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以废治废:活性铝土矿残渣作为潜在的废水处理剂

Treating Waste with Waste: Activated Bauxite Residue (ABR) as a Potential Wastewater Treatment.

作者信息

Cheng Fei, Pang Jingya, Berggren Scott, Tanvar Himanshu, Mishra Brajendra, Arlos Maricor J

机构信息

Department of Civil and Environmental Engineering, University of Alberta, 9211-116 St. NW, Edmonton, Alberta T6G 1H9, Canada.

GRÖN Holding Corporation, 40 King St. West, Suite 5800, Toronto, Ontario M5H 3S1, Canada.

出版信息

ACS Omega. 2024 Nov 2;9(45):45251-45262. doi: 10.1021/acsomega.4c06699. eCollection 2024 Nov 12.

Abstract

Bauxite residue (or red mud) is a highly alkaline waste generated during the extraction of alumina. As a result of the substantial accumulation of bauxite residue in tailings facilities, there is a growing interest in exploring the potential for reusing this material for other purposes. The main objective of this study is to evaluate the use of activated bauxite residue (ABR) for remediating oil sands process-affected water (OSPW) and as a supplement to municipal wastewater treatment through bench-scale, proof-of-concept studies. The ABR is produced through a reduction roasting process that alters the physicochemical properties of bauxite residue, resulting in the generation of potentially effective adsorbent media. The treatment performance via chemical and biological activity removals (cytotoxicity, estrogenicity, and mutagenicity) was also assessed. For OSPW, ABR treatment resulted in the effective removal of recalcitrant acid-extractable organics (AEOs), with kinetics following the pseudo-second-order and comparable adsorption capacity to other waste materials (e.g., petroleum coke). ABR also effectively reduced the estrogenicity and mutagenicity of OSPW, albeit cytotoxicity increased at higher dosages, possibly due to some components leaching out of the material (e.g., metals). For municipal wastewater, ABR treatment reduced fecal coliform concentrations (>99%), total phosphorus (up to 98%), total ammonia-nitrogen (63%), estrogenicity (nondetectable), and mutagenicity (nondetectable), especially in the primary effluent. The ultimate end use of ABR is for the recovery of valuable metals (especially iron) and as a construction material, but additional work is needed to optimize the dosage (currently in the g/L range) and maximize the use of ABR as an adsorbent prior to its subsequent uses.

摘要

铝土矿残渣(或赤泥)是氧化铝提取过程中产生的高碱性废弃物。由于铝土矿残渣在尾矿设施中的大量堆积,人们越来越有兴趣探索将这种材料用于其他用途的潜力。本研究的主要目的是通过实验室规模的概念验证研究,评估活性铝土矿残渣(ABR)对油砂加工受影响水(OSPW)的修复作用以及作为城市污水处理补充剂的效果。ABR是通过还原焙烧过程生产的,该过程改变了铝土矿残渣的物理化学性质,从而产生了潜在有效的吸附介质。还评估了通过去除化学和生物活性(细胞毒性、雌激素活性和致突变性)的处理性能。对于OSPW,ABR处理有效地去除了难降解的酸可提取有机物(AEOs),动力学符合准二级反应,吸附容量与其他废料(如石油焦)相当。ABR还有效降低了OSPW的雌激素活性和致突变性,尽管在较高剂量下细胞毒性增加,这可能是由于材料中某些成分(如金属)的浸出。对于城市污水,ABR处理降低了粪便大肠菌群浓度(>99%)、总磷(高达98%)、总氨氮(63%)、雌激素活性(未检出)和致突变性(未检出),尤其是在一级出水中。ABR的最终用途是回收有价金属(特别是铁)并作为建筑材料,但在其后续使用之前,还需要进一步开展工作来优化剂量(目前在克/升范围内)并最大限度地将ABR用作吸附剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e574/11561612/a983de375153/ao4c06699_0001.jpg

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