Pyrolyzed Tannery Sludge As Adsorbent Of Volatile Organic Compounds From Tannery Air Emissions

吸附剂 热解 吸附 吸附 打赌理论 污水污泥 废物管理 解吸 弗伦德利希方程 估价 化学 挥发性有机化合物 制浆造纸工业 环境化学 材料科学 环境工程 环境科学 污水处理 有机化学 工程类
作者
Damiano Rossi,Miriam Cappello,Matteo Antognoli,Elisabetta Brunazzi,Maurizia Seggiani
出处
期刊:Chemical Engineering Journal [Elsevier]
卷期号:: 140320-140320
标识
DOI:10.1016/j.cej.2022.140320
摘要

• Tannery sludge is a promising adsorbent for the removal of VOCs from air emissions. • The BET area of the sludge-based sorbent is a soprtion performance indicator. • Further pyrolysis processing increases the BET area of the sludge-based sorbent. • Thermal regeneration of the sludge-based sorbent is feasible. The tanning industry has a great impact on the environment for the large consumption of water, the huge amount of waste generated, and the high emissions of volatile organic compounds (VOCs), used in leather finishing operations. In this study, pyrolyzed tannery sludge (PTS) was investigated, after further pyrolysis at high temperature, as a sorbent of VOCs. Pyrolysis experiments were performed at various temperatures (750-850°C) and times (6-60 min) to evaluate the optimal operating conditions in terms of developed BET specific surface area. Fixed bed adsorption experiments were performed to determine the breakthrough curves at room temperature using an air stream containing n-butyl acetate, a VOC largely used in leather finishing products. By pyrolysis at 850°C for 6 min the BET of PTS increased from 72 to 127 m 2 /g, improving its sorption capacity. The effects of superficial velocity, inlet VOC concentration, and bed height on the sorption behaviour of PTS after further pyrolysis (PPTS) were investigated. Breakthrough curves were well fitted by the Bohart-Adams model (R 2 = 0.92) and the adsorption isotherms with Freundlich equation (R 2 = 0.97). Preliminary sorbent desorption tests were carried out by hot air in the temperature range 100-180°C, demonstrating the feasibility of thermally regenerating this material. Multiple adsorption/desorption cycles on the PPTS will be performed on lab scale in a future study to investigate the real sorbent recyclability.
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