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首页> 外文期刊>E3S Web of Conferences >Study on the Adsorption Performance of Various Adsorbents on Hazardous and Noxious Substances
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Study on the Adsorption Performance of Various Adsorbents on Hazardous and Noxious Substances

机译:各种吸附剂对危险毒性物质的吸附性能研究

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Hazardous and noxious substances (HNS) leakage from ship accidents has been one of the major sources of ship pollutions. Due to the varieties of HNS, the complexity of physical and chemical properties, the harmfulness of potential accidents, and the difficulty of accident prevention, HNS leakage could cause huge social and environmental impacts. HNS emergency response methods and technologies are currently in the early and exploring stage. As a big HNS import and export country with the increasing transportation volume, the risk of HNS pollution accidents in the ports has been significantly increasing over the recent years. However, few studies have been conducted regarding the HNS response technology, especially to the adsorption performance of various adsorbents against HNS. Therefore, this study aims to calculate the degree of adsorption of different adsorbents by selecting the representative HNS, which are commonly transported in the volume, for example, benzene, styrene, and vegetable oil. For inert substances with low saturated vapor pressure (vegetable oil and styrene), the degree and rate of adsorption of the investigated materials were found to be inversely proportional to the mass per unit area (area density). Moreover, these investigated adsorbents were shown to exhibit a good adsorption retention rate against inert substances. This study can provide the technical standard to select the most suitable adsorbents for the relevant HNS leakage.
机译:船舶事故的危险和有毒物质(HNS)泄漏是船舶污染的主要来源之一。由于HNS的品种,物理和化学性质的复杂性,潜在事故的危害以及事故预防的难度,HNS泄漏可能导致巨大的社会和环境影响。 HNS紧急响应方法和技术目前在早期和探索阶段。随着运输量越来越多的大型流浪汉进出口国,港口中HNS污染事故的风险在近年来越来越大。然而,已经对HNS反应技术进行了很少的研究,尤其是针对HNS的各种吸附剂的吸附性能。因此,本研究旨在通过选择代表性的HN来计算不同吸附剂的吸附程度,其通常在体积中在体积中运输,例如苯,苯乙烯和植物油。对于具有低饱和蒸气压(植物油和苯乙烯)的惰性物质,发现所研究的材料的吸附程度和速率与每单位面积(面积密度)的质量成反比。此外,这些研究的吸附剂显示出对惰性物质的良好吸附保留率。本研究可以提供技术标准,以选择相关的HNS泄漏最合适的吸附剂。

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