Adsorption of ibuprofen from aqueous solution by modified date palm biochar: Performance, optimization, and life cycle assessment

被引:4
|
作者
Shaheen, Jamal F. [1 ]
Eniola, Jamiu O. [1 ]
Sizirici, Banu [1 ]
机构
[1] Khalifa Univ, Civil Infrastruct & Environm Engn Dept, POB 127788, Abu Dhabi, U Arab Emirates
来源
关键词
Pharmaceuticals; Response surface methodology; Adsorption; Life cycle assessment; Modified biochar; WASTE-WATER TREATMENT; METHYLENE-BLUE; PROCESS PARAMETERS; ACTIVATED BIOCHAR; REMOVAL; CONTAMINANTS; ACID; KINETICS; EQUILIBRIUM; GROUNDWATER;
D O I
10.1016/j.biteb.2023.101696
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
In this study, date palm biochar (DP) was modified through acidification with HCl (DPA), alkali treatment with NaOH (DPB), chitosan (chitosan-DP), metal loading with Fe3O4 3 O 4 (DPI) and acidification and metal loading with HCl + Fe3O4 3 O 4 (DPAI) to enhance ibuprofen (IBP) adsorption from wastewater. Optimization was done using BoxBehnken model-based response surface methodology. DPAI showed the highest IBP adsorption capacity (72.2 mg/g) surpassing DPA (71.5 mg/g), DPB (67.8 mg/g), DPI (67.81 mg/g), DP (65.7 mg/g) and Chitosan-DP (61.32 mg/g) under optimal conditions (pH- 2, concentration- 150 mg/L, time- 20 h). This was due to improved pore structure and increased adsorption sites. However, life cycle assessment revealed that DPAI had the highest environmental impact out of all the modified biochars with a Cumulative Energy Demand (CED) of 143.22 MJ/kg and a Global Warming Potential (GWP) of 10 kg CO2eq. 2 eq. Sensitivity analysis suggested that transitioning to renewable energy sources could reduce GHG by 37.4 % and CED by 22.1 %. Additionally, reducing iron content can mitigate 22.1 % of GHG and 8.1 % of CED for DPAI. Nonetheless, DPAI still demonstrated effective adsorption rates after 2 cycles of regeneration study.
引用
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页数:12
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