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Effectiveness of sunflower seed husk biochar for removing copper ions from wastewater: a comparative study

机译:葵花籽壳生物炭去除废水中铜离子的有效性:比较研究

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Copper represents one of major hazardous pollutants in wastewater. The aim of this study is the comparison between sunflower seed husk biochar (SSHB) and activated carbon (AC) and sunflower seed husk feedstock (SSHF) in their efficiency of Cu2+ removing from aqueous solutions. The removed Cu2+ was monitored for various intervals extended to 96 h at 298, 303, and 308 K in batch experiments. Adsorption reactions showed that SSHB was superior in Cu2+ removal process at all tested temperatures in comparison with AC and SSHF. Results of surface properties and Fourier transform infrared spectroscopy confirmed the higher surface reactivity of SSHB than AC and SSHF. Both SSHF and AC were affected by time and temperature of reaction in their removal efficiency for Cu2+ while SSHB was not affected by these parameters. A deformation observable under a scanning electron microscope and a higher release of dissolved organic carbon from SSHF after the reaction with Cu2+ and vice versa in SSHB suggested the electrostatic ion exchange and complex reactions mechanisms for Cu2+ removal by SSHF in addition to the physical sorption controlled by surface area and porosity of SSHB. The adsorption kinetics of Cu2+ was fitted to pseudo second order equation and obtained results indicate that SSHB is a recalcitrant and a strong biosorbent. Therefore, SSHB can be introduced as a cost-effective and efficient biosorbent for copper removal from wastewaters.
机译:铜是废水中的主要有害污染物之一。本研究的目的是比较葵花籽壳生物炭(SSHB)和活性炭(AC)和葵花籽壳原料(SSHF)从水溶液中去除Cu 2 + 的效率。在批处理实验中,在298、303和308 K下监测去除的Cu 2 + 的各种时间间隔,直至96 h。吸附反应表明,与AC和SSHF相比,SSHB在所有测试温度下的Cu 2 + 去除过程均优越。表面性能和傅立叶变换红外光谱的结果证实,SSHB的表面反应性高于AC和SSHF。 SSHF和AC对Cu 2 + 的去除效率均受反应时间和温度的影响,而SSHB不受这些参数的影响。扫描电子显微镜下观察到的形变以及与Cu 2 + 反应后SSHF中较高的溶解有机碳释放量,反之亦然,这表明Cu 的静电离子交换和复杂的反应机理除受SSHB表面积和孔隙率控制的物理吸附作用外,还可以通过SSHF进行> 2 + 去除。将Cu 2 + 的吸附动力学拟合为拟二阶方程,得到的结果表明SSHB是顽固性强的生物吸附剂。因此,SSHB可以作为一种经济高效的生物吸附剂引入,用于从废水中去除铜。

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