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Preparation and characterization of Ca(II) cross-linking modified pectin microspheres for Pb(II) adsorption

机译:Ca(II)交联改性果胶微球的制备及表征用于Pb(II)吸附

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摘要

A novel adsorbent, composed of cross-linked de-esterified pectin microspheres, was prepared via cross-linking with Ca(II) and modification by de-esterified pectin, low-methoxyl pectin (LMP) and pectic acid (PA). Fourier transform infrared (FTIR), energy dispersive spectrometry (EDS), scanning electron microscopy (SEM) and atomic absorption spectroscopy (AAS) were applied too, exhibiting a successful fabrication, good adsorption ability, and well-defined surface microstructure beneficial to Pb(II) adsorption. The adsorption ability of pectin microspheres (PMs), low-methoxyl pectin microspheres (LMPMs) and pectic acid microspheres (PAMs) for Pb(II) in aqueous solution were explored. The maximum adsorption capacity of PMs, LMPMs and PAMs was 127 mg.g(-1), 292 mg.g(-1) and 325 mg.g(-1) at pH 5.0 respectively, indicating a great improvement of LMPMs and PAMs in the adsorption ability for Pb(II) compared with PMs. Furthermore, the adsorption mechanism was proposed. The experimental data were well fitted with pseudo-second-order kinetic and Langmuir isotherm models. Five-cycle reusability tests demonstrated that microspheres could be used repeatedly. All the results confirmed that LMPMs and PAMs, which presented outstanding adsorption capability and reusability, could be a good candidate for wastewater purification.
机译:通过与Ca(II)的交联并通过脱酯化果胶,低甲氧基果胶(LMP)和果胶(PA)来制备由交联的去酯化果胶微球组成的新型吸附剂。傅里叶变换红外(FTIR),能量分散光谱法(EDS),扫描电子显微镜(SEM)和原子吸收光谱(AAS),表现出成功的制造,良好的吸附能力,以及有益于Pb的明确定义的表面微观结构( ii)吸附。探讨了果胶微球(PMS),低甲氧基果胶果胶蛋白(LMPMS)和水溶液中PB(II)的果白酸微球(PAM)的吸附能力。 PMS,LMPMS和PAM的最大吸附容量分别为pH 5.0的127mg.g(-1),292mg.g(-1)和325毫克),表明LMPMS和PAM的巨大改善在PB(II)的吸附能力与PMS相比。此外,提出了吸附机制。实验数据很好地配备了伪二阶动力学和Langmuir等温线模型。五循环可重用性测试证明了微球可以反复使用。所有结果证实,LMPMS和PAM呈现出色的吸附能力和可重用性,可能是废水净化的良好候选者。

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