Jensen J
National Environmental Research Institute, Department of Terrestrial Ecology, Silkeborg, Denmark.
Sci Total Environ. 1999 Feb 9;226(2-3):93-111. doi: 10.1016/s0048-9697(98)00395-7.
Linear alkylbenzene sulphonates (LAS) are a group of anionic surfactants, characterised by having both a hydrophobic and a hydrophilic group. LAS is one of the major ingredients of synthetic detergents and surfactants and is used world-wide for both domestic and industrial applications. LAS is relatively rapidly aerobically degraded, but only very slowly or not at all degraded under anaerobic conditions. Therefore, LAS can be found in very high concentrations in most sewage sludge and enter the soil compartment as a result of sludge application. LAS can be found in elevated concentrations in soil immediately after sludge amendment, but a half-life of approximately 1-3 weeks will generally prevent accumulation in soil and biota. The concentration in soils that have not received sewage sludge recently, is generally less than 1 mg kg-1 and not more than 5 mg LAS kg-1. This is below the lowest concentration of LAS where effects have been observed in the laboratory. The laboratory data is in accordance with field studies using aqueous solutions of the sodium salt of LAS. However, observations of the ecological impact of sewage sludge applications or application of LAS spiked into sludge indicates a lower toxicity of LAS when applied in sludge. On the basis of the information reviewed in this paper, it is concluded that LAS can be found in high concentrations in sewage sludge, but that the relatively rapid aerobic degradation and the reduced bioavailability when applied via sludge, most likely will prevent LAS from posing a threat to terrestrial ecosystems on a long term basis.
直链烷基苯磺酸盐(LAS)是一类阴离子表面活性剂,其特点是同时具有疏水基团和亲水基团。LAS是合成洗涤剂和表面活性剂的主要成分之一,在全球范围内用于家庭和工业应用。LAS在有氧条件下相对快速地被降解,但在厌氧条件下降解非常缓慢或根本不降解。因此,在大多数污水污泥中可以发现高浓度的LAS,并且由于污泥的施用而进入土壤环境。在污泥改良后,土壤中可立即发现高浓度的LAS,但大约1至3周的半衰期通常会防止其在土壤和生物群中积累。最近未接受污水污泥的土壤中的浓度通常低于1毫克/千克,LAS含量不超过5毫克/千克。这低于在实验室中观察到有影响的LAS的最低浓度。实验室数据与使用LAS钠盐水溶液的现场研究一致。然而,对污水污泥施用或添加LAS的污泥施用的生态影响的观察表明,当LAS应用于污泥时毒性较低。根据本文所审查的信息,得出的结论是,在污水污泥中可以发现高浓度的LAS,但相对快速的有氧降解以及通过污泥施用时生物利用度的降低,很可能会长期防止LAS对陆地生态系统构成威胁。