Mogensen Anders S, Haagensen Frank, Ahring Birgitte K
Environmental Microbiology and Biotechnology Group, BioCentrum-DTU, Building 227, The Technical University of Denmark, DK-2800 Lyngby, Denmark.
Environ Toxicol Chem. 2003 Apr;22(4):706-11.
Linear alkylbenzene sulfonate (LAS) found in wastewater is removed in the wastewater treatment facilities by sorption and aerobic biodegradation. The anaerobic digestion of sewage sludge has not been shown to contribute to the removal. The concentration of LAS based on dry matter typically increases during anaerobic stabilization due to transformation of easily degradable organic matter. Hence, LAS is regarded as resistant to biodegradation under anaerobic conditions. We present data from a lab-scale semi-continuously stirred tank reactor (CSTR) spiked with linear dodecylbenzene sulfonate (C12 LAS), which show that C12 LAS was biodegradable under methanogenic conditions. Sorption of C12 LAS on sewage sludge was described with a Freundlich isotherm. The C12 LAS sorption was determined with different concentrations of total solids (TS). In the semi-continuously stirred tank reactor, 18% of the added C12 LAS was bioavailable and 20% was biotransformed when spiking with 100 mg/L of C12 LAS and a TS concentration of 14.2 mg/L. Enhanced bioavailability of C12 LAS was obtained in an upflow anaerobic sludge blanket (UASB) reactor inoculated with granular sludge and sewage sludge. Biodegradation under thermophilic conditions was 37% with LAS as sole carbon source. Benzaldehyde was produced in the UASB reactor during LAS transformation.
废水中发现的直链烷基苯磺酸盐(LAS)在废水处理设施中通过吸附和好氧生物降解被去除。尚未表明污水污泥的厌氧消化有助于去除LAS。由于易降解有机物的转化,基于干物质的LAS浓度在厌氧稳定过程中通常会增加。因此,LAS被认为在厌氧条件下具有抗生物降解性。我们展示了来自一个实验室规模的半连续搅拌罐反应器(CSTR)的数据,该反应器添加了直链十二烷基苯磺酸盐(C12 LAS),结果表明C12 LAS在产甲烷条件下是可生物降解的。用Freundlich等温线描述了C12 LAS在污水污泥上的吸附情况。用不同浓度的总固体(TS)测定了C12 LAS的吸附。在半连续搅拌罐反应器中,当添加100 mg/L的C12 LAS和14.2 mg/L的TS浓度时,添加的C12 LAS中有18%具有生物可利用性,20%被生物转化。在接种颗粒污泥和污水污泥的上流式厌氧污泥床(UASB)反应器中,C12 LAS的生物可利用性得到了提高。以LAS作为唯一碳源时,嗜热条件下的生物降解率为37%。在UASB反应器中LAS转化过程中产生了苯甲醛。