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水硬度及吸附剂的存在对水生物种表面活性剂毒性表面张力的影响。

Effects of water hardness and existence of adsorbent on toxic surface tension of surfactants for aquatic species.

作者信息

Oya Masaru, Orito Shintaro, Ishikawa Yusuke, Iizuka Tomoko

机构信息

Department of Environmental Sciences, Faculty of Education and Human Sciences, Yokohama National University, Hodogaya-ku, Yokohama, Japan.

出版信息

J Oleo Sci. 2007;56(5):237-43. doi: 10.5650/jos.56.237.

Abstract

We have studied the effectiveness of surface tension on surfactants risk assessment. gamma(tox) was defined as surface tension at a point where acute aquatic toxicity of a surfactant emerges. Oryzias latipes, Daphnia magna, and Podocopida were used for acute aquatic toxicity test of 7 surfactants and 3 detergents. Gamma(tox)values were plotted on surface tension curves, and the effect of water hardness on toxicity and surface tension were examined. Results showed that gamma(tox) varies greatly by kind of surfactant or detergent. Therefore, aquatic toxicity cannot only be explained by surface tension. The change of aquatic toxicity with varying water hardness, however, could be explained by the change of surface tension. Aquatic toxicity of LAS (Linear Alkylbenzene Sulphonate) increased and aquatic toxicity of SOAP decreased with an increase of water hardness, but both gamma(tox), values were constant. Aquatic toxicity was decreased by an addition of mud soil as adsorbent into surfactant solution. The toxicity change can be explained by the surface tension since gamma(tox) value of solution with and without mud soil were equal. These results showed that the change of aquatic toxicity of a surfactant caused by water property, such as water hardness, could be explained by the change of surface tension.

摘要

我们研究了表面张力对表面活性剂风险评估的有效性。γ(毒)被定义为表面活性剂出现急性水生毒性时的表面张力。使用青鳉、大型溞和介形虫对7种表面活性剂和3种洗涤剂进行急性水生毒性试验。将γ(毒)值绘制在表面张力曲线上,并研究了水硬度对毒性和表面张力的影响。结果表明,γ(毒)因表面活性剂或洗涤剂的种类而异。因此,水生毒性不能仅用表面张力来解释。然而,水生毒性随水硬度变化的情况可以用表面张力的变化来解释。随着水硬度的增加,直链烷基苯磺酸盐(LAS)的水生毒性增加,而肥皂的水生毒性降低,但两者的γ(毒)值均保持不变。向表面活性剂溶液中添加泥质土壤作为吸附剂会降低水生毒性。毒性变化可以用表面张力来解释,因为含泥质土壤和不含泥质土壤的溶液的γ(毒)值相等。这些结果表明,由水的性质(如水硬度)引起的表面活性剂水生毒性的变化可以用表面张力的变化来解释。

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