Skoczko Iwona, Szatyłowicz Ewa, Tabor Adam, Gumiński Remigiusz
Department of Technology in Environmental Engineering, Faculty of Civil Engineering and Environmental Sciences, Białystok University of Technology, St. Wiejska 45A, 15-351 Bialystok, Poland.
Grand Activated sp. z o.o., St. Białostocka 1, 17-200 Hajnówka, Poland.
Materials (Basel). 2024 Apr 11;17(8):1753. doi: 10.3390/ma17081753.
Formed activated carbon (AC) is a multipurpose product with developed adsorption properties that is widely used in various areas of life. To create AC, hard coal has to go through various processes: grinding, granulation, carbonization, physical and/or chemical activation. Presented research was conducted in the professional company manufacturing activated carbons. Studied AC reached the demanded shape of grains thanks to binders added to granulation process. Research on the AC formed using new polymeric binders (applied so far in other branches: pharmacy and construction materials) is presented in this manuscript. Tested binders were not used before to manufacture ACs in the professional technological line. Such polymers as: sodium carboxymethylhydrocellulose (CMHC), poly[1-(2-oxo-1-pyrrolidinyl)ethylene] (POPE) and enriched methyl-hydroxypropyl cellulose MHPC were studied in this work. Conducted research has proven efficiency of 8% CMHC which allowed for proper granulation and carbonization and reached the best parameters. Single- and double-stage activation was investigated for AC with this binder. For newly manufactured AC BET surface and pore volume increased accordingly from 774 m/g and 0.58 cm/g (1-stage) to 968 m/g and 0.72 cm/g (2-stage). Chemical elemental features of surface of the best AC showed beside elementary carbon also calcium, silicon and aluminum ions as well as groups with an acidic character, phosphates, sulphates and chlorides. The new AC had a higher Mechanical Strength reaching 99.9% and a lower Ash content and Volatile Matter than AC manufactured with previous binder-molasse. The new AC is intended to be directed for full production line and implementation to usage after positive certification. It may be useful in water treatment. It will also find application in the treatment of industrial and municipal wastewater.
成型活性炭(AC)是一种具有发达吸附性能的多功能产品,广泛应用于生活的各个领域。为了制造活性炭,硬煤必须经过各种工艺:研磨、造粒、碳化、物理和/或化学活化。本研究是在一家生产活性炭的专业公司进行的。由于在造粒过程中添加了粘合剂,所研究的活性炭达到了所需的颗粒形状。本文介绍了使用新型聚合物粘合剂(迄今应用于其他行业:制药和建筑材料)制成的活性炭的研究。测试的粘合剂以前未在专业工艺生产线中用于制造活性炭。本研究中对羧甲基羟丙基纤维素钠(CMHC)、聚[1-(2-氧代-1-吡咯烷基)乙烯](POPE)和富化甲基羟丙基纤维素MHPC等聚合物进行了研究。进行的研究证明了8%的CMHC的有效性,它能够实现适当的造粒和碳化,并达到了最佳参数。对使用这种粘合剂的活性炭进行了单级和两级活化研究。对于新制造的活性炭,BET表面积和孔体积相应地从774 m²/g和0.58 cm³/g(单级)增加到968 m²/g和0.72 cm³/g(两级)。最佳活性炭表面的化学元素特征除了基本碳外,还显示有钙、硅和铝离子以及具有酸性特征的基团、磷酸盐、硫酸盐和氯化物。新型活性炭具有更高的机械强度,达到99.9%,并且灰分含量和挥发物含量低于用以前的粘合剂——糖蜜制造的活性炭。新型活性炭旨在用于全生产线,并在获得积极认证后投入使用。它可能在水处理中有用。它也将在工业和城市废水处理中得到应用。