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<正> 三、用吸附材料清除水面上的浮油水面浮油层较薄,无法用机械收集时,通常使用吸附法。它与分散剂法的适用性不同,吸附法适用于收集厚度>0.1mm的浮油,而分散剂适用于厚度<0.1mm的浮油。目前所使用的浮油吸附材料可分为两大类:天然吸附材料(稻草、锯末、泥煤、活性炭、粉碎后的树皮、珍珠岩等)和化学合成吸附材料(聚氨酯泡沫、聚苯乙烯泡沫等)。由 相似文献
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钻井污水是一种棕黑色的多组分复杂体系,含有大量粘土粒子、电解质、少量浮油和油田处理剂,基本上属于胶体体系。电势是胶体的一个重要性质,试验中研究测试了几种常用无机絮疑剂处理钻井污水时电势的变化.根据电势的大小厦等电点时絮凝荆的用量对其进行了筛选。 相似文献
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钻井污水是一种棕黑色的多组分复杂体系,含有大量粘土粒子、电解质、少量浮油和油田处理剂,基本上属于胶体体系。ξ电势是胶体的一个重要性质,试验中研究测试了几种常用无机絮凝剂处理钻井污水时ξ电势的变化,根据ξ电势的大小及等电点时絮凝剂的用量对其进行了筛选。 相似文献
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Increasing oil transportation and severe oil accidents in the past have led to the development of various sensitivity maps
in different countries all over the world. Often, however, the areas presented on the maps are far too large to be safeguarded
with the available oil combating equipment and prioritization is required to decide which areas must be safeguarded. While
oil booms can be applied to safeguard populations from a drifting oil slick, decision making on the spatial allocation of
oil combating capacity is extremely difficult due to the lack of time, resources and knowledge. Since the operational decision
makers usually are not ecologists, a useful decision support tool including ecological knowledge must be readily comprehensible
and easy to use. We present an index-based method that can be used to make decisions concerning which populations of natural
organisms should primarily be safeguarded from a floating oil slick with oil booms. The indices take into account the relative
exposure, mortality and recovery potential of populations, the conservation value of species and populations, and the effectiveness
of oil booms to safeguard different species. The method has been implemented in a mapping software that can be used in the
Gulf of Finland (Baltic Sea) for operational oil combating. It could also be utilized in other similar conservation decisions
where species with varying vulnerability, conservational value, and benefits received from the management actions need to
be prioritized. 相似文献
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John C. Munday Wyman Harrison William G. Maalntyre 《Journal of the American Water Resources Association》1970,6(6):879-884
Five-to-50-gallon slicks of No. 6 (Bunker C) fuel oil were tracked for several hours on six different occasions. Slick motion was due mainly to surface currents. The slick wind factor varied with wind speed, showing a threshold at seven knots and approaching 2.0 percent at 20 knots. Published values of 2.3 to 5 percent did not exclude the effects of wind-generated surface currents. Prediction of slick motion using wind and published tidal-current data was deficient; accuracy will require extensive wind and surface-current time-series data. 相似文献
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文章介绍了新疆油田在稠油污水处理和回用方面的关键技术和成熟经验,采用强酸性树脂软化技术和化学清洗技术实现了稠油污水回用注汽锅炉。六九区污水处理站采用高效水质稳定技术,使处理后的污水达到了GB 8978—1996《污水综合排放标准》的二级标准,稠油污水在处理后符合GB 1576—2008《工业锅炉水质》的要求,大幅度降低了注汽锅炉的运行成本;将60℃以上的稠油污水替代清水回注稀油油藏,热水驱油,改善了驱油效果,同时根据污水温度较高的特点,对注水井井口的保温工艺进行改进,实现了稠油污水热能的综合利用,为油田污水治理和回用提供了借鉴。 相似文献
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本文综述了油茶饼粕综合开发利用的工艺方法及其优缺点。结果表明,用单一有机溶剂一步浸取同时提取饼粕中的油脂和茶皂素的新方法,具有工艺简单,设备投资少,产品产量高,质量好且稳定等优点。 相似文献
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石油工业废弃物处置及其生物治理趋势 总被引:4,自引:0,他引:4
鉴于我国石油工作者对石油工业废弃物的普遍关注,现在介绍生物治理的基本概念及SPE石油工程师协会中有关含油污泥生物处置的途径及其突出优越性。生物液/固处理工艺(LST)是目前含油污泥处置现场最经济可行的处置方案。这种好氧的LST工艺过程,能够比较充分地代谢和降解石油污泥中的油和脂并大量除去多环芳烃类(PAH)化合物及其它有机化合物,明显地降低了石油废弃物对人、畜的毒害程度。其工艺较简单,操作也简易,凡经此工艺处理后的废弃物不留残毒和后患,因此早已被世界上先进国家的炼油业视为处理含油污泥的有效选择了。石油工业废弃物的生物防治和生物降解工艺较大程度地领先于目前我国现场正在执行的各种处理含油废弃物的处理工艺。 相似文献
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废混油钻井液资源化利用技术研究 总被引:1,自引:0,他引:1
废钻井液是钻井作业中主要污染源之一,其中含有重金属、碱、盐、油、有机物等多种污染物质,特别是废混油钻井液,油含量更高,是较难解决的问题之一,也是制约油田企业环境质量提高和可持续发展的一大难题。以废钻井液处理为代表的资源化利用技术可有效治理井场废物,将处理后的废钻井液直接用来做井场围堰和平整地面的材料,既可有效地利用废物,消除污染源,又可缓解因污染引起的工农矛盾,减少由钻井开发引发的污染赔款,实现社会效益、经济效益和环境效益的统一。 相似文献
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稠油及超稠油污水具有黏度大、油水密度差小、乳化严重、水温高、水质水量变化大、成分复杂等特点,该废水的B/C小于0.3,属于难生物降解污水.通过试验表明,采用预处理工艺先除油、除悬浮物,再进行生物处理工艺去除可生化降解COD,最后经过深度处理工艺去除残余的难生化降解COD,可保证处理后水质全面达标. 相似文献
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