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161.
沈抚新城地下水中PAHs的污染特征及健康风险评价   总被引:1,自引:1,他引:0  
为了保障浑河流域处于正在进行城镇化沈抚新城居民的生活用水安全,采集该地区49个地下水样品对16种US EPA优控的多环芳烃(PAHs)进行了分析,并对PAHs的污染水平、空间分布、来源与饮水健康风险进行了调查与评估.结果表明:49个采样点均有不同程度的PAHs检出,地下水中PAHs的浓度范围为(4.38~2 005.02 ng·L~(-1)),平均浓度值为(414.64±526.13) ng·L~(-1),与国内外其他地区地下水对比,处于较高污染水平.地下水中PAHs主要以3环和4环为主,其平均浓度分别为(190.93±238.96) ng·L~(-1)和(140.01±234.69) ng·L~(-1),两者占总PAHs含量的80%.枯水期的地下水中PAHs空间分布受土地利用类型影响较大,当表层土壤为耕地时,地下水PAHs浓度较大,而为林地时PAHs浓度较小.由主成分分析-多元线性回归结果得知,地下水中PAHs主要来源于汽油和天然气的不完全燃烧、煤炭燃烧、石油泄漏以及交通排放,其贡献率依次为36.26%、32.72%、28.17%和2.87%.不同人群通过饮用地下水暴露于PAHs的终生致癌风险ILCR值范围为5.55×10-10~5.65×10-6,其中13.60%的值处于10-6~10-4之间,具有潜在的癌症风险,需引起对地下水质量的关注.  相似文献   
162.
The increasing production and usage of chlorinated paraffins(CPs) correspondently increase the amount of CPs that experience thermal processes. Our previous study revealed that a significant amount of medium-chain chlorinated paraffins(MCCPs), short-chain chlorinated paraffins(SCCPs) as well as aromatic and chlorinated polycyclic aromatic hydrocarbons(Cl-PAHs) were formed synergistically during the thermal decomposition of CP-52(a class of CP products).However, the transformation mechanisms of CP-52 to these compounds are still not very clear.This article presents a mechanistic analysis on the decomposition of CP-52 experimentally and theoretically. It was found that CP-52 initially undergoes dehydrochlorination and carbon chain cleavage and it transformed into chlorinated and unsaturated hydrocarbons. Cyclization and aromatization were the most accessible pathways at low temperatures(200–400°C), both of which produce mostly aromatic hydrocarbons. As the temperature exceeds 400°C, the hydrocarbons could decompose into small molecules, and the subsequent radical-induced reactions become the predominant pathways, leading to the formation of Cl-PAHs. The decomposition of CP-52 was investigated by using density functional theory and calculations demonstrating the feasibility and rationality of PCB and PCN formation from chlorobenzene. The results improve the understanding of the transformation processes from CP-52 to SCCPs and Cl-PAHs as well as provide data for reducing their emissions during thermal-related processes.  相似文献   
163.
选取重庆某地区3个页岩气田作为研究对象,研究了5个钻井平台页岩气开采过程中废水基和油基钻井岩屑中重金属、多环芳烃(PAHs)和石油烃的污染特性.结果表明,两类钻井岩屑中Ba元素平均含量明显高于其他重金属,废水基钻井岩屑的重金属以Zn、Ba、Cr、Ni、Cu、Pb为主,废油基钻井岩屑中的重金属以Ni、Cu、Zn、Pb、Ba、As、Cr为主且Ni、Cu、Zn、Pb平均含量超过《危险废物鉴别标准毒性物质含量鉴别》(GB5085.6-2007)标准限值.废水基和油基钻井岩屑中PAHs的范围分别为1.74~14.8mg/kg和302~595mg/kg,均未超过GB5085.6-2007标准限值.废油基钻井岩屑石油烃含量为112~213g/kg,远超GB5085.6-2007标准限值.同时,废水基和油基钻井岩屑中BaP超过《土壤环境质量农用地土壤污染风险管控标准(试行)》(GB15618-2018)标准限值;废油基钻井岩屑中部分PAHs(BaP、BbF、BkF、DahA)浓度超过《土壤环境质量建设用地土壤污染风险管控标准(试行)》(GB36600-2018)中筛选值,岩屑中石油烃含量远超管制值.  相似文献   
164.
根系质外体溶液中多环芳烃(PAHs)的分析对于阐明植物根系PAHs吸收运移机制及阻控意义重大.然而,迄今鲜有便捷成熟的植物根系质外体溶液提取方法的报道.为此,本研究以小麦为材料,菲为PAHs的代表,探究了植物根系质外体溶液的真空渗透离心提取方法.结果表明,小麦根系质外体菲提取量随真空度、真空时间、离心速率、离心时间的增加而增大;小麦根系质外体六磷酸葡萄糖脱氢酶(G6PDH)活性随真空度、真空时间、离心速率、离心时间的增加而升高.依据质外体溶液受原生质污染程度小于1%且尽量提取完全的原则,真空渗透离心提取法的最佳真空度为70 k Pa,最佳真空时间为10 min,最佳离心速率为3 068 r·min-1,最佳离心时间为15 min.研究结果可为污染物的植物根系质外体运输研究提供有效、简便的方法支撑.  相似文献   
165.
吴喜军  董颖  赵健  刘静  张亚宁 《环境科学》2023,44(4):2040-2051
为研究陕北矿区内典型河流窟野河水体中多环芳烃(PAHs)的赋存水平、空间分布、来源和生态风险,采用高效液相色谱-二极管阵列检测器串联荧光检测器法,对研究区水体中59个采样点的16种PAHs进行了定量检测分析.结果表明,窟野河水体中■范围为50.06~278.16 ng·L-1,平均值为128.22 ng·L-1;单体浓度范围为0~121.22 ng·L-1,其中■的检出浓度最高,平均值为36.58 ng·L-1,其次是苯并[a]蒽和菲;各单体检出率均在70%以上,12种单体的检出率为100%; 59个采样点中4环PAHs的相对丰度较大,占比范围为38.59%~70.85%;各采样点间浓度差异显著,浓度高值点主要集中在矿业活动工业区和人口密集区;与国内外其它河流相比,窟野河水体中PAHs浓度处于中等水平.运用正定矩阵因子分解法(PMF),结合特征比值法,对PAHs的来源种类与来源贡献进行了定量分析,表明窟野河中上游工业区水体中PAHs主要来源于焦化和石油类物质排放(34.67%)、煤炭燃烧(30.62...  相似文献   
166.
Microorganisms capable of degrading monocyclic and polycyclic aromatic hydrocarbons and several chlorinated aromatic compounds were isolated from soils polluted with industrial waste from chemical plants. They were identified as representatives of the genera Pseudomonas, Flavobacterium, Alcaligenes, Rhodococcus, Microbacterium, Cellulomonas, Arthrobacter, and Brevibacterium. Among them, bacteria capable of utilizing xenobiotics in a wide range of ambient temperatures and pH and in the presence of high sodium chloride concentrations were revealed.  相似文献   
167.
Accumulation and phytoavailability of benzo[a]pyrene in an acid sandy soil   总被引:1,自引:0,他引:1  
Effects of benzo[a]pyrene (B[a]P) on ryegrass (Lolium perenne L.) growth, plant accumulation and dissipiation of B[a]P in a red sandy soil (Hapli-Udic Argosol) were studied in a pot experiment. The plants were grown for 61 days in soil spiked with B[a]P at 0, 12.5, 25 and 50 mg kg−1. Control pots without plants were also set up. Soil extractable B[a]P, plant shoot and root biomass, and concentrations of B[a]P in plant shoots and roots were determined. Ryegrass biomass was increased by addition of B[a]P and root B[a]P concentrations were significantly correlated with B[a]P application rate, but no such correlation was found for shoot B[a]P concentrations. This indicates that B[a]P enhanced the growth of the ryegrass. The extractable B[a]P concentration in the planted soil was significantly lower than that in the unplanted control soil at the rate of 50 mg B[a]P kg−1. This indicates that ryegrass may help to dissipate B[a]P in soil at concentrations over 50 mg kg−1 soil although the mechanism for this is not understood.  相似文献   
168.
大气中芳香胺及吡啶类化合物的离子色谱法测定   总被引:3,自引:1,他引:3  
采用GDX-501富集大气中芳香胺及吡啶类化合物,经沸水解吸后解吸液直接注入离子色谱仪,用紫外/可见光检测器进行测定。方法灵敏、简便,可同时测定吡啶、2-甲基吡啶、3-甲基吡啶、苯胺、邻-甲苯胺、间-甲苯胺等。当采样体积为30L时,方法的最低检出浓度范围为0.05~0.10mg/m3(吡啶~间甲苯胺),测定的回收率为84.7%~95.9%,相对标准偏差为4.0%~6.6%。  相似文献   
169.
将固相微萃取与气相色谱联用,对贵阳红枫湖水样中16种美国环境保护署优控的多环芳烃进行分析。结果表明:红枫湖水中16种多环芳烃总量为0167 1~0336 4 μg/L,与国内其它水系相比,湖中存在多环芳烃轻度污染。7种(萘、荧蒽、苯并(b)荧蒽、苯并(k)荧蒽、苯并(a)芘、茚并(1,2,3-cd)芘和苯并(ghi)苝)多环芳烃的总量未超出中国城市供水行业对多环芳烃规定的限值,但作为饮用水源,红枫湖水中的苯并(a)芘含量已超出我国标准GB3838-2002中生活饮用水地表水源地的苯并(a)芘限值,并且苯并(a)蒽、〖JX-*9〗〖SX(B-25x〗〖HT7,5”〗艹〖〗〖HT6”,5”〗屈〖HT5”〗〖SX)〗〖JX*9〗、苯并(b)荧蒽、苯并(k)荧蒽、苯并(a)芘、茚并(1,2,3-cd)芘的含量也超过了美国环境保护署地表水水质标准限值。通过多环芳烃特征参数的比值,分析了红枫湖水中多环芳烃的污染来源。污染源分析表明,湖中多环芳烃的主要来源为燃烧源,包括木材、煤以及化石燃料的燃烧,同时也有一部分多环芳烃是来源石油类物质的输入.  相似文献   
170.
Globally, extensive marine areas important for biodiversity conservation and ecosystem functioning are undergoing exploration and extraction of oil and natural gas resources. Such operations are expanding to previously inaccessible deep waters and other frontier regions, while conservation‐related legislation and planning is often lacking. Conservation challenges arising from offshore hydrocarbon development are wide‐ranging. These challenges include threats to ecosystems and marine species from oil spills, negative impacts on native biodiversity from invasive species colonizing drilling infrastructure, and increased political conflicts that can delay conservation actions. With mounting offshore operations, conservationists need to urgently consider some possible opportunities that could be leveraged for conservation. Leveraging options, as part of multi‐billion dollar marine hydrocarbon operations, include the use of facilities and costly equipment of the deep and ultra‐deep hydrocarbon industry for deep‐sea conservation research and monitoring and establishing new conservation research, practice, and monitoring funds and environmental offsetting schemes. The conservation community, including conservation scientists, should become more involved in the earliest planning and exploration phases and remain involved throughout the operations so as to influence decision making and promote continuous monitoring of biodiversity and ecosystems. A prompt response by conservation professionals to offshore oil and gas developments can mitigate impacts of future decisions and actions of the industry and governments. New environmental decision support tools can be used to explicitly incorporate the impacts of hydrocarbon operations on biodiversity into marine spatial and conservation plans and thus allow for optimum trade‐offs among multiple objectives, costs, and risks.  相似文献   
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