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An investigation of remediation and recovery of oil spill and toxic heavy metal from maritime pollution by a new absorbent material

机译:新型吸水材料从海上污染中溢油和毒性重金属的修复及恢复研究

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摘要

The extremely serious effects of the marine environment pollution due to oil spill, oil slick and toxic heavy metals on the human, ecosystem, and society are clearly seen. Findings of absorbent materials with high absorption capacity and high usage efficiency are being much interested by several researchers. In this work, four samples of absorbent material fabricated after adding, respectively, 5%, 25% of rice straw mass percentage along with 0.5 and 3 mm of rice straw size, four oil types including crude oil, fuel oil (FO), diesel oil (DO), kerosene, and a solution containing toxic heavy metals such as Cd2+, Pb2+, Hg2+ are used for the experimental purposes related to the evaluation of the oil absorption capacity (OAC) and toxic heavy metal, and the oil removal efficiency (ORE) during 120-150 min. As a result, the as-used sample with 25% of rice straw mass and 0.5 mm of rice straw size shows the highest absorption capacity. In addition, the influence of capillary pressure on the OAC and ORE is analysed, the assistance of Scanning Electron Microscope (SEM) for observation of porous structure of rice straw, pristine PU, and the as-fabricated absorbent are also conducted and presented in this study.
机译:清楚地看到了海洋环境污染的极其严重的影响。吸收材料具有高吸收能力和高效效率的发现对几个研究人员感兴趣。在这项工作中,分别为5%,分别为5%,25%的稻草质量百分比,稻草尺寸的四个吸收材料样品,四种油型,包括原油,燃料油(FO),柴油含有毒性重金属的油(DO),煤油和诸如CD2 +,PB2 +,HG2 +的溶液,用于实验目的与吸油能力(OAC)和有毒重金属的评估以及含油效率(矿石)120-150分钟。结果,具有25%的稻草质量和0.5毫米的稻草尺寸的用途样品显示出最高的吸收能力。此外,分析了毛细管压力对OAC和矿石的影响,还进行了扫描电子显微镜(SEM)对稻草秸秆,原始PU的多孔结构和制造的吸收剂的辅助,并提出并提出学习。

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  • 来源
    《Journal of marine engineering and technology》 |2021年第3期|159-169|共11页
  • 作者单位

    Ho Chi Minh City Univ Transport Mech Engn Fac Ho Chi Minh City Vietnam|Ho Chi Minh City Univ Technol HUTECH Inst Engn Ho Chi Minh City Vietnam;

    Vietnam Maritime Univ Marine Engn Fac Haiphong Vietnam;

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