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荷兰使用的沉积物生物测定中的响应:常规监测的优先污染物能否解释所观察到的毒性?

Responses in sediment bioassays used in the Netherlands: can observed toxicity be explained by routinely monitored priority pollutants?

作者信息

Lahr Joost, Maas-Diepeveen Johanna L, Stuijfzand Suzanne C, Leonards Pim E G, Drüke Jeanette M, Lücker Simone, Espeldoorn Albert, Kerkum Lia C M, van Stee Leo L P, Hendriks A Jan

机构信息

AquaSense Consultants, P.O. Box 95125, 1090 HC Amsterdam, The Netherlands.

出版信息

Water Res. 2003 Apr;37(8):1691-710. doi: 10.1016/S0043-1354(02)00562-6.

Abstract

In order to identify the cause of toxicity in sediments and suspended matter, a large number of samples with different degrees of contamination was taken at various locations in The Netherlands. Standard acute bioassays were carried out with the bacterium Vibrio fischeri, the rotifer Brachionus calyciflorus and the anostracan Thamnocephalus platyurus. Chronic standard tests were performed using the water flea Daphnia magna and larvae of the midge Chironomus riparius. Some novel bioassays were performed as well. Most toxic effects observed in standard bioassays with sediments from polluted sediments (class 3 and 4 on a scale of 0-4 according to the Dutch criteria) could be partly explained by toxic concentrations of known persistent priority pollutants, mainly heavy metals and occasionally polycyclic aromatic hydrocarbons. In some of the samples, ammonia toxicity was a confounding factor during testing. Suspended matter from the Meuse river at Eijsden, which may be considered as 'new' sediment (pollution class 2), was moderately to highly toxic in almost all bioassays. This could have been associated with a combination of heavy metals, PAHs and ammonia. At two locations from the Lake IJssel area with no apparent persistent pollution, moderate and strong effects were nonetheless observed in invertebrate tests. This might have been due to agricultural run-off of pesticides, which are not routinely measured in sediments. A few effects on V. fischeri in canals and a small stream could not be explained with standard chemical analysis, but seemed associated with the outlets of sewage water treatment plants and industrial effluents. Additional chemical analysis of pore water samples from five selected sediments yielded more identified substances such as phtalates, decanes, cosanes and fragrances, but it was estimated that their contribution to the effects observed on V. fischeri, D. magna and C. riparius was negligible.

摘要

为了确定沉积物和悬浮物中毒性的成因,在荷兰的不同地点采集了大量不同污染程度的样本。使用费氏弧菌、萼花臂尾轮虫和宽扁头水蚤进行了标准急性生物测定。使用大型蚤和摇蚊幼虫进行了慢性标准测试。还进行了一些新型生物测定。在对污染沉积物(按照荷兰标准,污染等级为3级和4级)的沉积物进行的标准生物测定中观察到的大多数毒性效应,部分可由已知持久性优先污染物的毒性浓度来解释,主要是重金属,偶尔还有多环芳烃。在一些样本中,氨毒性在测试过程中是一个混杂因素。艾伊斯登马斯河的悬浮物可被视为“新”沉积物(污染等级为2级),在几乎所有生物测定中都具有中度至高度毒性。这可能与重金属、多环芳烃和氨共同作用有关。在艾瑟尔湖地区的两个没有明显持久性污染的地点,在无脊椎动物测试中仍观察到了中度和强烈的效应。这可能是由于农药的农业径流造成的,而沉积物中通常不会对其进行测量。在运河和一条小溪中对费氏弧菌产生的一些影响无法通过标准化学分析来解释,但似乎与污水处理厂的排水口和工业废水有关。对五个选定沉积物的孔隙水样本进行的额外化学分析发现了更多已识别的物质,如邻苯二甲酸盐、癸烷、二十烷和香料,但据估计,它们对费氏弧菌、大型蚤和摇蚊幼虫所观察到的效应的贡献可忽略不计。

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