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21.
有机磷酸酯(OPEs)作为溴代阻燃剂的替代品,在生产生活中被广泛使用,其环境污染和毒性效应受到广泛关注.梳理中国七大典型流域水体中OPEs的含量水平和分布特征,计算中国成人、青少年和儿童的OPEs日均饮水暴露量,对其健康风险进行评估,并通过蒙特卡洛模拟方法评价了结果的可靠性.检索整理了12种OPEs对水生生物的毒性效应浓度,构建物种敏感度分布(SSD)曲线,对生态风险进行评估.结果表明,低等暴露水平下,七大流域ΣOPEs的第5百分位浓度为52.61 ng·L-1;中等暴露水平下,七大流域ΣOPEs的中位浓度为499.74 ng·L-1,磷酸三氯乙酯(TCEP)、磷酸三乙酯(TEP)和磷酸三(1,3-二氯-2-丙基)酯(TDCP)为主要污染物;高等暴露水平下,七大流域ΣOPEs的第95百分位浓度为1904.4 ng·L-1,是其中等暴露水平的3.8倍,长江流域的ΣOPEs浓度最高.健康风险评估表明,不同人群通过饮用水暴露于OPEs的非致癌风险均在可接受范围内.磷酸三甲酯(TMP)、磷酸三异丁酯(TiBP)和TCEP是致癌风险的主要贡献者.生态风险评估结果表明,TCEP在高等暴露水平下存在中等生态风险;磷酸三正丁酯(TnBP)在中等暴露水平下存在中等生态风险,在高等暴露水平下,有较高生态风险;磷酸三苯酯(TPhP)在低中高3种暴露水平下的风险商均大于1,有较高生态风险,需要重点关注. 相似文献
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Terrace-contouring systems with on-site water detention cannot be installed in areas of complex topography, small parceling and multi-blade moldboard plow use. However, field borders at the downslope end may be raised at the deepest part where runoff overtops to create detention ponds, which can be drained by subsurface tile outlets and act similar to terrace-contouring systems. Four of such detention ponds were monitored over 8 years. Monitored effects included the prevention of linear erosion down slope, the sediment trapping from upslope, the enrichment of major nutrients in the trapped and delivered sediments, the amount of runoff retained temporarily, the amount of runoff reduced by infiltration, the decrease in peak runoff rate and the decrease in peak concentrations of agrochemicals due to the mixing of different volumes of water within the detention ponds. The detention ponds had a volume of 30–260 m3 ha−1 and trapped 54–85% of the incoming sediment, which was insignificantly to slightly depleted (5–25%) in organic carbon, phosphorus, nitrogen and clay as compared to the eroding topsoil, while the delivered sediment was strongly enriched (+70–270%) but part of this enrichment already resulted from the enrichment of soil loss. The detention ponds temporarily stored 200–500 m3 of runoff. A failure was never experienced. Due to the siltation of the pond bottom, the short filled time (1–5 days) and the small water covered area, infiltration and evaporation reduced runoff by less than 10% for large events. Peak runoff during heavy rains was lowered by a factor of three. Peak concentrations of agrochemicals (Terbutylazin) were lowered by a factor of two. The detention ponds created by raising the downslope field borders at the pour point efficiently reduced adverse erosion effects downslope the eroding site. They are cheap and can easily be created with on-farm machinery. Their efficiency is improved where they are combined with an on-site erosion control like mulch tillage because sediment and runoff input are reduced. Ponds had to be dredged only after the first year when on-site erosion control was not fully effective. 相似文献
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我国七大流域河道生态用水现状评价 总被引:3,自引:0,他引:3
从河流生态用水的基本属性出发,提出了河道生态用水"量"与"质"的评价方法,其中量的评价方法包括水资源利用率法、实测径流法、消耗系数等3种方法,质的评价是基于污径比指标进行评价,并确定了"量"与"质"的评价标准。以我国松花江、辽河、海河、黄河、淮河、长江、珠江等7个流域为例,采用上述方法进行实证分析,结果表明,如果单纯从量的角度进行评价,仅海河、黄河流域存在河道生态用水短缺现象,其它流域总体上为基本不短缺。但是如果对生态用水的质进行评价,只有松花江、长江和珠江的水质可以满足生态用水的要求,其它流域均在较差等级以下。结果表明只有从量和质两个方面进行评价,才能够揭示出我国生态用水的水量性或者水质性短缺的现实状况。 相似文献
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长江流域等重污染行业经济和污染贡献率剖析 总被引:4,自引:0,他引:4
应用"污染贡献率"这一指标,分析了长江、黄河、珠江和松花江流域COD和氨氮排放的重污染行业以及地区分布,指出了各流域COD和氨氮排放的控制重点.同时分析了各流域重污染行业的经济贡献率,最后结合行业的污染贡献率和经济贡献率以及行业在地区所占的比例,提出了几点重要的结论. 相似文献
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通过对舞阳、襄城凹陷原油及烃源岩样品的有机地化分析 ,研究了该区未熟油地球化学特征、判别标志及成因类型。认为盐湖盆地原油具“两高、两低”特征 ,族组成上表现为饱和烃含量较低 ,“非烃 +沥青质”含量较高。正烷烃呈双峰态分布 ,OEP值 >1。具植烷优势 ,Pr/Ph <0 .2 5。萜烷以伽玛蜡烷含量高 ,Tm/Ts >1。脱羟基维生素E普遍存在 ,其分布型式主要有倒“V”字型和不对称“V”字型。根据C2 9甾烷 2 0S/ (2 0S +2 0R) ,C2 9甾烷 ββ/ (ββ +αα) ,C3 2 藿烷 2 2S/ (2 2S +2 2R)等成熟度参数 ,认为原油属于未熟油。伽玛蜡烷、脱羟基维生素E及碳同位素组成特征反映原油属咸水湖相、盐湖相成因。 相似文献
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Road Erosion and Delivery Index (READI): A Model for Evaluating Unpaved Road Erosion and Stream Sediment Delivery 总被引:1,自引:0,他引:1
Lee Benda Cajun James Daniel Miller Kevin Andras 《Journal of the American Water Resources Association》2019,55(2):459-484
The Road Erosion and Delivery Index (READI) is a new geographic information system–based model to assess erosion and delivery of water and sediment from unpaved road networks to streams. READI quantifies the effectiveness of existing road surfacing and drain placements in reducing road sediment delivery and guides upgrades to optimize future reductions. Roads are draped on a digital elevation model and parsed into hydrologically distinct segments. Segments are further divided by engineered drainage structures. For each segment, a kinematic wave approximation generates runoff hydrographs for specified storms, with discharge directly to streams at road–stream crossings and onto overland‐flow plumes at other discharge points. Plumes are attenuated by soil infiltration, which limits their length, with delivery occurring if plumes intersect streams. Sediment production and sediment delivery can be calculated as a relative dimensionless index. READI predicts only a small proportion of new drains and new surfacing results in the majority of sediment delivery reductions. The model illustrates how the spatial relationships between road and stream networks, controlled by topography and network geometries, influence patterns of road–stream connectivity. READI was applied in seven northern California basins. The model was also applied in a recent burn area to examine how reduced hillslope infiltration can result in increased hydrologic connectivity and sediment delivery. 相似文献