Preparation and Characterization of Phosphoric Acid-Modified Biochar Nanomaterials with Highly Efficient Adsorption and Photodegradation Ability

被引:21
作者
Yang, Chuan Xi [1 ]
Zhu, Qing [2 ]
Dong, Wen Ping [3 ,4 ]
Fan, Yu Qi [5 ]
Wang, Wei Liang [1 ]
机构
[1] Qingdao Univ Technol, Sch Environm & Municipal Engn, Qingdao 266033, Peoples R China
[2] Shandong Res Ctr Stat Anal Sci & Technol, Jinan 250101, Peoples R China
[3] Shandong Acad Environm Sci Co Ltd, Jinan 250013, Peoples R China
[4] Shandong Huankeyuan Environm Engn Co Ltd, Jinan 250013, Peoples R China
[5] Shandong Normal Univ, Inst Environm & Ecol, Jinan 250358, Peoples R China
基金
中国国家自然科学基金;
关键词
PHOTOCATALYTIC DEGRADATION; WASTE-WATER; SORPTION; COMPOSITES; MECHANISMS; REMOVAL; SULFAMETHOXAZOLE; OXIDATION; IMPACT;
D O I
10.1021/acs.langmuir.1c01468
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Phosphoric acid-modified biochar (PMBC) was prepared using biochar (BC) as the carbon source and phosphoric acid as the activating agent. The PMBC exhibited an ordered vessel structure after deashing treatment, but the sidewalls became much rougher, the polarity (O/C atomic ratio of BC = 0.2320 and O/C atomic ratio of PMBC = 0.1604) decreased, and the isoelectric points (PI of BC = 5.22 and PI of PMBC = 5.51) and specific surface area (SSA of BC = 55.322 m(2)/g and SSA of PMBC = 62.285 m(2)/g) increased. The adsorption characterization of the removal of sulfadiazine (SDZ) from PMBC was studied. The adsorption of SDZ by PMBC was in accordance with the Langmuir isotherm model and the pseudo-second-order kinetics model, and the adsorption thermodynamics were shown as Gibbs free energy < 0, an enthalpy change of 19.157 kJ/mol, and an entropy change of 0.0718 kJ/(K.mol). The adsorption of SDZ by PMBC was a complicated monolayer adsorption that was spontaneous, irreversible, and endothermic, and physical adsorption and chemical adsorption occurred simultaneously. The adsorption process was controlled by microporous capture, electrostatic interactions, hydrogen-bond interactions, and pi-pi interactions. PMBC@TiO2 photocatalysts with different mass ratios between TiO2 and PMBC were prepared via the in situ sol-gel method. PMBC@TiO2 exhibited both an ordered vessel structure (PMBC) and irregular particles (TiO2), and it was linked via Ti-O-C bonds. The optimal mass ratio between TiO2 and PMBC was 3:1. The removal of SDZ via PMBC@TiO2 was dependent on the coupling of adsorption and photocatalysis. The PMBC-enhanced photocatalytic performance of PMBC@TiO2 resulted in a higher absorption of UV and visible light, greater generation of reactive oxygen species, high levels of adsorption of SDZ on PMBC, and the conjugated structure and oxygen-containing functional groups that promoted the separation efficiency of the hole-electron pairs.
引用
收藏
页码:9253 / 9263
页数:11
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