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添加直链烷基苯磺酸盐的污泥带周围土壤中异养微生物和氨氧化微生物的活性及种群动态:一项田间研究

Activity and population dynamics of heterotrophic and ammonia-oxidizing microorganisms in soil surrounding sludge bands spiked with linear alkylbenzene sulfonate: a field study.

作者信息

Brandt Kristian Koefoed, Krogh Paul Henning, Sørensen Jan

机构信息

Section of Genetics and Microbiology, Department of Ecology, Royal Veterinary and Agricultural University, Thorvaldsensvej 40, DK-1871 Frederiksberg, Copenhagen, Denmark.

出版信息

Environ Toxicol Chem. 2003 Apr;22(4):821-9.

Abstract

Recent research has documented soil microorganisms to be rather sensitive to linear alkylbenzene sulfonates (LAS), which may enter the soil environment in considerable quantities following sewage sludge disposal. We here report field effects of LAS on selected microbial populations present in a sandy soil surrounding well-defined sludge bands spiked with high but realistic LAS levels (7.1 or 31.3 g/kg). Surprisingly, LAS had no effect on heterotrophic respiration in the sludge compartment per se but stimulated activity and metabolic quotient (microbial activity per unit of biomass) in the surrounding soil. By contrast, autotrophic ammonia oxidation was initially inhibited in the LAS-spiked sludge. This led to dramatic transient increases of NH4+ availability in the sludge and surrounding soil, subsequently stimulating soil ammonia oxidizers. As judged from a Nitrosomonas europaea bioluminescence toxicity assay, however, LAS or other sludge components never accumulated to toxic levels in the soil compartments and the LAS tolerance of the indigenous microbes further remained unchanged following LAS exposure. LAS effects on the investigated microbial populations largely occurred during the first two months and were confined to soil closer than 30 mm from LAS-spiked sludge. Our results strongly suggest that disposal of LAS-contaminated sludge does not pose a major risk to the function of the soil microbial community under field conditions.

摘要

最近的研究表明,土壤微生物对直链烷基苯磺酸盐(LAS)相当敏感,在污水污泥处置后,大量的LAS可能进入土壤环境。我们在此报告了LAS对存在于沙质土壤中特定微生物种群的田间效应,该沙质土壤围绕着添加了高但现实的LAS水平(7.1或31.3克/千克)的明确污泥带。令人惊讶的是,LAS本身对污泥隔室中的异养呼吸没有影响,但刺激了周围土壤中的活性和代谢商(单位生物量的微生物活性)。相比之下,在添加LAS的污泥中,自养氨氧化最初受到抑制。这导致污泥和周围土壤中NH4+可用性急剧短暂增加,随后刺激了土壤氨氧化菌。然而,根据欧洲亚硝化单胞菌生物发光毒性测定,LAS或其他污泥成分在土壤隔室中从未积累到有毒水平,并且在LAS暴露后,本地微生物的LAS耐受性进一步保持不变。LAS对所研究微生物种群的影响主要发生在前两个月,并且局限于距离添加LAS的污泥不到30毫米的土壤中。我们的结果强烈表明,在田间条件下,处置受LAS污染的污泥不会对土壤微生物群落的功能构成重大风险。

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