首页> 外文期刊>Environmental toxicology and chemistry >EFFECTS OF PULP MILL EFFLUENT ON BENTHIC ASSEMBLAGES IN MESOCOSMS ALONG THE SAINT JOHN RIVER, CANADA
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EFFECTS OF PULP MILL EFFLUENT ON BENTHIC ASSEMBLAGES IN MESOCOSMS ALONG THE SAINT JOHN RIVER, CANADA

机译:纸浆厂废水对加拿大圣约翰河沿岸大尺度底栖动物总成的影响

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We used mesocosms to examine the impact of different concentrations of pulp mill effluent (PME) on structural and functional endpoints of a benthic assemblage in the Saint John River (NB, Canada) during 1999 and 2000. Previous studies on this effluent's effects produced conflicting results, with field surveys suggesting a pattern of mild nutrient enrichment, while laboratory toxicity tests linked effluent exposure to moderate contaminant effects. Experimental treatments included three concentrations of sulfite pulp mill effluent (0, 5, 10% v/v PME). Endpoints for the assessment included algal biomass and taxonomic composition, benthic invertebrate abundance and composition, and insect emergence. Low concentrations of PME increased periphyton biomass and caused changes in community structure within the diatom-dominated community. Pulp mill effluent addition had little effect on several structural endpoints measured for benthic invertebrates, including abundance and taxonomic richness, but significantly changed community composition. For both periphyton and benthic invertebrates, community composition endpoints were more sensitive indicators of PME exposure. Insect emergence was a highly relevant functional endpoint. When benthic and emerged insects were combined, total abundance increased with PME addition. Results from two trophic levels, which provided multiple lines of evidence, indicated that the main impact of these PME concentrations is nutrient enrichment rather than effluent toxicity. Our findings also suggest that benthic invertebrate and periphyton assemblages, algal biomass production, and insect emergence are sensitive response measures. Future studies may confirm this observation. The consideration of both functional and structural endpoints at different trophic levels can greatly improve our understanding the effects of discharges to rivers. Such an understanding could not have been obtained using standard assessment techniques and illustrates the value of mesocosms and the benthic community assemblage approach in environmental assessment.
机译:我们使用中观考察了1999年至2000年期间不同浓度的制浆厂废液(PME)对圣约翰河(加拿大NB)底栖动物组合的结构和功能终点的影响。先前对该废水的影响进行的研究产生了矛盾的结果,实地调查表明养分温和富集,而实验室毒性测试则将污水暴露与中等程度的污染物影响联系在一起。实验处理包括三种浓度的亚硫酸盐纸浆厂废水(0、5、10%v / v PME)。评估的终点包括藻类生物量和生物分类组成,底栖无脊椎动物的丰度和组成以及昆虫出苗。低浓度的PME增加了浮游生物的生物量,并导致以硅藻为主的群落内部群落结构发生变化。制浆厂废水的添加对底栖无脊椎动物所测量的几个结构终点几乎没有影响,包括丰度和分类学丰富度,但显着改变了群落组成。对于浮游生物和底栖无脊椎动物,群落组成终点是PME暴露的更敏感指标。昆虫的出现是一个高度相关的功能终点。当底栖和新兴昆虫结合在一起时,总的丰度随着PME的添加而增加。来自两个营养级别的结果提供了多条证据,表明这些PME浓度的主要影响是养分富集而不是废水毒性。我们的发现还表明,底栖无脊椎动物和附生植物组合,藻类生物量产生和昆虫出苗是敏感的应对措施。未来的研究可能会证实这一发现。在不同营养级别同时考虑功能性和结构性终点可以极大地增进我们对河流排放影响的理解。使用标准评估技术无法获得这样的理解,并且可以说明中观和底栖动物群落整合方法在环境评估中的价值。

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