首页> 外文期刊>Journal of Polymers and the Environment >Investigation into the Role of Surface Modification of Cellulose Nanocrystals with Succinic Anhydride in Dye Removal
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Investigation into the Role of Surface Modification of Cellulose Nanocrystals with Succinic Anhydride in Dye Removal

机译:琥珀酸酐对纤维素纳米晶体表面修饰在染料去除中的作用研究

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Herein, the effect of surface modification of cellulose nanocrystals (CNC) on the sorption of dyes from waste textile effluent (methylene blue as a model) was achieved. The esterification of the isolated CNC from wood sawdust by acid hydrolysis was performed through melting with succinic anhydride (SA). At using 1:3-1:9 as the feeding ratios of CNC to SA, the succinylated CNC (CNC-SA) was obtained with degree of substitution of 1.6-2.2 and carboxylic content of 286.8-381.7 mmol/kg. Both of diameter size and zeta potential of the prepared CNC-SA were gradually enlarged by increasing the reactant feed ratio, indicating the successful modification of CNC surface with highly stable particles via increasing the negative charges on the outer surface. FTIR and XRD affirmed the change in the chemical structure as well as crystallinity of CNC after succinylation reaction. The prepared succinylated CNC was applied in the removal of methylene blue (MB) dye and the data showed that the sorption capacity is a direct proportional linear relation with the contents of carboxylic group. Within 120 min contact time, the sorption capacity was enlarged from 64.1 mg/g for CNC to 84.1 mg/g for CNC-SA3. The sorption data was fitted well to the first order kinetic model. Due to the esterification, the rate of sorption reaction is accelerated by double factor. These findings will maximize the benefit of esterified CNC in water treatment.
机译:在本文中,获得了纤维素纳米晶体(CNC)的表面改性对废纺织废液(以亚甲基蓝为模型)吸附染料的吸附效果。通过与琥珀酸酐(SA)熔融,从木屑中分离出的CNC通过酸水解进行酯化。以CNC与SA的进料比为1:3-1:9,得到琥珀酰化的CNC(CNC-SA),取代度为1.6-2.2,羧基含量为286.8-381.7 mmol / kg。通过增加反应物进料比,所制备的CNC-SA的直径大小和zeta电位都逐渐增大,这表明通过增加外表面的负电荷,成功地用高度稳定的颗粒改性了CNC表面。 FTIR和XRD证实了琥珀酰化反应后CNC的化学结构和结晶度的变化。所制备的琥珀酰化CNC用于脱除亚甲基蓝(MB)染料,数据表明吸附容量与羧基含量成正比线性关系。在120分钟的接触时间内,吸附容量从CNC的64.1 mg / g增加到CNC-SA3的84.1 mg / g。吸附数据很好地拟合了一级动力学模型。由于酯化作用,吸附反应的速度提高了两倍。这些发现将使酯化CNC在水处理中的利益最大化。

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