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1.
Two industrial sites were investigated based on years of available hydrogeologic information and monitoring data for soil and groundwater. Collected data were forensically evaluated using age-dating and fingerprinting methods. The previous business uses of the project sites were as a gas station, laundry/dry-cleaning service, and car wash with petroleum underground storage tanks (USTs). As a result, these sites were exposed to a number of toxic contaminants at relatively high concentrations. Source control was necessary for successful remediation and the ultimate removal of the remaining compounds from these industrial sites. Although contaminated soil around the source was excavated during the remedial action and the high concentrations of contaminants were reduced, typical groundwater contaminants such as petroleum hydrocarbons as gasoline (TPH-G), benzene, toluene, ethylbenzene, xylenes (BTEX), and oxygenates including methyl tert-butyl ether (MTBE), diisopropyl ether (DIPE), ethyl tert-butyl ether (ETBE), tert-amyl methyl ether (TAME), and tert-butyl alcohol (TBA) were persistently found at the studied sites around the source points. The plume and concentration of contaminants had changed their shapes and strength for all monitoring periods. Thus, additional source control seems to be a requirement for the complete removal of source contamination, which must be ascertained with groundwater and soil monitoring on a regular time base. For the study sites, monitored natural attenuation was relatively feasible for the long-term plan; however, it did not offer a perfect remediation solution for an ultimate goal because of residual toxic compounds that might have affected the surrounding residential areas at higher concentrations than their health limits. Therefore, as a remediation strategy, the combination of clean-up technology and natural attenuation with monitoring activities are more highly recommended than either clean-up or natural attenuation used separately.  相似文献   
2.
污泥干化过程中苯系物(BTEX)的释放及其致癌风险评价   总被引:7,自引:2,他引:5  
在模拟污泥干化的条件下,研究了4种类型污水污泥苯系物(BTEX)的释放特征及其影响因素.结果表明,在50-300℃的干化温度范围内,4种污泥的BTEX释放总置在4.20~161.90μg·m-3之间;在温度高于150℃之后,各类污泥中的BTEX释放量大幅增加;而低于150℃的情况下,污泥中BTEX的释放量仅占总BTEX释放量的5.09%.不同温度下污泥的BTEX释放量与其在污泥中的含量之间存在显著的线性关系.不同类型的污泥其所释放的BTEX组分之间具有较大的差别,污泥中BTEX的含量决定其所释放的数量,而其释放强度则取决于干化温度.对污泥释放BTEX进行健康风险评价表明,各类污泥在150~300℃下所释放的苯对暴露人员存在一定的致癌风险,其中女性相对于男性致癌风险更高.控制污泥干化温度可以最大限度地减少BTEX释放,进而降低致癌风险.  相似文献   
3.
研究了30℃条件下,浓度为1.2×10-4mol·l-1—2.88×10-2mol·l-1的阳离子表面活性剂十六烷基三甲基溴化铵(CTAB)溶液的吸光度及相应浓度条件时对典型苯系物(苯、甲苯和乙苯)的增溶作用.利用表面活性剂的紫外吸收随浓度变化这一特性,从其不同的拐点处求得CTAB的第一、第二临界胶束浓度分别为7.2×10-4mol·l-1和9.6×10-3mol·l-1.在实验浓度范围内,CTAB溶液对苯、甲苯和乙苯的表观溶解度增溶曲线上同样得到两个拐点,即苯7.2×10-4mol·l-1和9.6×10-3mol·l-1,甲苯7.2×10-4mol·l-1和7.2×10-3mol·l-1以及乙苯7.2×10-4mol·l-1和9.6×10-3mol·l-1,这与第一、第二临界胶束浓度相等或相近.由于溶液中CTAB胶束形态随浓度增加而变化,表明胶束形态对CTAB增溶苯系物的行为有显著影响。  相似文献   
4.
加油站渗漏污染地下水已经是一个世界性的问题。由于浅埋区加油站储罐与地下水密切接触,更加剧储罐的腐蚀。为揭示加油站渗漏的典型污染物石油烃(TPH)、苯系物(BTEX)、萘和甲基叔丁基醚(MTBE)在该水文地质条件下的迁移变化,在浅埋区某加油站开展了平、枯、丰水期的地下水监测工作。在水平分布上,TPH、BTEX、萘基本相似,均在加油岛附近形成高浓度区,而MTBE则更易随地下水流动而迁移,呈现出不同的污染晕。在垂直分布上,地下水的水位变动是污染物浓度分布的主要影响因素。  相似文献   
5.
石化污泥对苯系化合物好氧生物降解的研究   总被引:3,自引:1,他引:2  
为了探讨苯系化合物的生物降解途径,选用从石油化工污水处理场曝气池活性污泥中富集的混合菌种,在好氧条件下,研究了苯,甲苯,乙基苯,邻-,间-和对二甲苯的可生物降解性,当化合物的浓度为50-140mg/L时,6种被试验化合物均可被微生物降解,从该混合菌种中筛选出17株可降解甲苯,乙基苯,三甲苯,障-和对二甲苯的单一菌种,其中  相似文献   
6.
建立了用气相色谱法同时测定室内空气中乙苯和乙酸丁酯的方法。乙苯和乙酸丁酯经活性炭吸附,二硫化碳解吸,DB~200毛细管柱分离,直接进样分析,氢火焰离子化检测器检测,时间定性,峰面积定量,乙苯回收率为95.3%-105.5%、乙酸丁酯回收率为94.8%-104.8%,当采样体积为30L,乙苯最低检出质量浓度为0.002m∥m。,乙酸丁酯最低检出质量浓度为0.003mg/m’。本方法前处理简便,分离度好,分析灵敏度高,满足室内环境分析要求。  相似文献   
7.
Different concentrations of BTEX, including benzene, toluene, ethylbenzene, and three xylene isomers, were added into soil samples to investigate the anaerobic degradation potential by the augmented BTEX-adapted consortia under niwate reducing conditiom. All the BTEX substrates could be anaerobically biodegraded to non-detectable levels within 70 d when the initial concentrations were below 100 mg/kg in soil. Toluene was degraded faster than any other BTEX compounds, and the high-to-low order ofdegradation rates were toluene>ethylbenzene>m. xylene>o-xylene>benzene>P. xylene. Nitrite was accumulated with nitrate reduction. but the accumulation of nitrite had no inhibitory effect on the degradation of BTEX throughout the whole incubation. Indigenous bacteria in tIle soil could enhance the BTEX biodegradation ability of the enriched mixed bacteria. When the six BTEX compounds were simultaneously present in soil, there was no apparent inhibitory effect on their degradation with lower initial concentrations. Alternatively, benzene, o-xylene, and P-xylene degradation were inhibited with higher initial concentrations of 300 mg/kg. Higher BTEX biodegradation rates were observed in soil samples with the addition of sodium acetate compared to the presence of a single BTEX substrate. and the hypothesis of primary-substrate stimulation or cometabolic enhancement of BTEX biodegradation seems likely.  相似文献   
8.
A series of batch experiments were performed using mixed bacterial consortia to investigate biodegradation performance of benzene, toluene, ethylbenzene and three xylene isomers (BTEX) under nitrate, sulfate and ferric iron reducing conditions. The results showed that toluene, ethylbenzene, m-xylene and o-xylene could be degraded independently by the mixed cultures coupled to nitrate, sulfate and ferric iron reduction. Under ferric iron reducing conditions the biodegradation of benzene and p-xylene could be occurred only in the presence of other alkylbenzenes. Alkylbenzenes can serve as the primary subs'rates to stimulate the transformation of benzene and p-xylene under anaerobic conditions. Benzene and p-xylene are more toxic than toluene and ethylbenzene, under the three terminal electron acceptors conditions, the degradation rates decreased with toluene 〉 ethylbenzene 〉 m-xylene 〉 o-xylene〉 benzene 〉 p- xylene. Nitrate was a more favorable electron acceptor compared to sulfate and ferric iron. The ratio between sulfate consumed and the loss of benzene, toluene, ethylbenzene, o-xylene, m-xylene, p-xylene was 4.44, 4.51, 4.42, 4.32, 4.37 and 4.23, respectively; the ratio between nitrate consumed and the loss of these substrates was 7.53, 6.24, 6.49, 7.28, 7.81, 7.61, respectively; the ratio between the consumption of ferric iron and the loss of toluene, ethylbenzene, o-xylene, m-xylene was 17.99, 18.04, 18.07, 17.97, respectively.  相似文献   
9.
BACKGROUND, AIM AND SCOPE: The volatile organic compounds Benzene, Toluene, Ethylbenzene and Xylene (BTEX) are commonly found in petroleum derivatives and, at relatively high levels, can be associated with human health risks. Due to industrial activities, accidental petroleum spills are the main route of soil and groundwater contamination. The aim of the present study was to evaluate the indoor health risks due to tap water consumption contaminated by BTEX. MATERIALS AND METHODS: BTEX indoor exposure can occur through three principal pathways: inhalation, ingestion and dermal absorption. A multiphase and multicomponent model was used to simulate BTEX transport in groundwater. For evaluation of human risks due to the use of contaminated tap water, a mathematical model was elaborated. RESULTS: BTEX concentrations in a drinking well were obtained as a function over time. These concentrations were used to obtain the exposure due to the use of water from the contaminated drinking well. In addition to showing the highest concentration in water, benzene was the compound that remained for a longer period before being completely degraded. For all the evaluated BTEX, oral ingestion was also the main pathway of exposure for adults, whereas the contribution of inhalation and oral exposition in children were seen to be of the same magnitude. The sensitivity analysis of BTEX total dose for adults showed that direct ingestion was the most significant factor, followed by shower time, volume of the shower room, inhalation rate, and shower flow rate. For children, the most significant variable was also direct ingestion, followed by shower time, volume of the shower room, and body weight. DISCUSSION: In the current design situation, there would not be any health risks by the use of BTEX-contaminated water to the general population living in the neighborhood of the petroleum spill. Therefore, no remediation measures in the area of the spill would be necessary. CONCLUSIONS: The present results indicate that the design of a good scenario can perform an accuracy risk assessment. This model can serve as a useful tool for predicting indoor exposure to substances for which no direct data are available, reducing monitoring efforts and observing how different processes affect outcomes. RECOMMENDATIONS AND PERSPECTIVES: These preliminary data allow the establishment of a basis for further investigations focusing on efficiently recovering petroleum from contaminated sites.  相似文献   
10.
对添加表面活性剂鼠李糖脂后生物滴滤塔(BTF)去除乙苯废气的效能及滴滤塔中微生物16S r DNA高通量测序结果进行分析,探讨了鼠李糖脂对生物滴滤塔处理有机废气效能的影响机理.结果发现:鼠李糖脂在浓度为21.6 mg·L~(-1)时对微生物生长的促进作用尤为明显,BTF2(添加鼠李糖脂)和BTF1(对照)在挂膜启动期间生物量都呈现出逐渐增加的趋势,添加鼠李糖脂的BTF2在第35 d时生物量比BTF1增加了39.62 mg·g-1.BTF2的挂膜启动时间比BTF1缩短了5 d,并且系统挂膜稳定后对乙苯废气的去除率提高了12%.BTF1和BTF2的微生物群落组成基本相同,主要优势菌群是变形杆菌门.在BTF1系统中,变形杆菌门占62.3%;在BTF2系统中,变形杆菌门占81.9%.在属水平上,BTF1下层系统的主要优势菌属占45.7%,在BTF2下层系统主要优势菌属占73.4%.研究表明,在BTF系统中添加鼠李糖脂可以促进优势菌的富集生长,缩短系统启动挂膜时间,强化BTF系统对乙苯的降解,并提高BTF的去除效率和稳定性.  相似文献   
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