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Synthesis of Chitosan–Ignosulfonate Composite as an Adsorbent for Dyes and Metal Ions Removal from Wastewater

机译:壳聚糖 - Igossulfonate复合物作为染料和金属离子的吸附剂从废水中除去的吸附剂

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Sodium lignosulfonate is a polymer with extensive sources and abundant functional groups. Therefore, it has potential value for research and wide utilization. In this study, the adsorption material was prepared by blending sodium lignosulfonate and chitosan, which could adsorb anionic and cationic dyes and metal ions. The composite was characterized by Fourier transform infrared spectroscopy (FT-IR), scanning electron microscopy (SEM), and thermogravimetry (TG). The results showed that the composite was cross-linked mainly by the strong electrostatic interaction between the protonated amino group in chitosan and the sulfonate group in sodium lignosulfonate. Moreover, the effects of initial concentration, adsorption time, initial pH, and mass ratio of chitosan to sodium lignosulfonate on the adsorption performance of the composite were investigated. Meanwhile, the adsorption processes were agreed well with the pseudo-second-order kinetic model and Langmuir isotherm model. The adsorption mechanism was that the electrostatic interaction between the protonated amino and hydroxyl groups of the composite with anionic (SO3–) and HCrO4– groups of Congo red and Cr(VI), respectively. In addition, the electrostatic interaction between SO3– of the composite and positively charged group of Rhodamine B played an important role in the adsorption of Rhodamine B.
机译:木质素磺酸钠是一种具有广泛来源和丰富官能团的聚合物。因此,它具有研究和广泛利用的潜在价值。在该研究中,通过混合木质素磺酸钠和壳聚糖来制备吸附材料,该壳聚糖可以吸附阴离子和阳离子染料和金属离子。复合材料的特征在于傅里叶变换红外光谱(FT-IR),扫描电子显微镜(SEM)和热重率(TG)。结果表明,复合材料主要通过壳聚糖和磺酸钠在壳聚糖和磺酸钠基团中的质子化氨基之间的强静电相互作用交联。此外,研究了壳聚糖对木质素磺酸钠对复合材料吸附性能的初始浓度,吸附时间,初始pH和质量比的影响。同时,对伪二阶动力学模型和朗米尔等温线模型很好地达成了吸附过程。吸附机理是复合材料的质子化氨基和羟基与阴离子(SO 3-)和HCRO4-基团的静电相互作用分别与刚果红和Cr(VI)的静电相互作用。此外,复合材料的SO3-与罗丹明B的带正电荷基团之间的静电相互作用在Rhodamine B的吸附中发挥了重要作用。

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