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污泥热解“一石二鸟”:生物炭与过硫酸盐协同去除污染物和能源回收。

Sewage sludge pyrolysis 'kills two birds with one stone': Biochar synergies with persulfate for pollutants removal and energy recovery.

机构信息

School of Environment, Beijing Key Laboratory of Aqueous Typical Pollutants Control and Water Quality Safeguard, Beijing Jiaotong University, Haidian District, Beijing, 100044, China.

School of Environment, Beijing Key Laboratory of Aqueous Typical Pollutants Control and Water Quality Safeguard, Beijing Jiaotong University, Haidian District, Beijing, 100044, China; The Center of National Railway Intelligent Transportation System Engineering and Technology, China Academy of Railway Sciences Corporation Limited, Beijing, 100081, China.

出版信息

Chemosphere. 2024 Sep;363:142824. doi: 10.1016/j.chemosphere.2024.142824. Epub 2024 Jul 10.

Abstract

The disposal and resource utilization of sewage sludge (SS) have always been significant challenges for environmental protection. This study employed straightforward pyrolysis to prepare iron-containing sludge biochar (SBC) used as a catalyst and to recover bio-oil used as fuel energy. The results indicated that SBC-700 could effectively activate persulfate (PS) to remove 97.2% of 2,4-dichlorophenol (2,4-DCP) within 60 min. Benefiting from the appropriate iron content, oxygen-containing functional groups and defective structures provide abundant active sites. Meanwhile, SBC-700 exhibits good stability and reusability in cyclic tests and can be easily recovered by magnetic separation. The role of non-radicals is emphasized in the SBC-700/PS system, and in particular, single linear oxygen (O) is proposed to be the dominant reactive oxygen. The bio-oil, a byproduct of pyrolysis, exhibits a higher heating value (HHV) of about 30 MJ/kg, with H/C and O/C ratios comparable to those of biodiesel. The energy recovery rate of the SS pyrolysis system was calculated at 80.5% with a lower input cost. In conclusion, this investigation offers a low-energy consumption and sustainable strategy for the resource utilization of SS while simultaneously degrading contaminants.

摘要

污水污泥(SS)的处理和资源利用一直是环境保护的重大挑战。本研究采用简单的热解方法制备含铁污泥生物炭(SBC)作为催化剂,并回收生物油作为燃料能源。结果表明,SBC-700 可在 60 分钟内有效激活过硫酸盐(PS),去除 97.2%的 2,4-二氯苯酚(2,4-DCP)。得益于适当的铁含量、含氧官能团和缺陷结构,SBC-700 提供了丰富的活性位点。此外,SBC-700 在循环试验中表现出良好的稳定性和可重复使用性,可通过磁分离轻松回收。SBC-700/PS 体系中强调了非自由基的作用,特别是提出了单线态氧(O)是主要的活性氧。热解的副产物生物油的高热值(HHV)约为 30MJ/kg,其 H/C 和 O/C 比可与生物柴油相媲美。SS 热解系统的能量回收率为 80.5%,投入成本较低。总之,本研究为 SS 的资源利用提供了一种低能耗和可持续的策略,同时降解了污染物。

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