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滨海砂土对可溶性油的吸附作用和影响因素研究
引用本文:孙娟,郑西来,吴俊文.滨海砂土对可溶性油的吸附作用和影响因素研究[J].中国海洋大学学报(自然科学版),2007,37(4):663-666,652.
作者姓名:孙娟  郑西来  吴俊文
作者单位:1. 中国海洋大学海洋环境与生态教育部重点实验室,山东,青岛,266100
2. 国家海洋局厦门海洋环境检测中心站,福建,厦门,361008
基金项目:教育部高等学校博士学科点专项科研基金
摘    要:在现场自然地理、水文地质条件调查的基础上,对青岛海水浴场采集砂和海水样品进行主要物理化学性质分析,探讨吸附机理的影响因素,通过吸附试验建立砂样对可溶性油吸附的动力学方程和吸附等温线,经过批量试验确定温度、盐度和pH值对吸附量的影响。研究结果表明,砂土对可溶性油吸附的平衡吸附量为90~110 mg/kg,吸附平衡时间为14~16 h,符合Henry型直线等温物理吸附。对等温式进一步分析发现,当水相中可溶性油浓度低于一定数值时,不但不产生吸附,反而会使污染沙滩上的残留油分释放出来,造成二次污染。

关 键 词:砂土  可溶性油  吸附作用
文章编号:1672-5174(2007)04-663-05
修稿时间:2006-10-102007-05-30

Absorption of Aqueous Oil by Beach Sand and Analysis of the Effective Factors
SUN Juan,ZHENG Xi-Lai,WU Jun-Wen.Absorption of Aqueous Oil by Beach Sand and Analysis of the Effective Factors[J].Periodical of Ocean University of China,2007,37(4):663-666,652.
Authors:SUN Juan  ZHENG Xi-Lai  WU Jun-Wen
Institution:1. Key Lab of Marine Environmental Science and Ecology, Ministry of Education, Ocean University of China, Qingdao 266100, China; 2. Central Marine Environmental Monitoring Station of Xiamen, SOA, Xiamen 361008, China
Abstract:Based on the field investigations of natural geography and hydro-geologic conditions, sand and seawater were sampled at Shilaoren Bathing Beach of Qingdao, and their major physical and chemical properties were analyzed. The kinetic equations and isotherms of aqueous oil on sand samples were obtained and the effective factors were evaluated with the distributions of temperature, salinity and pH in the coastal surface area taken into account. The results show that the equilibrium adsorbed dissolved oil was 90--110 mg/kg; the equilibrium period was 14--16 hours, and Henry type adsorption isotherm can be used to explain the process. Moreover, the sorption mechanism was believed to be physical through thermodynamic calculation. By further analysis of the isotherm, it was discovered that oil could be released from the sandy beach when the aqueous oil concentration was lower than certain values, causing secondary pollution.
Keywords:sand  aqueous oil  sorption
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