Optimized composition of banana peel-derived activated carbon modified with aluminum oxide and chitosan for enhanced adsorption of Pb(II), Cu(II), and Cd(II) in wastewater treatment

IF 5.7 3区 环境科学与生态学 Q1 WATER RESOURCES
Van Thi Thanh Tran, Osamu Nakagoe, Hideaki Sano, Shuji Tanabe, Kai Kamada
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Abstract

This study highlights the importance of utilizing banana peel, an abundant and low-cost agricultural waste, as a sustainable precursor material for producing activated carbon for removing heavy metals in wastewater treatment. Adsorption experiments were conducted with single-metal (Pb2+) and mixed-metal (Pb2+, Cd2+, and Cu2+) solutions to evaluate the effects of synthetic sequences, weight ratios, and competitive adsorption. The results demonstrated that the activation sequence played a critical role in adsorption performance, with banana peel-derived activated carbon (BPAC) activated with ZnCl2 after pyrolysis (BPAC(I)) achieving around 5% higher Pb2+ adsorption compared to activation before pyrolysis (BPAC(II)). BPAC(I) was modified with Al2O3 and chitosan to significantly enhance its adsorption capacity for heavy metal ions. Composite adsorbents with varying weight ratios of BPAC, Al2O3 and chitosan (4:2:1 (denoted as 421), 3:2:1 (321), 3:1:2 (312) and 2:1:1 (211)) were synthesized and evaluated. Among all samples, 321 showed the highest adsorption performance, with a maximum adsorption capacity of 39.0 mg/g, reaching almost 100% Pb2+ removal after 24 h, suggesting that the increased weight ratio of hydrophilic Al2O3 with abundant surface –OH groups enhances the adsorption amount of Pb2+. A similar trend was also observed for other heavy metals in mixed solutions, with the adsorption percentage Pb2+, Cu2+ and Cd2+ were 85.1%, 88.9% and 26.5%, respectively. The effects of different experimental parameters (including adsorbent mass, pH level, and initial concentration of the solution) on the adsorption of Pb2+ ions were studied. The adsorption isotherms revealed that BPAC(I) and 312 fitted both the Langmuir and Freundlich isotherm models, with the latter providing a slightly better fit, suggesting heterogeneous surface adsorption. Regeneration tests found that the adsorption capacity of the adsorbent could be reduced to approximately one-third with four repeated adsorption–desorption cycles owing to irreversible adsorption and detachment of surface modifiers.

壳聚糖和氧化铝改性香蕉皮活性炭对废水中Pb(II)、Cu(II)和Cd(II)的吸附性能优化
本研究强调了利用香蕉皮这一丰富且低成本的农业废弃物作为可持续前体材料生产废水处理中去除重金属的活性炭的重要性。采用单金属(Pb2+)和混合金属(Pb2+、Cd2+和Cu2+)溶液进行吸附实验,评价合成序列、重量比和竞争性吸附的影响。结果表明,活化顺序对吸附性能起着关键作用,热解后经ZnCl2活化的香蕉皮衍生活性炭(BPAC(I))吸附Pb2+的能力比热解前(BPAC(II))提高了约5%。用Al2O3和壳聚糖对BPAC(I)进行改性,显著提高了其对重金属离子的吸附能力。合成了BPAC、Al2O3和壳聚糖(4:2:1(记为421)、3:2:1(321)、3:1:2(312)和2:1:1(211))不同质量比的复合吸附剂,并对其性能进行了评价。在所有样品中,321的吸附性能最高,最大吸附量为39.0 mg/g, 24 h后Pb2+的去除率几乎达到100%,这表明具有丰富表面-OH基团的亲水性Al2O3的重量比的增加提高了Pb2+的吸附量。对混合溶液中其他重金属的吸附也有类似的趋势,Pb2+、Cu2+和Cd2+的吸附率分别为85.1%、88.9%和26.5%。研究了不同实验参数(吸附剂质量、pH值、溶液初始浓度)对Pb2+吸附的影响。吸附等温线结果表明,BPAC(I)和312均符合Langmuir和Freundlich等温线模型,Freundlich模型拟合程度稍好,表明其表面吸附为非均相吸附。再生试验发现,由于表面改性剂的不可逆吸附和脱附,经过4次重复吸附-脱附循环后,吸附剂的吸附容量可降低约1 / 3。
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来源期刊
Applied Water Science
Applied Water Science WATER RESOURCES-
CiteScore
9.90
自引率
3.60%
发文量
268
审稿时长
13 weeks
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