Department of Environmental Sciences, Bharathiar University, Coimbatore, Tamilnadu, India.
Department of Nutrition and Dietetics, Sadakathullah Appa College, Tirunelveli, 627011, India.
Environ Pollut. 2023 Jul 1;328:121525. doi: 10.1016/j.envpol.2023.121525. Epub 2023 Apr 14.
The voluminous nature of palm oil mill effluent (POME) is directly associated with environmental hazards and could be turned into biorefinery products. The POME, rich in BOD, COD, and oil and grease, with few hazardous materials such as siloxanes, fatty acid methyl ester, and phenolic compounds that may significantly increase the risk of violating the effluent quality standards. Recently, the application of chemical and biological risk assessment that can use electrochemical sensors and microalgae-like species has gained paramount attention towards its remediation. This review describes the existing risk assessment for POME and recommends a novel assessment approach using fish species including invasive ones as suitable for identifying the toxicants. Various physico-chemical and biological treatments such as adsorption, coagulation-flocculation, photo-oxidation, solar-assisted extraction, anaerobic digestion, integrated anaerobic-aerobic, and microalgae cultivation has been investigated. This paper offers an overview of anaerobic technologies, with particular emphasis on advanced bioreactors and their prospects for industrial-level applications. To illustrate, palmitic acid and oleic acid, the precursors of fatty acid methyl ester found in POME pave the way to produce biodiesel with 91.45%. Although there are some challenges in attaining production at an economic scale, this review offers some opportunities that could help in overcoming these challenges.
棕榈油厂废水(POME)的大量特性直接与环境危害有关,可将其转化为生物炼制产品。POME 富含 BOD、COD 和油和油脂,几乎没有硅氧烷、脂肪酸甲酯和酚类化合物等有害物质,这些物质可能会大大增加违反废水质量标准的风险。最近,电化学传感器和类似微藻的物种的化学和生物风险评估的应用已经引起了极大的关注。本综述描述了现有的 POME 风险评估,并建议使用包括入侵物种在内的鱼类进行新型评估方法,以识别有毒物质。已经研究了各种物理化学和生物处理方法,如吸附、混凝-絮凝、光氧化、太阳能辅助提取、厌氧消化、厌氧-好氧集成和微藻培养。本文概述了厌氧技术,特别强调了先进的生物反应器及其在工业应用中的前景。例如,棕榈酸和油酸是 POME 中发现的脂肪酸甲酯的前体,为生产生物柴油铺平了道路,生物柴油的产量为 91.45%。尽管在经济规模上实现生产存在一些挑战,但本综述提供了一些机会,可以帮助克服这些挑战。