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膜生物反应器(MBR)系统处理船舶污水的性能:盐度变化下烃类生物降解和生物量活性评估。

Performance of membrane bioreactor (MBR) systems for the treatment of shipboard slops: Assessment of hydrocarbon biodegradation and biomass activity under salinity variation.

机构信息

Facoltà di Ingegneria e Architettura, Università di Enna "Kore", Cittadella Universitaria, 94100 Enna, Italy.

Facoltà di Ingegneria e Architettura, Università di Enna "Kore", Cittadella Universitaria, 94100 Enna, Italy.

出版信息

J Hazard Mater. 2015 Dec 30;300:765-778. doi: 10.1016/j.jhazmat.2015.08.021. Epub 2015 Aug 18.

DOI:10.1016/j.jhazmat.2015.08.021
PMID:26313616
Abstract

In order to prevent hydrocarbon discharge at sea from ships, the International Maritime Organization (IMO) enacted the MARPOL 73/78 convention in which any oil and oil residue discharged in wastewater streams must contain less than 5 ppm hydrocarbons. Effective treatment of this petroleum-contaminated water is essential prior to its release into the environment, in order to prevent pollution problem for marine ecosystems as well as for human health. Therefore, two bench scale membrane bioreactors (MBRs) were investigated for hydrocarbon biodegradation. The two plants were initially fed with synthetic wastewater characterised by an increasing salinity, in order to enhance biomass acclimation to salinity. Subsequently, they were fed with a mixture of synthetic wastewater and real shipboard slops (with an increasing slops percentage up to 50% by volume). The results indicated a satisfactory biomass acclimation level in both plants with regards to salinity, providing significant removal efficiencies. The real slops exerted an inhibitory effect on the biomass, partially due to hydrocarbons as well as to other concomitant influences from other compounds contained in the real slops difficult to evaluate a priori. Nevertheless, a slight adaptation of the biomass to the new conditions was observed, with increasing removal efficiencies, despite the significant slops percentage.

摘要

为防止船舶向海洋排放烃类物质,国际海事组织(IMO)颁布了《MARPOL 73/78 公约》,其中规定任何排入废水中的油和油渣所含的碳氢化合物必须少于 5ppm。在将受石油污染的水排放到环境中之前,必须对其进行有效处理,以防止对海洋生态系统和人类健康造成污染问题。因此,研究了两种中试规模的膜生物反应器(MBR)来进行烃类生物降解。这两个工厂最初使用具有不断增加盐度的合成废水进行进料,以增强生物量对盐度的适应性。随后,它们被混合的合成废水和实际船舶舱底油渣(体积比高达 50%)进料。结果表明,两个工厂的生物量对盐度都有很好的适应水平,提供了显著的去除效率。实际舱底油渣对生物量产生了抑制作用,部分原因是碳氢化合物以及舱底油渣中其他难以预先评估的化合物的其他伴随影响。然而,尽管舱底油渣的比例很大,但生物量还是对新条件进行了轻微的适应,去除效率也有所提高。

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