首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Preparation of nano-alkalinecellulose carboxylates (NACCs) as the methylene blue sorbent and as the catalyst for the large-scale nifedipine synthesis
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Preparation of nano-alkalinecellulose carboxylates (NACCs) as the methylene blue sorbent and as the catalyst for the large-scale nifedipine synthesis

机译:纳米碱纤维素羧酸盐(NACC)作为亚甲基蓝吸附剂的制备,作为大型硝苯地平合成的催化剂

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In this work, various new nano-alkalinecellulose carboxylates (NACCs) were prepared by oxidative hydrolysis of microalkalinecellulose (MAC(P)) given from prewashed cotton. After the optimization of the reaction time, temperature, oxidant system, and oxidant loading, the new flake-shape anionic NACC(24) with base capacity 10.8 mmol HO-/g was obtained from MAC(p) at 50 degrees C. The characterized NACC(24) and MAC(P), were comparatively used as bio-sorbent for removal of methylene blue (MB) from wastewater and as the catalyst in the large-scale synthesis of nifedipine. With the Langmuir model and monolayer pseudo-second-order kinetic mechanism, the negatively charged polymer NACC(24) represented high sorption capacity for the MB removal at 780 +/- 10 mg/g. A high regeneration stability and 90.5% original efficiency was verified for the NACC(24) after five consequence adsorption-desorption cycles, where acidic methanol and aqueous NaOH were used for the efficient desorption of electrostatically interacted MB to NACC(24) and respective reactivation of the NACC(24) for further runs. Besides, NACC(24) showed a high catalytic activity in the base-catalyzed rapid synthesis of anti-hypertension nifedipine even after the five times reusing of catalyst. (C) 2019 Elsevier B.V. All rights reserved.
机译:在这项工作中,通过氧化水解的微脂环纤维素(MAC(P))制备各种新的纳米碱烯丙基氨磺酸盐羧酸盐(NACCs)。优化反应时间,温度,氧化剂系统和氧化剂负载后,在50℃下从MAC(P)获得基础容量10.8mmol HO-/ g的新薄片形状阴离子NACC(24)。表征NACC(24)和MAC(P)相对较称用作生物吸附剂,用于从废水中除去亚甲基蓝(MB),并作为硝苯地平的大规模合成中的催化剂。利用Langmuir模型和单层伪二阶动力机构,带负电的聚合物Nacc(24)代表了780 +/- 10mg / g的MB去除的高吸附能力。在五种后果吸附 - 解吸循环后,验证了高再生稳定性和90.5%的原始效率,其中酸性甲醇和NaOH水溶液用于静电相互作用的MB至NACC(24)的有效解吸及其相应的再活化进一步运行的NACC(24)。此外,NACC(24)甚至在催化剂的重用的五次催化的抗高血压硝酸钠的快速合成中催化活性高。 (c)2019 Elsevier B.v.保留所有权利。

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