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黄土中石油污染物的协同增溶作用研究 被引量:1
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作者 朱琨 梁莹 +2 位作者 卢晓岩 王亚军 王恩鹏 《安全与环境学报》 CAS CSCD 2005年第4期69-73,共5页
研究了腐殖酸钠以及阴离子表面活性剂十二烷基苯磺酸钠(LAS)和十二烷基硫酸钠(SDS)在单独使用及混合溶液体系去除黄土中柴油的解吸效应,探讨了振荡时间、腐殖酸钠质量浓度、pH值等因素对柴油解吸的影响。实验结果表明,两种阴离子表面活... 研究了腐殖酸钠以及阴离子表面活性剂十二烷基苯磺酸钠(LAS)和十二烷基硫酸钠(SDS)在单独使用及混合溶液体系去除黄土中柴油的解吸效应,探讨了振荡时间、腐殖酸钠质量浓度、pH值等因素对柴油解吸的影响。实验结果表明,两种阴离子表面活性剂对黄土中的柴油都有很好的解吸效果。投加LAS质量浓度为1.0g/L和10.0g/L后的柴油解吸质量浓度分别达到44.934mg/L和915.171mg/L,解吸量分别是同等实验条件下清水作用的1.7倍和34.4倍。投加SDS的质量浓度为10.0g/L后,柴油解吸率也会比清水振荡解吸增大22.3倍。加入单一腐殖酸钠的质量浓度为1g/L时,柴油的最大解吸量是清水冲洗时的5.3倍。腐殖酸钠(0.2g/L)和LAS(8g/L)混合溶液体系对柴油的解吸量是单独使用LAS解吸量的2.4倍,腐殖酸钠(0.2g/L)SDS(8g/L)体系的最大解吸量是单独使用SDS解吸量的2.6倍。在pH值为8.6的条件下,腐殖酸钠LAS混合溶液体系对柴油的解吸量达到最大值。 展开更多
关键词 环境工程 增溶 十壤污染 柴油 表面活性剂 腐殖酸钠 解吸
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Biodegradation of n-hexadecane by bacterial strains B1 and B2 isolated from petroleum-contaminated soil 被引量:5
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作者 LIU Tao WANG FengHua +3 位作者 GUO LanPing LI XiaoLiang YANG XiaoJin LIN Ai Jun 《Science China Chemistry》 SCIE EI CAS 2012年第9期1968-1975,共8页
Two hydrocarbon-biodegrading bacterial strains, B1 and B2, were isolated from petroleum-contaminated soil collected from Tianjin, China. The strains were identified as Pseudomonas aeruginosa (B 1) and Acinetobacter ... Two hydrocarbon-biodegrading bacterial strains, B1 and B2, were isolated from petroleum-contaminated soil collected from Tianjin, China. The strains were identified as Pseudomonas aeruginosa (B 1) and Acinetobacter junii (B2). The degradation rate of n-hexadecane by BI and B2 reached 96% and 78% respectively after 7 days, though the strains employed different mechanisms of degradation. The results showed that B2 was not able to use glucose as carbon source. B 1 could produce glyco- lipid surfactants using glucose as the carbon source, according to the results of blue agar plate analysis and thin layer chroma- tography (TLC), and the bacterial culture of B 1 had a high oil discharge and emulsification activity. Both B I and B2 could produce biosurfactants with hexadecane as the sole carbon source, but their modes of action were different. The carbon source was found to affect the cell surface hydrophobicity. Cell surface hydrophobicity was poor with glucose as the carbon source, but enhanced when hexadecane was used as the carbon source. 展开更多
关键词 HEXADECANE BIOSURFACTANT HYDROPHOBICITY EMULSIFICATION bacteria
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