...
首页> 外文期刊>Applied Surface Science >Atomistic description of phenol, CO and H_2O adsorption over crystalline and amorphous silica surfaces for hydrodeoxygenation applications
【24h】

Atomistic description of phenol, CO and H_2O adsorption over crystalline and amorphous silica surfaces for hydrodeoxygenation applications

机译:加氢脱氧应用中结晶和无定形二氧化硅表面上苯酚,CO和H_2O吸附的原子描述

获取原文
获取原文并翻译 | 示例

摘要

The upgrading of lignin-derived bio-oils involves a HydroDeOxygenation (HDO) reaction through either the Hydrogenation (Hyd) or the Direct DeOxygenation (DDO) route, the latter limiting hydrogen consumption. Herein, dispersion-corrected DFT has been used to evaluate the adsorption behavior of phenol (as a representative model of bio-oils) and two by-products (water and CO) over various crystalline and amorphous silica surfaces to evaluate their potential selectivity (DDO/Hyd) and efficiency (low inhibiting effect) for HDO processing. Phenol can adsorb through three modes, flat pi-interaction, flat O-interaction or perpendicular O-interaction. All crystalline surfaces show a preference for the flat pi-interaction, which is expected to promote the Hyd route. Over amorphous surfaces the flat O-interaction dominates, and a very specific and strong interaction (around-120 kJ/mol) was found on SiO2-3.3 and SiO2-2.0 surfaces where the phenol molecule loses its aromaticity, which is very promising for its degradation under catalytic conditions. In addition, this makes those surfaces very efficient to adsorb selectively phenol in presence of water and CO. Remarkably, on all silica surfaces, the interaction energy of CO is nearly negligible, which makes them more attractive for HDO process compared to sulfide catalysts with respect to the inhibiting effect criteria.
机译:木质素衍生生物油的提质涉及通过加氢(Hyd)或直接脱氧(DDO)途径进行的加氢脱氧(HDO)反应,后者限制了氢的消耗。本文中,使用分散校正的DFT评估了苯酚(作为生物油的代表模型)和两种副产物(水和CO)在各种晶体和无定形二氧化硅表面上的吸附行为,以评估其潜在的选择性(DDO) / Hyd)和效率(低抑制效果)。苯酚可以通过三种方式吸附:平面pi相互作用,平面O相互作用或垂直O相互作用。所有晶体表面均表现出对平坦pi相互作用的偏爱,有望促进Hyd途径。在无定形的表面上,平坦的O相互作用占主导地位,并且在SiO2-3.3和SiO2-2.0的表面上发现了非常特殊而强烈的相互作用(约120 kJ / mol),其中苯酚分子失去了芳香性,这对于其分子结构是非常有希望的在催化条件下降解。此外,这使得那些表面在水和CO存在下非常有效地选择性吸附苯酚。值得注意的是,在所有二氧化硅表面上,CO的相互作用能几乎可以忽略不计,这使得它们相对于硫化催化剂而言对HDO工艺更具吸引力。达到抑制效果的标准。

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