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将可生物降解废物用作溢油清理吸附材料的初步研究。

A preliminary study of biodegradable waste as sorbent material for oil-spill cleanup.

作者信息

Idris J, Eyu G D, Mansor A M, Ahmad Z, Chukwuekezie C S

机构信息

Faculty of Mechanical Engineering, Universiti Teknologi Malaysia, Skudai, Johor Bahru 81310, Malaysia.

ISI, Universiti Teknologi Malaysia, Skudai, Johor Bahru 81310, Malaysia.

出版信息

ScientificWorldJournal. 2014 Feb 11;2014:638687. doi: 10.1155/2014/638687. eCollection 2014.

Abstract

Oil spill constitutes a major source of fresh and seawater pollution as a result of accidental discharge from tankers, marine engines, and underwater pipes. Therefore, the need for cost-effective and environmental friendly sorbent materials for oil spill cleanup cannot be overemphasized. The present work focuses on the preliminary study of empty palm fruit bunch fibre as a promising sorbent material. The morphology of the unmodified empty palm fruit bunch, EPFB fibre, was examined using an optical microcopy, scanning electron microcopy coupled with EDX and X-ray diffraction. The effects of oil volume, fibre weight, and time on oil absorption of EPFB fibre were evaluated with new engine oil from the model oil. The results show that EPFB fibre consists of numerous micro pores, hydrophobic, and partially crystalline and amorphous with approximately 13.5% carbon. The oil absorbency of the fibre increased with the increase in oil volume, immersion time, and fibre weight. However, sorption capacity decreased beyond 3 g in 100 mL. Additionally unmodified EPFB fibre showed optimum oil sorption efficiency of approximately 2.8 g/g within three days of immersion time.

摘要

由于油轮、船用发动机和水下管道的意外排放,石油泄漏成为淡水和海水污染的主要来源。因此,对于用于清理石油泄漏的具有成本效益且环保的吸附材料的需求再怎么强调也不为过。目前的工作重点是对空棕榈果串纤维作为一种有前景的吸附材料进行初步研究。使用光学显微镜、扫描电子显微镜结合能谱仪(EDX)和X射线衍射对未改性的空棕榈果串(EPFB)纤维的形态进行了研究。用模型油中的新机油评估了油量、纤维重量和时间对EPFB纤维吸油性能的影响。结果表明,EPFB纤维由大量微孔组成,具有疏水性,部分为结晶态和非晶态,含碳量约为13.5%。纤维的吸油率随油量、浸泡时间和纤维重量的增加而增加。然而,当100 mL中的纤维重量超过3 g时,吸附容量会下降。此外,未改性的EPFB纤维在浸泡三天内显示出约2.8 g/g的最佳吸油效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed58/3944394/e90d2e4cf63f/TSWJ2014-638687.001.jpg

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