Enhanced degradation of few-layer black phosphorus by fulvic acid: Processes and mechanisms

被引:3
|
作者
Chen, Xiaorui [1 ]
He, Wei [1 ]
Liang, Yujing [1 ]
Yuan, Chenyi [1 ]
Zhang, Shuhui [1 ]
Liu, Fei [1 ]
Xiao, Yi [2 ]
机构
[1] China Univ Geosci Beijing, Key Lab Groundwater Circulat & Environm Evolut, Minist Educ, Beijing 100083, Peoples R China
[2] Tech Univ Darmstadt, Inst Mat Sci, D-64287 Darmstadt, Germany
基金
中国国家自然科学基金;
关键词
Black phosphorus; Fulvic acid; Degradation; Chemical adsorption; Energy barrier; NATURAL ORGANIC-MATTER; NANOSHEETS; SURFACE; ADSORPTION; OXIDATION; TRANSPORT; TOXICITY; GRAPHENE; BINDING; OXIDE;
D O I
10.1016/j.watres.2023.120014
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The oxidation of the emerging nanomaterial black phosphorus (BP) affected by pH and oxygen has been carefully documented. However, in natural waters, there is a large amount of chemically reactive organic matters like fulvic acid (FA), whose impacts on degradation and stability of few-layer BP or BP nanosheets (BPNS) are scarcely disclosed. Hence, we investigated the kinetics of BPNS degradation products (H2PO2-, HPO32-, and PO43- ) in the presence of FA. The results showed that the apparent reaction rate constants of BPNS were 0.026, 0.050, and 0.060 d-1 under oxygen-and-light condition and 0.005, 0.016, and 0.023 d-1 under hypoxia-and-darkness condition at FA gradients of 0, 2.5, and 5 mgC/L, respectively. Microscopic observations, simple molecular simulation experiment, and density functional theory computation explained that FA significantly enhanced the degradation of P atoms on the BPNS surface through the indirect pathway of reducing the energy barrier of O2 dissociative adsorption and the direct pathway of chemical adsorption, which caused the P-P bond on the BPNS surface to break down and formed P-O bonds or C-P bonds. This study revealed for the first time the degradation mechanism of BPNS in the presence of FA, which is a chemical mechanism of the BPNS transformation behavior. It helps to make a more scientific risk assessment of BP in natural waters.
引用
收藏
页数:10
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