首页> 美国卫生研究院文献>Materials >Chlamydomonas angulosa (Green Alga) and Nostoc commune (Blue-Green Alga) Microalgae-Cellulose Composite Aerogel Beads: Manufacture Physicochemical Characterization and Cd (II) Adsorption
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Chlamydomonas angulosa (Green Alga) and Nostoc commune (Blue-Green Alga) Microalgae-Cellulose Composite Aerogel Beads: Manufacture Physicochemical Characterization and Cd (II) Adsorption

机译:衣藻(绿藻)和诺斯托克公社(蓝绿藻)微藻纤维素复合气凝胶微珠:制造理化特性和Cd(II)吸附

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摘要

This study presents composite aerogel beads prepared by mixing dissolved cellulose with Chlamydomonas angulosa and Nostoc commune cells, respectively, at 0.1, 0.3, and 0.5% (w/w). The manufactured composites (termed regenerated cellulose (RC)), with C. angulosa (RCCA-(1, 3, and 5)), and with N. commune (RCNC-(1, 3, and 5)) were analyzed. Both RCCA-5 and RCNC-5 showed the high specific surface area to be about 261.3 and 332.8 m2·g−1. In the microstructure analysis, network structures were observed in the cross-sections of RC, RCCA-5, and RCNC-5. The pyrolysis temperature of the RCCA-5 and RCNC-5 composite aerogel beads was rapidly increased about 250 °C during the mixing of cellulose with C. angulosa and N. commune. The chemical analysis of RC, RCCA-5, and RCNC-5 showed peaks corresponding to various functional groups, such as amide, carboxyl, and hydroxyl groups from protein, lipid, and carbohydrate. RCNC-5 at pH 6 demonstrated highest Cd2+ removal rate about 90.3%, 82.1%, and 63.1% at 10, 25, and 50 ppm Cd2+, respectively. At pH 6, Cd2+ adsorption rates per unit weight of the RCNC-5 were about 0.9025, 2.0514, and 3.1547 mg/g at 10, 25, and 50 ppm, respectively. The peaks assigned to the amide, carboxyl, and hydroxyl groups in RCCA-5, RCNC-5, and RC were shifted or disappeared immediately after adsorption of Cd2+. The specific surface area, total pore volume, and mean pore diameter of composites was decreased due to adsorption of Cd2+ on the developed materials. As can be seen in the X-ray powder diffraction (XRD) spectrum, significant changes in the molecular structure of the composite aerogel beads were not observed even after adsorption of Cd2+.
机译:这项研究提出了通过将溶解的纤维素分别与0.1%,0.3%和0.5%(w / w)的溶解的纤维素与衣藻和Nostoc公社细胞混合而制备的复合气凝胶珠。分析了制造的复合材料(称为再生纤维素(RC)),C。angulosa(RCCA-(1、3和5))和N.社(RCNC-(1、3和5))。 RCCA-5和RCNC-5均显示出高比表面积,分别为约261.3和332.8 m 2 ·g -1 。在微观结构分析中,在RC,RCCA-5和RCNC-5的横截面中观察到网络结构。 RCCA-5和RCNC-5复合气凝胶珠的热解温度在纤维素与安哥拉梭菌和公猪鼻混合时迅速升高了约250°C。 RC,RCCA-5和RCNC-5的化学分析显示了对应于蛋白质,脂质和碳水化合物中各种官能团(例如酰胺,羧基和羟基)的峰。 RCNC-5在pH 6下显示出最高的Cd 2 + 去除率,分别在10、25和50 ppm Cd 2 + 时分别达到90.3%,82.1%和63.1%。 。在pH 6下,每单位重量的RCNC-5在10、25和50 ppm时,Cd 2 + 的吸附速率分别为约0.9025、2.0514和3.1547 mg / g。吸附Cd 2 + 后,RCCA-5,RCNC-5和RC中分配给酰胺,羧基和羟基的峰立即移动或消失。由于Cd 2 + 在已开发材料上的吸附,复合材料的比表面积,总孔体积和平均孔径减小。从X射线粉末衍射(XRD)光谱可以看出,即使吸附了Cd 2 + ,复合气凝胶珠的分子结构也没有明显变化。

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