首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Production of activated carbon from sludge of food processing industry under controlled pyrolysis and its application for methylene blue removal
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Production of activated carbon from sludge of food processing industry under controlled pyrolysis and its application for methylene blue removal

机译:食品加工业污泥热解控制下活性炭的生产及其在亚甲基蓝去除中的应用

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The present work aims to conduct a process optimization for the production of activated carbon from sludge of food processing industry. The significant feature of this sludge based activated carbon that makes it unique and economic is that it can be produced from waste material. The carbonaceous nature of this sludge does not allow its direct disposal to land because of excess organic and nutrient load contents, however, can be converted to a value added product. This process not only eliminates the need for further treatment of sludge but also reduce the cost of its handling, land filling, and transportation as well as the utilization in the same industry in the purification system. In the present work, activated carbon produced from pyrolysis of sludge was chemically activated by various activating agents. Optimization of impregnation ratio, impregnation time, activation temperature, and activation time was studied. The product was characterized through its iodine value and yield percentage. It was observed that the product had maximum iodine value of 624mg g~(-1) with ZnCl_2 as an activating agent. The FT-IR analysis depicts the presence of a variety of functional groups attached on the surface of activated carbon which are used in the interaction with the adsorbate during the process of adsorption. The XRD analysis reveals that the produced activated carbon has low content of inorganic constituents compared with the precursor. The product formed was applied for methylene blue adsorption. The adsorption equilibrium of methylene blue dye was examined at room temperature. Adsorption isotherm was drawn by applying Langmuir and Freundlich models fitting the data indict, with an adsorption capacity of 23.6 mg g~(-1) and 14.2 mg g~(-1), respectively. The data show that methylene blue adsorptior is best suited to Langmuir equation.
机译:本工作旨在对食品加工业的污泥生产活性炭进行工艺优化。这种基于污泥的活性炭的显着特点是使其可以独特而经济地从废料中生产。该污泥的碳质性质由于过量的有机物和营养物含量而使其不能直接处置,但是可以转化为增值产品。该过程不仅消除了对污泥的进一步处理的需要,而且降低了其处理,填埋和运输的成本,以及降低了净化系统在同一行业中的利用率。在目前的工作中,由污泥热解产生的活性炭被各种活化剂化学活化。研究了浸渍率,浸渍时间,活化温度和活化时间的优化。该产物通过其碘值和产率百分比来表征。观察到以ZnCl_2为活化剂,该产品的最大碘值为624mg g·(-1)。 FT-IR分析描绘了附着在活性炭表面上的各种官能团的存在,这些官能团用于在吸附过程中与被吸附物的相互作用。 XRD分析表明,与前体相比,所产生的活性炭具有较低的无机成分含量。将形成的产物用于亚甲基蓝吸附。在室温下检查亚甲基蓝染料的吸附平衡。利用Langmuir和Freundlich模型拟合数据,得出吸附等温线,吸附容量分别为23.6 mg g〜(-1)和14.2 mg g〜(-1)。数据表明,亚甲基蓝吸附剂最适合Langmuir方程。

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