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综述了自然环境中微塑料样品采集与分离方法的研究进展,介绍了水环境、土壤与沉积物、环境空气、生物体等不同介质中微塑料的采集方法、技术原理和使用条件,以及密度分离、筛选分离、滤膜过滤等分离提取和预处理方法,提出了建立统一的微塑料采样指南,开展空气中微塑料富集、采样、分离和检测标准方法研究等建议。 相似文献
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环境中微塑料的定量分析方法研究进展 总被引:1,自引:0,他引:1
从数量浓度和质量浓度2种不同的量化角度,对现有的微塑料定量分析方法(目检法、光谱法和热分析法)进行了系统梳理和综合阐述,其中,目检法操作简便但准确度低,光谱法准确度高但耗时过长,热分析法简便快速但不利于溯源分析。在系统综述的基础上,对未来需要深入研究的方向作了分析和展望。 相似文献
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测定土壤中重金属 ,前处理方法大多采用浓酸敞口消解法 ,但该法消化时间长、烟雾大、易损失。采用氢氟酸组合在高温高压下用消解瓶密闭消解 ,消化时间短、对环境污染小 (无烟雾 )、无损耗。1 试验1 1 敞口王水 -HClO4消解 (酸体系 1 )称取土样 0 50 0 g,于 50 0mL烧杯中 ,用少量水湿润 ,加王水 5mL ,加热保持微沸 ,至有机物剧烈反应后 ,加HClO41mL ,继续加热至土样呈灰白色 ,用 0 2mol/LHNO3溶解 ,滤于 50mL容量瓶中 ,定容 ,用原子吸收法测定。此法为方法 1。1 2 高压HNO3-HClO4-HF消解 (酸体系 2 … 相似文献
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概述了目前较为常见的微塑料检测方法,包括目检法、光谱分析法和热分析法,归纳分析了各种方法的技术进展、研究成果及优缺点,指出微塑料形状、大小、聚合物种类等方面的定性、定量分析尤为重要,能够为微塑料污染防治、溯源和影响评估提供依据.通过对现有方法的调研总结,提出多种检测分析方法联用将成为研究微塑料的发展方向,未来仍需要改进现有技术或者开发新的检测方法,结合图像处理、深度学习、计算机视觉等手段,缩短识别时间,提高检测精度,进而为微塑料污染防治工程提供技术支撑. 相似文献
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以环境中双壳类、鱼类及节肢类等水生生物为对象,介绍了其对微塑料的累积与清除,重点分析了微塑料特性、生物特性和食物等因素对微塑料生物累积与清除的影响,并进一步概述了微塑料沿水生食物链的传递效应,阐述了其对复合污染物食物链传递的影响过程。结果发现,微塑料在水生生物中的累积、清除与其自身尺寸、形态和聚合物类型等密切相关,水生生物的结构特异性是干扰微塑料从生物体内排泄的重要因素,有无食物的环境条件是调节双壳类和节肢类生物对微塑料累积与清除的重要路径;微塑料虽然可以通过食物链由低营养级向高营养级传递,但不一定会产生生物放大效应;微塑料的载体效应导致其复合污染物的食物链传递过程发生改变,共存污染物在生物体内的释放和吸收时间是调控微塑料复合污染物食物链传递能力的重要因素。 相似文献
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近年来,由个人护理品及废旧塑料直接或间接产生的微塑料不断地在各种环境介质中被检出,且微塑料会对生态系统产生各种危害,因此对微塑料的研究受到越来越广泛的关注。阐述了微塑料在水体、沉积物、沙滩和生物体中的赋存情况,介绍了微塑料的采集与分离方法,以及定性与定量分析方法。指出微塑料对环境及生物体产生的危害,提出现阶段研究存在的主要问题,并对今后的研究方向进行了展望。 相似文献
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针对饮用水水源的微塑料污染问题,采用超滤纳滤双膜法处理微塑料有机物复合污染物,系统考察了不同水质条件下的净水效能。结果表明,双膜系统的超滤段可完全去除粒径为2μm的聚苯乙烯塑料微球,为纳滤段提供稳定的进水条件,系统的出水水质良好。微塑料与有机物之间的相互作用,有利于超滤段去除有机污染物,从而减缓纳滤膜污染。离子强度的增加会降低超滤段对有机物的去除效果,钙离子(Ca 2+)和镁离子(Mg 2+)与有机物的络合作用会显著增加双膜系统的膜污染,pH值的升高可提高双膜系统的净水效果。双膜系统可为微塑料有机物复合污染物去除体系的优化提供参考。 相似文献
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总磷测试消解方法的选择与对比分析 总被引:1,自引:0,他引:1
吴玉兰 《甘肃环境研究与监测》2002,15(3):181-181,190
选择简单可靠的消解方法是测定总磷质量保证的关键,总磷测试的消解方法较多,应根据具体情况选择。当几种方法都能适应样品分析要求时,建议首先选用过硫酸钾压力锅消解法。 相似文献
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介绍了静电场轨道阱超高分辨质谱在新污染物分析中的应用,包括靶向定量、靶向筛查和非靶向筛查3个方面。在靶向定量方面,静电场轨道阱可以达到μg/L至ng/L检测限,满足环境中新污染物分析的需求。在靶向筛查方面,静电场轨道阱超高分辨质谱配备了包含上千种新污染物的数据库,可从精确质量数、保留时间、同位素峰形、碎片离子、二级谱图等方面,实现对新污染物的快速筛查。在非靶向筛查方面,该系统可通过智能化的数据采集模式(AcquireX)采集丰富的二级信息,然后通过Compound Discoverer软件流程化地处理数据,包括基于本地和网络数据库的谱图搜索,以及不依赖于数据库的特征碎片查找、中性丢失查找、特征同位素查找、质量亏损计算、分子网络分析等,最大程度地查找和发现未知的新污染物。 相似文献
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以苯系物污染土壤样品的采集为例,比较了4种不同采样方法导致样品检测结果的差异。其中,方法 1将样品装填至广口瓶内并压实密封,方法2采用非扰动采样器采集10 g样品后转移至加有10 mL甲醇保护剂的Vial瓶中密封,方法 3用非扰动采样器采集10 g样品后直接将其密封于采样器内,方法 4用Encore采样器采样后将其密封于采样器内。结果表明,方法 2采集样品的检出率最高,其余3种方法的差异不明显,方法 2采集样品的检出结果 71%以上都大于其余3种方法。而且,对于挥发性较强的苯与甲苯,以方法 2采集的样品91%以上都大于其余3种方法,最大及平均检出浓度高出2~3个数量级。5种不同土质样品检测结果表明,对于有机质含量较低的细砂,方法2的最高及平均检出浓度均高于其余3种方法 1~3个数量级,差异随土壤有机质含量的升高而降低。可见,对于苯系物及挥发性强于苯系物的其他挥发性有机物污染土壤样品的采集,方法 2效果最优,可指定为VOCs污染场地土壤样品的采样方法。 相似文献
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水域、陆地和空气中的微塑料污染不仅对人们赖以生存的生态系统有潜在危害,而且对人类的身体健康存在持续性危害。针对这些污染问题开展研究的首要任务之一就是需要鉴定微塑料的成分,从而明确可能产生污染的源头以及引起污染的途径。分子光谱技术是鉴别微塑料最常用的分析方法之一,尤其是红外光谱法和拉曼光谱法。建立了基于分子光谱技术的水体微塑料检测方法,可实现对水体中1~5 000μm尺寸范围内的微塑料的自动化测试。其中,尺寸大于10μm的微塑料颗粒物可以通过显微红外光谱仪进行检测,尺寸大于1μm的微塑料颗粒物可以通过显微拉曼光谱仪进行检测。该方法操作简单、检测速度快、结果呈现直观,可作为微塑料检测的有力工具。 相似文献
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为探究微塑料的研究现状、热点及趋势,以Web of Science核心合集数据库及中国知网(CNKI)数据库为数据来源,利用CiteSpace等软件绘制作者及机构共现网络图谱、区域分布特征图谱、关键词共现网络图谱和参考文献共被引图谱等,对环境微塑料尤其是土壤微塑料的研究现状及热点进行可视化分析。结果表明:微塑料研究自2016年开始逐步加强,其中土壤微塑料的研究热度在2021—2022年迅速上升;对于土壤微塑料,丰度分布、污染机制和健康风险等是当前研究的热点;完善土壤微塑料检测方法体系,探寻合适的土壤微塑料污染治理和管控方法及对策,对于维护生态安全和保障人体健康具有重要意义。 相似文献
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The efficiency of a Stormwater Infiltration Basin (SIB) to remove contaminants from urban stormwater was assessed in the current investigation. The SIB, installed in an urban suburb in eastern Sydney (Australia), was monitored over seven rainfall events to assess the removal efficiency of the remedial device for total suspended solids (TSS), nutrients (TP, TKN, Nox, TN), trace metals (Cd, Cr, Cu, Fe, Mn, Ni, Pb, Zn), organochlorine pesticides and faecal coliforms (FC) from stormwater. The weighted average concentration (WAC) of TSS in the stormwater effluent from the SIB was reduced by an average of 50%, whereas the WAC of Cu, Pb and Zn were also reduced by an average 68%, 93% and 52%, respectively. However, the WAC of Cr, Fe, Mn and Ni displays either similar concentrations as the stormwater influent (Cr and Mn), or substantially higher concentrations (Fe and Ni), due possibly to leaching of fine-grained zeolite clay particles in the filtration bed. The mean removal efficiency of the SIB for total phosphorus (TP) and total Kjeldahl nitrogen (TKN) was 51% and 65%, respectively. In contrast, the average WAC of oxidisable nitrogen (nitrate and nitrite nitrogen or Nox) is about 2.5 times greater in the effluent (1.34 ± 0.69 mg L–1) than in the incoming stormwater (0.62 ± 0.25 mg L–1). The WAC of total nitrogen (TN) was similar for stormwater at the in-flow and out-flow points. The SIB was very efficient in removing FC from stormwater; and the WAC of almost 70 (100 mL)–1 at inflow was reduced to <2000 cfu (100 Ml)–1 at the outflow, representing a mean removal efficiency of 96%. Due to the low concentrations of Cd, organochlorine pesticides and PAHs in the stormwater, it was not possible to assess the efficiency of the SIB in removing these contaminants. 相似文献
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Hollamby S Afema-Azikuru J Waigo S Cameron K Gandolf AR Norris A Sikarskie JG 《Environmental monitoring and assessment》2006,118(1-3):13-20
An animal’s suitability as a biomonitor of environmental change can be determined by biological, reproductive and ecological
characteristics determined at the class, order and species level. The animal’s habitat where the research is to be performed
and the form, function and structure of the environmental change being studied within that habitat also determines suitability.
Non-threatened populations of large, non-migratory, long-lived, seasonally-breeding tertiary avian predators, whose dietary
preferences are narrow and known, can be useful as monitors of environmental chemical contaminants. If chemicals are being
monitored, a quantifiable endpoint effect must be demonstrated in the species, or a similar species under experimental laboratory
conditions. Logistical and economic issues as well as public and regulatory authority acceptance should also be considered
when assessing the suitability of a species as a biomonitor. 相似文献
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Water samples taken at three depth layers from the offshore oligotrophic Cretan Sea were analyzed for ultraphytoplankton size fractionation using different methods: (a) sequential filtration on filters of pore size 5, 1 and 0.2 m, (b) separate filtration using filters 5 and 0.2 m as well as 1 and 0.2 m and (c) direct filtration on 0.2 m filters after staining of the samples with DAPI. Total abundance of photosynthetic organisms as well as the abundance of different groups such as flagellates and cyanobacteria measured by means of sizing after DAPI staining were significantly higher than those obtained by the other methods. This indicates that although there were no significant differences between the estimates provided by the separate and sequential filtration, both these methods underestimated total abundance by at least 25–50%. The estimates for the size fractions were also found to range from relatively imprecise to completely unreliable depending on the group and the size range. Although size fractionation through direct observation after staining largely depends on the expertise of the observer, this study suggests that it may provide more informative estimates than the other two methods. Although it is difficult to generalize the results of this study in a global context, the paper provides strong indications on the limitations of the sequential and separate methods for size fractionation of photosynthetic organisms and implies that their results are likely to be less accurate than is presently believed. 相似文献
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Roger B. Yeardley Jr. 《Environmental monitoring and assessment》2000,65(3):559-585
Selection of fish species for sampling to assess extent and potential effects of fish tissue contaminants is a criticalconsideration in the design of regional probability-designsurveys. The ideal species would be ubiquitous, bioaccumulatetoxic chemicals, and be prey of consumers of concern(piscivorous wildlife, humans). In first to third order streams,small short-lived forage fish (minnows (F. Cyprinidae), darters (F. Percidae), and sculpins (F. Cottidae), are more frequently found and therefore likely to be prey to more species ofwildlife than those of sportfish whose adults grow to a largesize (suckers (F. Catostomidae), trout (F. Salmonidae), bass, andsunfish (F. Centrarchidae), and carp). Targeting smaller foragefish should also produce a larger number of individuals persample on average than may be achieved with the larger species.An analysis of fish collected in 1993 and 1994 as part of theMid-Atlantic Highlands Assessment (MAHA) showed that, asexpected, forage fish were more ubiquitous than sportfishspecies. Analysis also revealed that, on a regional basis, forage fish bioaccumulated comparable levels to sportfish, ofsome widely occurring contaminants such as DDT, MeHg, and PCBs.Results indicated that smaller forage fish can be used asindicator species for a regional assessment for mostcontaminants (Zn being the one clear exception), that was notsignificantly different from one based on the larger species.Forage fish may therefore be an excellent choice as indicatorspecies for regional streams ecological risk assessment studies. 相似文献