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1.
在山西省临汾市南部燃煤污染代表性区域(1034 km~2)采集了128个表层土壤样品,采用气相色谱-质谱联用技术(GC-MS)分析了土壤中16种优控多环芳烃(PAHs)的含量,并对样品中PAHs的生态风险和人体健康风险进行了评价。结果显示,16种PAHs的质量分数为(723.2±1 230)μg·kg~(-1),组成成分以4~6环为主。根据Maliszewska-Kordybach分级评价标准,研究区域土壤中78.12%的样品受到PAHs不同程度的污染。基于内梅罗综合污染指数法评价结果,研究区域83.59%的样点存在PAHs污染,其中古城镇和新城镇60%以上的采样点达到了重度污染级别。基于毒性当量因子(Toxic Equivalency Factor,TEF)风险评价法的生态风险评价结果显示,荷兰土壤质量标准所涉及到的10种PAHs的苯并(a)芘(Bap)毒性当量浓度(Bap toxic equivalent quantity,TEQ_(Bap))为(67.50±137.7)μg·kg~(-1),其中42.19%的样点超过荷兰土壤TEQ_(Bap10)的标准限值,古城镇和新城镇土壤中PAHs平均超标3倍以上。对研究区域的暴露人群分别进行非致癌风险及致癌风险评价,结果显示研究区域土壤中的PAHs不会对成人和儿童产生明显的非致癌风险。而在古城镇、新城镇、陶寺乡、景毛乡和永固乡,土壤中PAHs引起的综合致癌风险已超过可接受致癌风险(10~(-6)),对人群健康构成了潜在威胁,需引起重视;其他研究区域的致癌风险仍在可接受范围(10~(-6))之内。  相似文献   

2.
黄河三角洲自然保护区在经济和生态上的作用越来越重要,该地区的生态环境也不断发生着变化。为了解黄河三角洲国家级自然保护区内土壤PAHs的含量、分布及风险状况,更好地保护和治理环境,在保护区不同功能区内设置71个点位,采集0—10 cm土壤测定16种优控PAHs的含量并结合效应区间低、中值法和各PAHs单体致癌斜率因子参数评估法评价其生态风险和健康风险,探究土壤PAHs的空间分布状况。结果表明:研究区域PAHs污染水平相对较低,16种优控PAHs的检出率为100%,其含量介于10.92—125.98ng·g-1,远低于效应区间低值,潜在生态风险水平极低。利用各PAHs单体致癌斜率因子参数进行健康风险评价,结果显示区域内成人和儿童的致癌风险值为1.14×10-6—1.23×10-6,略大于健康管控值(1.0×10-6),表明存在潜在致癌风险。利用Kriging插值法分析空间格局,PAHs的块基比为0.59,为中等空间相关性,呈现北高南低的趋势;而健康风险值的块基比为0.88>0.75,空间相关性弱,其中南部地区的健康风险...  相似文献   

3.
为研究焦化厂土壤中多环芳烃(PAHs)的污染特征及其健康风险,以某焦化厂为目标,布设260个点位,根据各点位污染情况,采集不同深度的土壤样品共780件。通过分析样品中18种PAHs含量,探讨了不同判定标准下厂区土壤中PAHs总体污染程度以及不同功能区污染状况特征,同时根据HJ 25.3—2019《建设用地土壤污染风险评估技术导则》对厂区内18种PAHs进行健康风险评价。结果表明:(1)该焦化厂污染水平较高,且厂区污染在空间上表现出强烈非均质性。厂区内PAHs以2~3环为主,占比为58.82%,4~6环PAHs占比为41.48%。厂区内以苯并[a]芘为基准的6种主要风险PAHs的毒性当量浓度(TEQBap)分布特征与总PAHs(∑18PAHs)含量分布具有一致性。(2)不同功能区表层土壤PAHs含量均值从高到低依次为污水处理区>化产区>焦炉区>锅炉发电厂>煤炭储存区>办公区。不同功能区低环与中高环PAHs含量比值不同,表明各区域污染物来源存在差异。(3)厂区内主要健康风险来源于化合物的致癌风险,不同功能区的致癌风险...  相似文献   

4.
以具有致癌毒性的多环芳烃(polycyclic aromatic hydrocarbons,PAHs)为对象,本研究于2014年1月(冬季)在湖北恩施农村地区使用煤炭和薪柴的家庭中同步采集了室内外空气样品,分析了室内外空气中28种PAHs(∑PAH28)的浓度水平、成分谱和粒径分布,重点比较了不同燃料家庭的污染特征差异,并据此估算了暴露人群的健康风险。结果表明,在燃煤家庭,∑PAH28的室内和室外浓度分别是(507±449) ng·m~(-3)和(120±18) ng·m~(-3);而在燃柴家庭,其室内和室外∑PAH28浓度分别是(849±421) ng·m~(-3)和(268±44) ng·m~(-3)。受室内排放源影响,室内PAHs浓度显著高于室外,室内外∑PAH28浓度比值在2~13。颗粒态PAHs主要集中在细颗粒物上,PM1.0(空气动力学直径小于1.0μm)上的PAHs占到颗粒态PAHs的50%~80%。燃煤家庭的居民因PAHs呼吸暴露导致的终生致癌风险的中位数是1.8×10~(-5)(四分位距是1.2×10~(-5)~3.1×10~(-5)),使用薪柴的家庭人群暴露风险7.1×10~(-5)(6.5×10~(-5)~7.8×10~(-5))。无论是燃煤还是薪柴的家庭,居民因PAHs呼吸暴露导致的终生致癌风险均超过10-6的可接受风险水平,表明该地区的高浓度PAHs污染致使当地人群存在较高的致癌风险。  相似文献   

5.
提出了基于人体健康风险的土壤修复目标的制定方法和程序,并以上海市某重大工程多环芳烃污染土壤处理后再利用工程为例,模拟了多环芳烃在处置场地上的多介质迁移途径及人体暴露场景。模拟结果显示,填埋场污染土壤苯并(a)芘(该污染物毒性因子高,毒性强,致癌风险相对较大)经口摄入和皮肤接触途径最大致癌暴露量分别为1.89×10-6和0.93×10-6mg.kg-1.d-1,人体最大致癌风险水平分别为1.38×10-5和6.79×10-6,超出了中国规定的单致癌污染物的可接受风险水平(≤10-6)。苯并(a)芘呼吸吸入途径最大致癌暴露量为7.79×10-10mg.m-3,人体最大致癌风险水平为6.86×10-10。基于场地的特征条件和参数,以保护人体健康为目的,确定了再利用作为填埋场中层覆土的土壤中5种多环芳烃污染物的修复目标限值(w,mg.kg-1)分别为:苯并(a)芘,0.994;二苯并(a,h)蒽,0.995;苯并(a)蒽,9.95;苯并(b)荧蒽,9.95;苯并(k)荧蒽,99.5。  相似文献   

6.
人类大规模的工业活动是环境污染物的重要来源之一,工业场地及其周边环境污染问题较其他环境更为典型和突出。为探究宁夏某典型工业园区土壤中多环芳烃(PAHs)的污染状况、组成、来源及毒理学风险,本研究采集了冶金、化学农药制造和化学制品制造等不同行业的企业及其厂区周边的108个表层土壤样本。采用气相色谱-质谱法(GC-MS)分析了16种PAHs的浓度,用正定矩阵因子分解法(PMF)进行来源解析,使用毒性当量浓度(TEQ)、诱变当量浓度(MEQ)和终生致癌风险(ILCR)3个指标进行了毒理学风险评估,并进一步评估特定来源的致癌和致突变风险贡献,以促进在风险基础上的排放源管理和控制。结果表明,该工业园区表层土壤中PAHs的平均浓度为(2 029.1±5 585.9)μg·kg-1,在全国和宁夏区内均处于较高污染水平。园区内土壤PAHs主要来源为交通源(53.9%)、重油燃烧源(27.0%)、煤和生物质燃烧源(14.9%)和钢铁工业来源(4.2%),主要污染行业为活性炭制造、石灰氮制造和冶金工业。PAHs对成人的ILCR为4.5×10-6,潜在致癌风险主要...  相似文献   

7.
北京市某废弃化工厂的人类健康风险评价   总被引:17,自引:0,他引:17  
由于北京城市化速度的加快,五环路内的工厂将陆续搬迁,搬迁后的土地,使用功能将发生根本性变化,由于修复成本较高,是否对受污染土地进行修复,需要借助健康风险评价,以便确保人们的健康安全.运用美国的健康风险评价框架,对北京市某废弃化工厂场地进行了健康风险分析,计算了将该废弃场地用作居住用地对人类的健康风险指数及确定是否需要进行修复.在场地内,分2次进行了3层土壤采样,共采集到80个样品.选取Cr、Zn、Ni、Pb、Hg、Cu、As、Cd、DDT、六六六(HCH)和邻苯二甲酸二辛酯(DP)11种超标污染物作为目标污染物,对其进行健康风险评价.按照美国EPA的方法,选取了95%置信上限含量进行风险指数的计算.评价结果显示,该场地成人的非致癌风险指数为15.85,儿童的非致癌风险指数为18.17,均超过了非致癌风险指数可接受值1.0,表明该化工厂场地对成人和儿童均有非致癌风险;对成人,邻苯二甲酸二辛酯的致癌风险指数为不可接受值(>1×10-4),对儿童,邻苯二甲酸二辛脂和DDT的致癌风险为不可接受值(>1×10-4),其它污染物的致癌风险均在可接受范围之内.由于案例中的场地将被用作居住用地,建议对该场地进行部分修复.  相似文献   

8.
辣椒中多环芳烃的累积特征及健康风险评估   总被引:2,自引:0,他引:2  
采集多环芳烃(PAHs)污染来源和程度不同的3种土壤,并制备2种柴油污染土壤,采用盆栽试验方法种植辣椒,种植期间收集大气沉降颗粒物,检测了土壤、辣椒各部位和大气沉降颗粒物中美国环保署优先控制的16种PAHs含量和组成,分析了大气沉降颗粒物中PAHs对辣椒地上部PAHs的贡献率,阐明辣椒中PAHs累积的主要途径,并对不同年龄的人群摄食辣椒果实的健康风险进行了评估.结果表明,辣椒根、茎、叶和果中PAHs的含量范围为205.3—1087.8、123.2—791.8、88.3—599.5、57.2—368.1 ng·g~(-1),根中的含量最高,果实中的含量最低.辣椒各部位中PAHs总含量均与土壤中的含量呈显著正相关关系(P0.05).辣椒中各环数PAHs质量分数大小顺序为3环4环5—6环2环;其中3环PAHs的质量分数由根部到果实呈递增的趋势,4—6环PAHs质量分数从根部到果实呈减小的趋势.总体上辣椒各部位中均呈现出低环PAHs的富集系数高于高环PAHs的规律.大气沉降颗粒物中PAHs对辣椒植株中PAHs的贡献率不超过0.3%,影响极小,因此土壤吸收是辣椒中PAHs累积的主要途径.柴油污染的2种土壤种植辣椒中的PAHs总毒性当量含量高于其他土壤.成人摄食中、重度和柴油污染土壤种植的辣椒果实以及老年人摄食柴油污染土壤种植的辣椒果实存在潜在致癌风险,儿童、青少年摄食不存在潜在致癌风险.  相似文献   

9.
合理确定重金属土壤筛选值是污染场地风险识别和调查评估的基础,过松或过严的标准都会增加风险评估的不确定性,甚至可能会导致风险管控措施失效或修复资金浪费,确定重金属土壤筛选值的关键影响因子是合理确定重金属土壤筛选值的前提。选择工业污染场地中检出频率高、毒性大的砷作为研究对象,通过假设工商业用地下的暴露情景,根据《污染场地风险评估技术导则》(HJ25.3—2014)得到砷筛选值计算公式,利用基于蒙特卡罗模拟的Crystal Ball模型计算公式中各参数对结果的敏感性和贡献率来确定关键影响因子,通过调研国内外砷筛选值现状,从计算模型、毒性评估及关键影响因子等方面对引起各国砷筛选值差异的原因进行了分析探讨。结果表明:工商业用地下土壤砷筛选值取值为0.84~175.7 mg·kg~(-1),均值为21.4 mg·kg~(-1),95%的置信上限为24.19 mg·kg~(-1);风险可接受水平、每日土壤摄入量(IR)、暴露频率(EF)和暴露周期(ED)对砷筛选值的贡献率依次为41.3%、-27.3%、-16.3%和-12.7%,其余因子的贡献率均小于1%;关键影响因子按贡献率绝对值从大到小分别为风险可接受水平、每日土壤摄入量(IR)、暴露频率(EF)、暴露周期(ED)。计算模型和毒性评估存在差异是国内外土壤砷筛选值差异的基础原因,当计算模型和毒性评估差异不大时,关键影响因子才是决定性因素,其影响程度与模拟计算的结果一致。建议我国完善筛选值计算模型,对砷的毒性效应和符合我国暴露人群特征的关键影响因子展开深入研究。  相似文献   

10.
采用盆栽实验方法在不同程度多环芳烃(PAHs)污染土壤中种植菠菜(Spinacia oleracea),检测土壤和菠菜中16种PAHs含量及组成,分析了菠菜各部位中PAHs富集系数,并对不同年龄人群摄食菠菜的健康风险进行评估。结果表明,菠菜地上部和地下部中PAHs含量分别为72.8~516.9和153.4~1 101.6 ng·g-1,种植土壤与菠菜各部位中PAHs含量呈极显著正相关。菠菜各部位中3环和4环化合物质量分数较高,菠菜地上部中致癌PAHs占比在5.4%~30.6%范围内。菠菜地下部中PAHs富集系数高于地上部(P0.05)。儿童、成人和老年人食用柴油来源的PAHs污染土壤种植菠菜均存在终生致癌风险;成人和老年人食用PAHs重度污染土壤种植菠菜存在终生致癌风险;除成人外,其他人群食用PAHs轻度和中度污染土壤种植的菠菜不存在终生致癌风险。不同年龄人群食用柴油来源的PAHs污染土壤种植的菠菜,产生的终生致癌风险值高于其他土壤。  相似文献   

11.
新疆焉耆盆地农田土壤重金属污染及健康风险评价   总被引:2,自引:0,他引:2  
为研究新疆焉耆盆地绿洲农田土壤重金属的污染及潜在健康风险,选取194个样点采集土壤样品,测定As、Cd、Cr、Cu、Ni、Pb和Zn共7种重金属元素含量。利用地质累积指数(I_(geo))评价农田土壤污染水平,采用US EPA健康风险评价模型,对农田土壤重金属污染的潜在健康风险进行评估。结果表明,研究区农田土壤7种重金属平均含量均未超出《食用农产品产地环境质量评价标准》中的限值,但Cd、Cr、Ni、Pb和Zn含量平均值分别超出新疆灌耕土背景值的1.67、1.41、1.30、3.01和6.78倍。农田土壤中Zn呈现轻度污染,Cd与Pb呈现轻微污染,As、Cr、Cu与Ni呈现无污染态势。健康风险评估结果表明,经手-口摄入是研究区农田土壤重金属日均暴露量及健康风险主要途径。农田土壤7种重金属通过3种暴露途径的非致癌风险商(HQ)与非致癌风险指数(HI),单项致癌风险指数(CR)与总致癌风险指数(TCR)均小于安全阈值,属于可接受风险水平。研究区农田土壤重金属对儿童的非致癌风险低于成人,致癌风险高于成人。研究区农田土壤中As与Pb是最主要的非致癌风险因子,As是最主要的致癌风险因子,研究区农田土壤中As对人体的健康风险应当引起重视。  相似文献   

12.

This study presents a comprehensive characterization of occurrence and levels of 16 polycyclic aromatic hydrocarbons (PAHs) in arable soils used for conventional and organic production in northern and central part of Serbia as well as cross-border region with Hungary. Furthermore, this study includes a characterization of PAH sources and carcinogenic/non-carcinogenic human health risk for PAHs accumulated in analysed arable soils. The total concentration of 16 PAHs varied between 55 and 4584 µg kg?1 in agricultural soil used for conventional production and between 90 and 523 µg kg?1 in agricultural soil used for organic production. High molecular weight (HMW) PAHs were dominant compounds with similar contribution in both soil types (86% and 80% in conventional and in organic soil, respectively). Principal component analysis and diagnostic ratios of selected PAHs were used for identification of PAH sources in the analysed soils. Additionally, positive matrix factorization was applied for quantitative assessment. The results indicated that the major sources of PAHs were vehicle emissions, biomass and wood combustion, accounting for?~?93% of PAHs. Exposure of farmers assessed through carcinogenic (TCR) and non-carcinogenic (THQ) risk did not exceed the acceptable threshold (TCR?<?10–6 and THQ?<?1). Oral ingestion was the main exposure route which accounted for 57% of TCR and 80% of THQ. It was followed by dermal contact. This investigation gives a valuable data insight into the PAHs presence in arable soils and reveals the absence of environmental and health risk. It also acknowledges the importance of comprehensive monitoring of these persistent pollutants.

  相似文献   

13.
In this research, a risk assessment was undertaken in order to develop the remediation and management strategy of a contaminated gunnery site, where a nearby flood controlling reservoir is under construction. Six chemicals, including explosives and heavy metals, posing potential risk to environmental and human health, were targeted in this study. A site-specific conceptual site model was constructed, based on effective, reasonable exposure pathways, to avoid any overestimation of the risk. Also, conservative default values were adapted to prevent underestimation of the risk when site-specific values were not available. The risks posed by the six contaminants were calculated using the API’s Decision Support System for Exposure and Risk Assessment, with several assumptions. In the crater-formed-area (Ac), the non-carcinogenic risks (i.e., HI values) of tri-nitro-toluene (TNT) and Cd were slightly larger than 1, but for RDX (Royal Demolition Explosives) was over 50. The total non-carcinogenic risk of the whole gunnery range was calculated to be 62.5, which was a significantly high value. The carcinogenicity of Cd was estimated to be about 10−3, while that for Pb was about 5 × 10−4, which greatly exceeded the generally acceptable carcinogenic risk level of 10−4–10−6. It was concluded from the risk assessment that there is an immediate need for remediation of both carcinogens and non-carcinogens before construction of the reservoir. However, for a more accurate risk assessment, further specific estimations of the changes in environmental conditions due to the construction of the reservoir will be required; and more over, the effects of the pollutants to the ecosystem will also need to be evaluated.  相似文献   

14.
城市回用水中多环芳烃致癌风险评价   总被引:1,自引:0,他引:1  
为评价人群暴露于城市回用水中16种多环芳烃(polycyclic aromatic hydrocarbons,PAHs)对于人体健康的潜在风险,采用气相色谱-质谱(GC-MS)联用的分析化学方法对不同季节回用水中16种PAHs进行定量分析;在此基础上采用美国国家科学院和国家研究委员会提出的环境健康风险评价方法,分析不同回用条件下具有中国水体基质特色的城市回用水中PAHs健康风险.结果显示,回用水样中16种PAHs的总浓度为1 422.85 ng·L-1,污水处理厂二级出水水样16种PAHs的总浓度为1 791.77 ng ·L-1,经过处理后回用水中PAHs含量有所降低.风险评价分析结果显示,回用水在城市绿化、农业灌溉和景观娱乐3种不同回用途径下多环芳烃的致癌风险分别为788×10-8、2.77×10-6、3.04×10-6,总致癌风险为5.89×10-6.以上结果可以得出,回用水在城市绿化、农田灌溉和景观娱乐接触过程中多环芳烃所增加的致癌风险很低,回用水中多环芳烃的健康风险处于可接受水平.  相似文献   

15.
Surface sediment samples were collected from intertidal zone of Asaluyeh, Persian Gulf, to investigate distribution, sources and health risk of sixteen polycyclic aromatic hydrocarbons (PAHs). Total PAH concentrations ranged from 1.8 to 81.2 μg kg?1 dry weight, which can be categorized as low level of pollution. Qualitative and quantitative assessments showed that PAHs originated from both petrogenic and pyrogenic sources with slight pyrogenic dominance. Source apportionment using principal component analysis indicated that the main sources of PAHs were fossil fuel combustion (33.59%), traffic-related PAHs (32.77%), biomass and coal combustion (18.54%) and petrogenic PAHs (9.31%). According to the results from the sediment quality guidelines, mean effects range-median quotient (M-ERM-Q) and benzo[a]pyrene toxic equivalents (BaPeq), low negative ecological risks related to PAH compounds would occur in the intertidal zone of Asaluyeh. The total benzo[a]pyrene (BaP) toxic equivalent quotient (TEQcarc) for carcinogenic compounds ranged from 0.01 to 7 μg kg?1-BaPeq, indicating low carcinogenic risk. The human health risk assessment of PAH compounds via ingestion and dermal pathways suggests low and moderate potential risk to human health, respectively.  相似文献   

16.
This study aims to determine the status of potentially toxic element concentrations of road dust in a medium-sized city (Rawang, Malaysia). This study adopts source identification via enrichment factor, Pearson correlation analysis, and Fourier spectral analysis to identify sources of potentially toxic element concentrations in road dust in Rawang City, Malaysia. Health risk assessment was conducted to determine potential health risks (carcinogenic and non-carcinogenic risks) among adults and children via multiple pathways (i.e., ingestion, dermal contact, and inhalation). Mean of potentially toxic element concentrations were found in the order of Pb > Zn > Cr(IV) > Cu > Ni > Cd > As > Co. Source identification revealed that Cu, Cd, Pb, Zn, Ni, and Cr(IV) are associated with anthropogenic sources in industrial and highly populated areas in northern and southern Rawang, cement factories in southern Rawang, as well as the rapid development and population growth in northwestern Rawang, which have resulted in high traffic congestion. Cobalt, Fe, and As are related to geological background and lithologies in Rawang. Pathway orders for both carcinogenic and non-carcinogenic risks are ingestion, dermal contact, and inhalation, involving adults and children. Non-carcinogenic health risks in adults were attributed to Cr(IV), Pb, and Cd, whereas Cu, Cd, Cr(IV), Pb, and Zn were found to have non-carcinogenic health risks for children. Cd, Cr(IV), Pb, and As may induce carcinogenic risks in adults and children, and the total lifetime cancer risk values exceeded incremental lifetime.  相似文献   

17.
Due to rapid urbanization and the implementation of ecological civilization construction in China, many industrial factories have been closed or relocated. Therefore, numbers of contaminated sites were generated with contaminated soils which may pose a risk to receptors living nearby. This study presented a spatial health risk assessment and hierarchical risk management policy making for mercury (Hg) in soils from a typical contaminated site in the Hunan Province, central China. Compared with the second class value (0.3 mg/kg) of the Chinese Environmental Quality Standard for Soils, the mean concentrations of Hg in the three soil depths exceeded the second class value. The non-carcinogenic risk of Hg probably posed adverse health effects in 41, 30 and 36 % of the surface soil, the moderate soil and subsoil, respectively, under a sensitive land scenario. The non-carcinogenic risk temporarily posed no adverse health effects in most areas under an insensitive land scenario except for the area around sampling site S29. Spatially, the central, southwest and northeast parts of the contaminated land under a sensitive land scenario should be regarded as the priority regions. For non-carcinogenic effects, the exposure pathways that resulted in the higher levels of exposure risk were ingestion and inhalation of vapors, followed by dermal contact and inhalation of particles. A risk-based integrated risk management policy including the hierarchical risk control values for different soil depths and the calculated remediation earthwork was proposed with consideration of the cost-benefit effect for the related decision-makers.  相似文献   

18.
热带砖红壤生长的小白菜吸收和累积PAHs的特征   总被引:1,自引:0,他引:1  
为了了解和掌握热带土壤栽培的小白菜(Brassica rapa L. Chinensis Group.)对多环芳烃(PAHs)污染物的吸收和累积规律,为热带土壤的安全利用及农产品安全生产提供科学依据,于2013 年5-9 月在海南省农垦科学院海口试验站网室内进行了小白菜盆栽试验.各处理土壤分别施加3 种单体 PAHs 的质量分数梯度为0、0.4、0.8、1.6、3.2 mg·kg^-1,撒播小白菜种子出苗后,每盆留苗6 株,自然条件,常规管理,各处理小白菜培养30 d 后收获.小白菜和土壤样品,用超声水浴萃取,层析小柱净化后,利用气相色谱-质谱法测定样品中的3 种PAHs.结果表明,小白菜根和叶中3 种PAHs 累积量随土壤施加质量分数的升高而增加,根部和叶对Phe 最大累积量分别为86.25 ng·g^-1 和37.18 ng·g^-1,而对 BaP 的最大累积量分别为20.78 ng·g^-1 和3.56 ng·g^-1;小白菜根对Phe 与Fla 的生物富集系数较大,且二者无明显差异,但对 BaP 的生物富集系数较小,且差异显著(P=0.006);3 种PAHs 单体在各种处理土壤中的残留在 84.49%-94.03%之间,各单体之间无明显差异,各处理之间也无明显差异.说明热带土壤生长的小白菜根和叶中3 种单体 PAHs 浓度显著低于其土壤中的浓度,且根部积累3 种单体PAHs 的浓度显著高于其叶中的浓度;小白菜叶对BaP 的吸收和累积量极少;小白菜根更易吸收和累积Phe 和Fla;小白菜生长30 d 后,绝大部分PAHs 仍残留在土壤中.  相似文献   

19.
通过对污灌区农田土壤多环芳烃(Polycyclic Aromatic Hydrocarbons,PAHs)的分布特征、污染程度及来源进行解析,深入了解污水灌溉引发的土壤污染问题,实现污水灌溉农田土壤的污染预警和科学合理利用.在太原污灌农田共采集110个土壤样品,使用气相色谱-质谱仪(Gas Chromatography...  相似文献   

20.
Study on the occurrence, sources and potential human health risk of polycyclic aromatic hydrocarbons in farmland soils around reservoirs is of great significance for the people drinking water security. In the present study, representative farmland soil samples around main reservoirs of Jilin Province, China, were investigated for 16 PAHs. The total concentrations of 16 priority PAHs in 32 farmland soil samples ranged from 602.12 to 1271.87 ng/g, with an arithmetic average of 877.23 ng/g, and the sum of seven carcinogenic PAH concentrations ranged from 30.07 to 710.02 ng/g, with a mean value of 229.04 ng/g. The 3-ring and 4-ring PAHs were major exist and account for 45.78 and 32.03%, respectively. Non-cancer and cancer risk of pollutants were calculated, and the results indicate that the complex PAHs in farmland soils were not considered to pose significant health effects. The isomer ratios Fla/(Fla + Pyr) and BaA/(BaA + Chr) show that the PAHs in soils were generally derived from biomass and coal combustion.  相似文献   

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