CH4 separation. The ACNs are produced by the pyrolysis of a phenolic resin precursor at 700 degrees C and transformed into fine particles through ball-milling. For functionalization of the particles and widening of the pores, the prepared ACNs undergo ozone treatment to increase the sorption capacity and to reduce diffusional limitations. Successful accomplishment of modification is evidenced by pore size distribution, X-ray diffraction, and Fourier transform infrared spectra analyses. MMMs containing different amounts of both native ACNs (ACN-N) and oxidized ACNs (ACN-O) are evaluated in terms of permeability, solubility and diffusivity coefficients for target gases. Based on the results, higher pressure and lower temperature promote gas separation due to capillary condensation of penetrants in the micropores of the particles present in the MMMs. Activation energy of permeation, diffusion, and enthalpy of sorption are also determined for MMMs and compared to the pure PDMS membrane. The real selectivity in PDMS/ACN-O (10%) membrane for CO2/CH4 and C3H8/CH4 are 57.3% and 53.1% higher than those in pure PDMS membrane. This enhancement is attributed to the selective adsorption and surface diffusion of the more adsorbable component in ACNs as well as partial diffusion hindrance of less adsorbing component (CH4) in the presence of more adsorbable component (e.g., CO2, C3H8) onto the surface of ACN pores. Also, CO2 and C3H8 permeability improved by 61.6% and 47.7% respectively, compared to the pure PDMS membrane and is attributed to the formation of extra free volume in PDMS matrix as a result of chain packing disruption in the presence of ACNs. According to the findings, the fabricated membranes are promising candidates for natural gas sweetening and hydrocarbon recovery.
机译:含有微孔吸附碳纳米颗粒(ACNS)的聚二甲基硅氧烷(PDMS)混合基质膜(MMM)用于CO 2 / CH 4和C 3 H 8 / CH 4分离。通过在700℃下的酚醛树脂前体的热解产生ACN,并通过球磨成细颗粒。对于颗粒的官能化和孔的加宽,制备的ACN经受臭氧处理以增加吸附能力并降低扩散局限性。孔径分布,X射线衍射和傅里叶变换红外光谱分析证明了修改的成功完成。含有不同量的天然Acns(ACN-N)和氧化ACNS(ACN-O)的MMM在靶气体的渗透性,溶解度和扩散系数方面评估。基于结果,较高的压力和较低的温度促进了由于MMMS中存在的颗粒的微孔中的荧光剂的毛细管缩小而导致的气体分离。还测定渗透,扩散和吸附焓的活化能量,并与纯PDMS膜相比。 PDMS / ACN-O(10%)膜中的真实选择性用于CO 2 / CH4和C3H8 / CH4的膜为57.3%,比纯PDMS膜中高5.3%和53.1%。这种增强归因于ACNS中更可吸附组分的选择性吸附和表面扩散以及在更可吸附的组分(例如,CO 2,C 3 H 8)上的较少吸附组分(CH 4)的部分扩散阻断到ACN的表面上毛孔。同样,与纯PDMS膜相比,CO 2和C3H8渗透性分别提高了61.6%和47.7%,并且由于在ACNS存在下,由于链填充破坏而归因于PDMS基质中的超额自由体积。根据调查结果,制造的膜是用于天然气甜味和烃恢复的有希望的候选者。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号