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首页> 外文期刊>Journal of Cleaner Production >Carboxyl functionalized Cinnamomum camphora for removal of heavy metals from synthetic wastewater-contribution to sustainability in agroforestry
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Carboxyl functionalized Cinnamomum camphora for removal of heavy metals from synthetic wastewater-contribution to sustainability in agroforestry

机译:羧基官能化的樟树用于从合成废水中去除重金属-促进农林业的可持续性

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摘要

Biosorption of heavy metals (HMs) using agricultural and forestry wastes (AFWs) attracts much attention due to numerous advantages, but more studies are necessary to develop effective biosorbent using locally available AFWs. Cinnamomum camphora leaves were used for HMs removal from synthetic wastewater. Carboxyl functionalized camphor leaf (CFCL) was prepared by a two-step modification including alkalization and carboxylation. Sorption of Cd(II), Cu(II) and Ni(II) was evaluated at different CFCL dose, pH, contact time and initial concentration of HMs. Experimental data were examined by sorption isotherms, kinetic models and thermodynamics equations. XPS, FTiR, XRD and SEM verify the introduction of carboxyl groups on CFCL and reveal sorption mechanism. CFCL is effective for fast removing metal ions with low concentration. The removal rate reaches 99%, and the maximum sorption capacity is 62.42 mg g(-1) Cd(II), 49.96 mg g(-1) Cu(II), and 26.42 mg g(-1) Ni(II), respectively. Sorption of Cd(Il), Cu(II) and Ni(II) onto CFCL is spontaneous and follows pseudo-second order and Langmuir model. CFCL also shows a good regeneration and cycling performance. This work suggests that the modified camphor leaf has remarkable potential as biosorbent for fast removal of HMs. Conversion of camphor leaf into value-added biosorbent reduces its negative effects and HMs pollution, providing a sustainable way to utilize agricultural and forestry wastes. (C) 2018 Elsevier Ltd. All rights reserved.
机译:利用农业和林业废物(AFW)对重金属(HMs)进行生物吸附由于具有诸多优势而引起了广泛关注,但是使用本地可用的AFW开发有效的生物吸附剂仍需要进行更多的研究。樟脑叶用于从合成废水中去除重金属。通过两步修饰(包括碱化和羧化)来制备羧基官能化樟脑叶(CFCL)。在不同的CFCL剂量,pH,接触时间和HMs初始浓度下评估了Cd(II),Cu(II)和Ni(II)的吸附。通过吸附等温线,动力学模型和热力学方程检查实验数据。 XPS,FTiR,XRD和SEM验证了CFCL上羧基的引入并揭示了吸附机理。 CFCL可快速去除低浓度的金属离子。去除率达到99%,最大吸附容量为62.42 mg g(-1)Cd(II),49.96 mg g(-1)Cu(II)和26.42 mg g(-1)Ni(II),分别。 Cd(II),Cu(II)和Ni(II)在CFCL上的吸附是自发的,并且遵循伪二级和Langmuir模型。 CFCL还显示出良好的再生和循环性能。这项工作表明,改性樟脑叶具有作为生物吸附剂的显着潜力,可以快速去除HMs。将樟脑叶转化为增值生物吸附剂可减少其负面影响和HMs污染,为利用农业和林业废弃物提供了一种可持续的方式。 (C)2018 Elsevier Ltd.保留所有权利。

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