Comprehensive strategy for PAH separation using Graphene-iron composites: ecotoxicology, multitechnique approaches, and statistical optimization via RSM

Rwiddhi Sarkhel, Tamal Mandal, Papita Das
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Abstract

Wastewater treatment has become a trending environmental concern because the water crisis is a crucial concern. In this study, Graphene-iron composites were synthesized by different processes, and a comparative analysis was done for the best-optimized process; the efficacy of treating wastewater by adsorption and advanced oxidation (ozonation and Fenton oxidation) in removing polyaromatics was evaluated. The characteristics of the obtained iron nanocomposites were evaluated using different compositions and physicochemical and mechanical characteristics such as FTIR, SEM, TGA, DSC, and DTA. Various parameters like pH, the concentration of adsorbent, and adsorbent dosage were also assessed, which intimates that Graphene-iron composite using adsorption study has shown the removal using phenol and naphthalene of about 35% and 40% with optimum pH 8, adsorbent dosage 90 mg/ml, adsorbate concentration 180 mg/L; Fenton oxidation results depicted a removal of 50% and 60% with optimum pH 7–8, with concentration 5 mg/L at 15 min, and Ozonation intimated a removal of 40% and 45% with optimum pH 7–8 maintaining a concentration of 100 mg/L at 35 min which evaluated that the composites have been the potential adsorbents for current wastewater treatment and can be further used in the purification of drinking.

Graphical Abstract

石墨烯-铁复合材料分离多环芳烃的综合策略:生态毒理学、多技术方法和RSM统计优化
污水处理已成为一个趋势环境问题,因为水危机是一个至关重要的问题。本研究采用不同工艺合成了石墨烯-铁复合材料,并对最佳工艺进行了对比分析;评价了臭氧氧化和Fenton氧化两种深度氧化法处理废水中多芳烃的去除效果。通过FTIR、SEM、TGA、DSC和DTA等测试手段,对制备的铁纳米复合材料进行了理化和力学表征。对pH、吸附剂浓度、吸附剂用量等参数进行了评价,结果表明:石墨烯-铁复合材料在最佳pH为8、吸附剂用量为90 mg/ml、吸附剂浓度为180 mg/L时,对苯酚和萘的去除率分别为35%和40%左右;Fenton氧化在最佳pH值为7 ~ 8、浓度为5 mg/L、15 min时去除率分别为50%和60%,臭氧氧化在最佳pH值为7 ~ 8、浓度为100 mg/L、35 min时去除率分别为40%和45%,表明复合材料已成为当前废水处理的潜在吸附剂,可进一步用于饮用水净化。图形抽象
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