School of Public Health, Xiangnan University, Chenzhou, 423000, China.
School of Basic Medicine, Xiangnan University, Chenzhou, 423000, China.
Sci Rep. 2024 Oct 5;14(1):23212. doi: 10.1038/s41598-024-73530-5.
The presence of chlorophenols in water poses a significant threat to human health and the environment. In response to this issue, a study was undertaken to evaluate the catalytic capabilities of chlorinated Heme towards common chlorophenols present in water, such as 2,4-dichlorophenol, 2,4,6-trichlorophenol, and pentachlorophenol. The study employed the B3LYP method, a sophisticated computational technique within density functional theory, to investigate the molecular interactions and transformations involved. It scrutinized structural parameters, Wiberg Bond Indices, which offer insights into the strength and nature of chemical bonds, along with spectroscopic data including infrared vibrational spectra, ultraviolet-visible absorption spectra, and molecular fluorescence spectra. Furthermore, the research analyzed molecular binding energies and orbital energy levels before and after the formation of complexes between Heme and the targeted chlorophenols. The findings indicate that Heme displays a notable activation characteristic towards these chlorophenols. This suggests that Heme could act as an effective catalyst in the degradation of chlorophenols in water, presenting a novel approach to water purification. The theoretical insights derived from this study are invaluable, potentially guiding the development of more efficient catalytic systems for treating chlorophenol-contaminated water, thereby reducing the environmental and health risks associated with these hazardous compounds.
水中氯酚的存在对人类健康和环境构成了重大威胁。针对这一问题,开展了一项研究,评估了氯化血红素对水中常见氯酚(如 2,4-二氯苯酚、2,4,6-三氯苯酚和五氯苯酚)的催化能力。该研究采用了密度泛函理论中的 B3LYP 方法,这是一种复杂的计算技术,用于研究分子相互作用和转化。它研究了结构参数和 Wiberg 键指数,这些参数提供了有关化学键强度和性质的深入了解,同时还分析了包括红外振动光谱、紫外-可见吸收光谱和分子荧光光谱在内的光谱数据。此外,该研究还分析了血红素与目标氯酚形成配合物前后的分子结合能和轨道能级。研究结果表明,血红素对这些氯酚具有显著的激活特性。这表明血红素可以在水中氯酚的降解中充当有效的催化剂,为水净化提供了一种新方法。本研究得出的理论见解非常宝贵,可能为开发更有效的处理含氯酚污染水的催化体系提供指导,从而降低这些有害化合物带来的环境和健康风险。