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1.
1. For water pollution control purposes, the concentration-addition model for describing the joint effects of mixtures of toxicants on aquatic organisms is appropriate; in this model the contribution of each component in the mixture is expressed as a proportion of the aqueous concentration producing a given response in a given time (e.g. p 96-h LC50).

2. Examination of available data using this model shows that for mixtures of toxicants found in sewage and industrial effluents, the joint acutely-lethal toxicity to fish and other aquatic organisms is close to that predicted, assuming simple addition of the proportional contribution from each toxicant. The observed median value for the joint effect of these toxicants on fish is 0.95 of that predicted, and the corresponding collective value for sewage effluents, river waters, and a few industrial wastes, based on the toxicity of their constituents, is 0.85, while that for pesticides is 1.3.

3. The less-than-predicted effect of commonly-occurring toxicants in some mixtures may be partly attributable to small fractions of their respective LC50 values having a less-than-additional effect. However, recent research has shown that for some organic chemicals which have a common quantitative structure-activity relationship (QSAR), their joint action as determined by acute toxicity is additive at all concentrations.

4. The few (unpublished) data available for the long-term lethal joint effect on fish of toxicants in mixtures suggest that they may be markedly more than additive, a phenomenon that needs confirmation and further investigation.

5. In the few studies on the sub-lethal effects on fish (eg growth), the joint effect of toxicants has been consistently less-than-additive which suggests that as concentrations of toxicants are reduced towards the levels of no effect, their potential for addition is also reduced. There appear to be no marked and consistent differences between the response of different species to mixtures of toxicants.

6. Field studies have shown that reasonably accurate toxicity predictions based on chemical analysis can be made if the waters which are polluted are acutely lethal to fish, and that a fish population of some kind can exist where the median 2 p t LCSOs (rainbow trout) is < 0.2. It is not known whether this condition is equivalent to a C p NOEC of 4.0 (ie the sum of the individual fractions of the NOEC for the species present), or to a NOEC of < 1.0 for each individual toxicant (i.e. fractions of the NOEC are not summed).

7. In general, the joint effect of the common toxicants on lethal and sub-lethal responses of fish is not explained by variations in the uptake of the individual toxicants concerned; this may not apply for those chemicals with a common QSAR, although there is little experimental evidence in this field.

8. There is an immediate need for more empirical studies on the joint effect of mixtures of toxic units of individual components, and the relation between long- and short-term lethal and non-lethal joint effects. This applies to mixtures of commonly occurring toxicants as well as to mixtures of organic chemicals with a common QSAR. The data obtained should be reinforced by studies on the mechanisms of interaction of toxicants. More field studies which relate water quality to the structure and productivity of fish populations are also required, involving direct measurements of fractional toxicity of the river water wherever possible.

9. The concentration-addition model appears to be adequate to describe the joint effect of commonly-occurring constituents of sewage and industrial wastes, and for tentative predictions of the joint effect on fish populations of toxicants present at concentrations higher than the EIFAC recommended values. However, concentrations lower than the EIFAC recommended values may make an increasingly lesser contribution to the toxicity of mixtures of toxicants and there may be a need to adjust the tentative water quality criteria downwards where two or more toxicants are present at concentrations close to these values. For toxicants with a common QSAR, their additive joint action may necessitate the setting of water quality criteriafor this group as a whole and not on the basis of individual compounds. However, too little is known of their precise joint action where the combined concentration produces a sub-lethal response.  相似文献   

2.
水生态模拟系统是用于高层次化学品生态风险评估的测试模型,目前在国外已经广泛用于工业化学品、农药、兽药、重金属等单一化学物质和复杂混合物的生态风险评估研究,而我国的相关研究比较匮乏。随着我国化学品风险评估体系的完善,水生态模拟系统测试必将作为作为单一生物毒性测试的有效补充。在此背景下,简述了水生态模拟系统的分类、研究方法和结果外推方法;从单一化学物质暴露作用下的生态危害评估、多种化学物质联合暴露作用下的生态危害评估以及目标化学物质的归趋分析三个方面阐述了水生态模拟系统在国内外化学品风险评估科学研究中的应用,对比了水生态模拟系统和单一物种毒性测试结果和基于两种测试数据的生态危害评估结果。与此同时,分析了水生态模拟系统在国内外化学品环境管理中的应用情况。在此基础上,对我国发展水生态模拟系统所存在的问题及解决方案提出了建议。  相似文献   

3.
大量缺乏毒性信息的化学品最终进入环境水体,对人类及生态生物产生潜在的危害与风险。提高化学品生物毒性测试与评估技术的通量和效率,是实现毒害化学物质环境与生态健康风险防控的关键。作为一种可以实现高通量测试的脊椎动物模型,斑马鱼胚胎测试在化学品的毒性评估中应用广泛。随着组学技术的发展,毒理基因组学可有效提取毒害化学品致毒过程中干扰生物学通路的信息。这些机制信息可用于对单物质或复合污染物生物毒性的筛选和预测。本文综述了不同斑马鱼胚胎测试技术在化学品毒性筛选评估管理与水环境复合污染毒性监测中的发展和应用,详细介绍了一种新型斑马鱼胚胎简化转录组学技术的方法流程和优势,并探讨了综合斑马鱼胚胎毒性测试、行为分析和组学等不同测试技术在化学品毒性测试、环境监测与评价中的应用前景。  相似文献   

4.
人类生产和生活使用各种人工合成的化学品,种类和数量急剧增长,对生态系统和人体健康造成了极大威胁。因此,亟需采用高效的方法对数量巨大的化合物进行毒性评价。对生理毒代动力学(PBTK)模型的建立过程及其在污染物生态毒理研究中的应用进行了综述。PBTK模型,又称生理药代动力学(PBPK)模型,是利用生理学和解剖学等原理,将生物体简化为用血流连接的肝、肾和脂肪等各组织器官房室,模拟化合物在生物体内的吸收、分布、代谢和排泄过程。模型参数包括生理参数和生化参数2个部分,可用MATLAB等软件进行模拟。模型已应用于数百余种有机污染物在鱼体等水生生物体的毒代动力学模拟。已有模拟结果能够预测化合物在生物体内的有效剂量,对化合物毒性进行评估,并可用于不同物种、不同剂量和不同暴露途径间的外推,有力推进了污染物生态毒理研究工作的开展。  相似文献   

5.
疏水性有机污染物进入环境水体后易于与沉积物结合,对沉积物中的底栖动物造成危害。底栖动物引起的生物扰动作用可以通过改变沉积物的地球化学性质,对其中污染物的赋存形态、迁移转化和生物可利用性产生重要影响。在综述了国内外生物扰动影响沉积物中污染物环境行为和生物可利用性的最新研究进展基础上,重点讨论了沉积物颗粒交换、水体环境条件改变、疏水有机污染物解吸释放过程以及对生物扰动影响的定量化表征。最后对该研究方向进行了展望,指出应重点研究多种污染物及不同生物共存条件下的生态效应,以及造成沉积物扰动的影响因素的定量化表征等。  相似文献   

6.
明确水环境中农残的污染状况对研究其环境行为和生态风险至关重要。传统主动采样法耗能、耗力且单次采样仅获得瞬时浓度值。被动采样节能、方便且为时间加权平均浓度,利于大规模采样。极性有机物整合采样技术(polar organic chemical integrative sampler,POCIS)是针对极性有机物的被动采样技术,近年来在水环境中农药监测的运用越来越广泛。本文概述了POCIS结构、原理和校正方法,探讨了环境因素(如水流速率、温度、p H、溶解性有机质、盐度和膜污染)、化合物性质及POCIS结构对农药采样速率(Rs)的影响。此外,综述了POCIS在监测水环境中农药的应用,展望了POCIS在该领域中的问题、解决方式及前景。  相似文献   

7.
Quantitative structure‐activity relationships of hydrophobic organic chemicals were studied based on equations we established. Results showed that observed toxicity of hydrophobic organic chemicals were correlated to two physical‐chemical parameters: reaction equilibrium constant of target molecule‐organic chemical; octanol/water partition coefficient. Regression results showed that the molecular connectivity index of first‐order was an ideal parameter instead of the equilibrium constant. Good relationships between toxicity data and the two parameters were found for three aquatic organisms with a wide range of chemicals.  相似文献   

8.
MESIP is a fugacity model which can predict the fate of organic hydrophobic chemicals in aquatic ecosystems. In this paper a short introduction to the mathematical model is presented together with a more detailed listing of the required input data. Comparison of the calculated and measured fate of a fluorescent whitening compound in an artificial outdoor pond is shown  相似文献   

9.
在环境水体中,可电离有机化合物(IOCs)可解离为分子和离子形态。研究表明,IOCs离子形态的环境行为、毒性效应等都与其分子形态存在较大差异,因而在研究IOCs环境行为、毒性效应时不应忽略离子化的影响。在构建IOCs相关预测模型时如何表征离子化的影响是当前研究的重要内容之一。探讨了采用基于形态修正的描述符构建IOCs水生毒性预测模型的可行性。具体而言,采用逐步多元线性回归(MLR)方法,构建了可预测63种取代酚、取代苯甲酸和取代苯胺等IOCs对大型溞急性毒性的定量结构-活性关系(QSAR)模型。与仅采用分子形态描述符的模型相比,使用基于形态修正描述符的模型决定系数(R2)、去一法交叉验证系数(Q2LOO)、外部验证系数(Q2EXT)等参数从0.622~0.705提高到了0.840~0.875,表明基于形态修正描述符的模型具有更好的拟合优度、稳健性和预测能力。因此,在将来的研究中,可采用基于形态修正的描述符构建IOCs水生毒性效应预测模型。  相似文献   

10.
The effects of chemical spills on aquatic nontarget organisms were evaluated in this study. Based on a review of three types of current eco-toxicological models of chemicals, i.e., ACQUATOX model of the US-EPA, Hudson River Model of PCBs, and critical body residual (CBR) model and dynamic energy budget (DEBtox) model, this paper presents an uncoupled numerical ecotoxicological model. The transport and transformation of spilled chemicals were simulated by a chemical transport model (including flow and sediment transport), and the mortalities of an organism caused by the chemicals were simulated by the extended threshold damage model, separately. Due to extreme scarcity of data, this model was applied to two hypothetical cases of chemical spills happening upstream of a lake. Theoretical analysis and simulated results indicated that this model is capable of reasonably predicting the acute effects of chemical spills on aquatic ecosystems or organism killings.  相似文献   

11.
有机磷酸酯类阻燃剂毒性效应研究进展   总被引:2,自引:2,他引:0  
有机磷酸酯类阻燃剂(organophosphate flame retardants,OPFRs)作为多溴联苯醚等溴代阻燃剂(brominated flame retardants,BFRs)的替代品被广泛应用,由此带来的环境影响广受关注。目前针对OPFRs的生物毒性研究仍相对有限,需要更全面调查其在多环境介质中的暴露状况、环境归趋、生物毒性效应等研究成果,在此基础上才能综合评价其可能引起的生态风险。因此,综述了OPFRs对水生生物、哺乳动物和人类等多种生物体的急性毒性、生殖与发育毒性、神经毒性、脏器毒性、基因毒性与致突变性和内分泌干扰性。OPFRs的多种生物毒性已得到证实,但相关致毒机制研究尚不完整深入。最后对OPFRs的进一步研究存在的问题进行分析,提出了研究展望,以期促进开展OPFRs的环境风险和人体健康风险研究。  相似文献   

12.
13.
水生生物基准已成为生态风险评价和水环境管理的主要参考依据,在水污染治理、控制和管理以及水生生物保护方面发挥着重要作用。环境和生物学参数对基于水体或沉积物等外暴露浓度的毒性阈值和环境基准存在影响,使其具有变异性和不确定性。而基于组织残留的毒性剂量指标可以减少毒性值的变异性以及不确定性,特别是对于生物累积性物质而言,在毒性效应及环境基准研究中存在显著优势。针对组织残留法在水生生物基准研究中的应用,对组织残留法的概念、优势、应用,以及组织残留基准的推导方法等几个方面进行了综述,并提出了组织残留法在应用中存在的关键问题及建议,旨在推动环境基准、生态风险评价理论和方法的研究,以及为水环境管理和污染防治提供技术支持。  相似文献   

14.
由于包含复杂的毒害化学污染物质,水体复合污染一直威胁着人类健康和水生生态安全。对复合污染水体进行监测、评估和治理是水环境管理的重点之一。监测并识别水体关键毒害污染因子是进行水质管理的前提,也是复合污染研究的难点。目前国内外在水复合污染毒性监测研究上主要基于动物活体试验或者生物体外测试。由于受限于毒理学测试方法,常见的应用通常仅关注于某方面的毒性效应或者少数的分子指标,因而受到质疑和挑战。有害结局路径(Adverse outcome pathway, AOP)的概念将化学污染物的结构、致毒的分子启动事件和生物毒性的有害结局建立关联,为污染物的毒性测试、预测和评估提供了新的模式。本文旨在论述有害结局路径在复合污染毒性评估和关键毒害物质鉴别中的指导性价值和意义。在有害结局路径的指导框架下,借助于生物体外高通量测试技术、化学分析的靶向和非靶向分析技术、和生物信息学技术,可以系统地分析化学混合物在分子、细胞水平上健康相关指标的响应水平,评估水体中复杂结构污染物,与不同生态和健康有害结局之间的关联,为水环境评价和优先污染物的筛选管理提供有效支撑。本文通过综述AOP框架在复合水体中毒害物质风险研究的现状和优势,对AOP在水环境环境管理上的应用前景提出展望。  相似文献   

15.
有机污染物对藻类毒性的测定   总被引:19,自引:0,他引:19  
黄国兰 《环境化学》1994,13(3):259-262
藻类是研究水生毒理学的很好的材料之一,对其毒性是评价化合物危害的基本数据,也是研究化合物结构与生物效应的手段之一,通过测定工业废水,数种硝基芳烃及多种有机锡对藻类的毒性,发现剂量与效应时间有很好的相关性,化合物结构与效应之间也有一定的规律。  相似文献   

16.
水体复合污染包含低浓度、种类复杂的毒害化学污染物,威胁人类健康和生态安全。监测并识别水体关键毒害污染因子是进行水质管理的前提,也是复合污染研究的难点。目前国内外在水复合污染毒性监测研究上主要基于动物活体试验或者生物体外测试。由于受限于毒理学测试方法,常见的应用通常仅关注于某方面的毒性效应或者少数的分子指标,因而受到质疑和挑战。有害结局路径(Adverse outcome pathway,AOP)的概念将化学污染物的结构、致毒的分子启动事件和生物毒性的有害结局建立关联,为污染物的毒性测试、预测和评估提供了新的模式。本文旨在论述有害结局路径在复合污染毒性评估和关键毒害物质鉴别中的指导性价值和意义。在有害结局路径的指导框架下,借助于生物体外高通量测试技术、化学分析的靶向和非靶向分析技术和生物信息学技术,可以系统地分析化学混合物在分子、细胞水平上健康相关指标的响应水平,评估水体中复杂结构污染物,与不同生态和健康有害结局之间的关联,为水环境评价和优先污染物的筛选管理提供有效支撑。本文通过综述AOP框架在复合水体中毒害物质风险研究的现状和优势,对AOP在水环境环境管理上的应用前景提出展望。  相似文献   

17.
水生生物毒性测试广泛应用于评估化学品的水生态环境安全,而鱼类生态毒性数据为水生生态风险评估与风险管理提供基础。本文总结了现有的鱼类水生毒性测试标准及常用的物种。阐述了常用水生鱼类模式生物,如斑马鱼Danio rerio、青鳉鱼Oryzias latipes、黑头软口鲦Pimephales promelas等作为模式鱼类的特征及在生态毒性测试中的应用。环保部7号令推荐稀有鮈鲫Gobiocypris rarus作为中国本土生物在水生毒性测试中使用。目前公开发表的利用稀有鮈鲫的水生毒性研究多集中在急性毒性方面,对其他类型的研究如法规毒理相关的长期慢性毒性有待开展。  相似文献   

18.
有机毒物对水蚤的急性毒性   总被引:4,自引:0,他引:4  
刘征涛  金琼贝 《环境化学》1994,13(3):263-265
对水蚤的毒笥试验数据是被广泛用于评价化合物水生生态效应的重要依据,检测有机化合物的毒性时,需特别注意待测物的难溶性,挥发性及易光解性,检测了多种氯代芳烃的EC50值,其18h的结果与24h的结果相近,检测了24种硝基芳烃的毒性,不同方法计算的EC50值一致。  相似文献   

19.
持久性有机污染物(Persistent Organic pollutant,POPs)是指通过各种环境介质(大气、水、生物体等)能够长距离迁移并长期存在于环境中的人工合成的有机污染物。本文阐述了全球POPs的主要环境过程和各环境介质中POPs的暴露水平,探讨了作物对POPs的吸收过程、吸收机制和生态效应,并基于现有的环境多介质逸度模型和根区水质模型,分析了持久性有机污染物作物吸收过程模拟模型中存在的问题及未来的发展方向。目前,对POPs作物吸收机制及其模拟的研究较少,但随着我国对粮食安全和农业可持续发展的持续关注,这一领域的模拟研究将对科学解析POPs归趋、合理制定风险管控措施和有效确保粮食质量安全等提供重要科学支撑。  相似文献   

20.
沉积物中污染物种类繁多,准确判断其中产生生物毒性的主要来源是个难点,本文作者先采用TIE法初步判断出主要致毒污染物为有机物和重金属(毒性描述阶段(相I)),传统的毒性单位分析结果显示Cr、Cu、Ni、Pb和Zn主要致毒重金属,而为氯氰菊酯、氯氟氰菊酯、溴氰菊酯和氟虫腈为主要致毒有机物中(毒性鉴定阶段(相II))。采用4步分级提取法和Tenax提取法分析了重金属和有机物的生物有效性。生物有效性毒性单位分析更加准确地锁定了毒性主要贡献重金属为Zn、Ni和Pb,毒性主要贡献有机物为氯氰菊酯、氯氟氰菊酯和氟虫腈。沉积物的稀释降低了重金属的毒性并使其毒性贡献鉴定变得复杂,生物有效性测量可以有效地提高TIE结果的准确性。
精选自Xiaoyi Yi, Huizhen Li, Ping Ma and Jing You. Identifying the causes of sediment-associated toxicity in urban waterways in South China: Incorporating bioavailabillity-based measurements into whole-sediment toxicity identification evaluation. Environmental Toxicology and Chemistry: Volume 34, Issue 8, pages 1744–1750, August 2015. DOI: 10.1002/etc.2970
详情请见http://onlinelibrary.wiley.com/doi/10.1002/etc.2970/full  相似文献   

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