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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Molecular dynamics simulations of adsorption of hydrophobic 1,2,4-trichlorobenzene (TCB) on hydrophilic TiO2 in surfactant emulsions and experimental process efficiencies of photo-degradation and -dechlorination
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Molecular dynamics simulations of adsorption of hydrophobic 1,2,4-trichlorobenzene (TCB) on hydrophilic TiO2 in surfactant emulsions and experimental process efficiencies of photo-degradation and -dechlorination

机译:疏水性1,2,4-三氯苯(TCB)在表面活性剂乳液中亲水性TiO2上的吸附的分子动力学模拟以及光降解和脱氯的实验过程效率

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Molecular dynamics simulations have been carried out to assess event details in the adsorption of the hydrophobic substrate 1,2,4-trichlorobenzene (TCB) on the hydrophilic TiO2 particle surface in the presence of the biosurfactant 4-O-(4',6'-di-O-acetyl-2',3'-di-O-alkanoyl-P-D-mannopyranosyl)-D-erythritol (MEL) and the SDS (sodium dodecylsulfate) surfactant in aqueous media at ambient temperature with interaction forces between organic molecules and TiO2 calculated from Lennard-Jones and Coulomb potential models. The surfactant and the TCB substrate were arranged in the vicinity of TiO2 using 768 water molecules in the simulations. Results indicate that the MEL molecules adsorb on the TiO2 surface in ca.5ps(k=2 x 10~(11) s~(-1)) through the oxygen atoms ofthe hydrophilic functions. Contact distance between the MEL and the TiO2 surface shortened further after 10 ps with adsorption controlled mostly by van der Waals' forces. The TCB molecules are trapped within the alkyl chains ofthe MEL system, which subsumes TCB to a greater extent by the repulsion of water, thereby facilitating the TCB molecules to approach the highly hydrophilic and positively charged TiO2 particle surface. Along with the simulations, also examined was the photodegradation of this hydrophobic TCB substrate that takes place at the TiO2/water interface in the presence of the MEL biosurfactant. For comparison, the advantages of the MEL in this task and of the commonly used SDS surfactant were determined under otherwise identical experimental conditions (200 mg L~(-1) of surfactants) by examining the dynamics of the photo-induced degradation and dechlorination of TCB. The photodegradation of TCB was nearly quantitative in MEL/TiO2 in contrast to only ca. 22% complete in SDS/TiO2 dispersions. It is deduced that wastewater treatments with the highly hydrophilic TiO2 are seriously limited in their photodegradation of hydrophobic pollutants, an issue easily resolvable by the presence of biodegradable surfactants.
机译:已经进行了分子动力学模拟,以评估在存在生物表面活性剂4-O-(4',6'的情况下,疏水性底物1,2,4-三氯苯(TCB)在亲水性TiO2颗粒表面上的吸附过程中的事件细节。 -二-O-乙酰基-2',3'-二-O-烷酰基-PD-甘露吡喃糖基)-D-赤藓糖醇(MEL)和SDS(十二烷基硫酸钠)表面活性剂在环境温度下在有机分子之间的相互作用力下根据Lennard-Jones和库仑势模型计算的TiO2和TiO2。在模拟中,使用768个水分子将表面活性剂和TCB基材排列在TiO2附近。结果表明,MEL分子通过亲水功能的氧原子以约5ps(k = 2 x 10〜(11)s〜(-1))的速度吸附在TiO2表面。 MEL与TiO2表面之间的接触距离在10 ps后进一步缩短,而吸附主要受范德华力控制。 TCB分子被捕集在MEL系统的烷基链中,而MEL系统通过水的排斥在更大程度上包含TCB,从而使TCB分子接近亲水性高且带正电的TiO2颗粒表面。与模拟一起,还研究了这种疏水性TCB底物在MEL生物表面活性剂存在下在TiO2 /水界面处的光降解。为了进行比较,在其他相同的实验条件下(200 mg L〜(-1)表面活性剂),通过研究光致降解和脱氯的动力学来确定MEL在此任务中的优势以及常用的SDS表面活性剂的优势。 TCB。相比之下,在MEL / TiO2中TCB的光降解几乎是定量的。在SDS / TiO2分散液中的含量为22%。可以推断出,用高度亲水的TiO2处理废水时,疏水性污染物的光降解受到严重限制,由于存在可生物降解的表面活性剂,该问题很容易解决。

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