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1.
监测式自然衰减(MNA)能够高效低耗地原位修复石油污染地下水的场地,微生物对污染物的降解对MNA过程起到了重要作用。在分析东北石油污染场地地下水中总石油烃(TPH)、电子受体的质量浓度分布和变化规律基础上,划分了微生物功能区。采用溶质通量计算法,对MNA原位修复的潜能及其微生物降解效果进行了评估。结果显示,场地微生物降解正在发生,利用的电子受体不同,划分为Mn、Fe和SO2-4还原区。污染通量模型计算显示:上游地区微生物降解强度不断增强,下游地区微生物降解强度不断降低。监测期内石油烃总量降低了394 kg,微生物降解为自然衰减过程中的主要作用,其贡献率为64%~93%,每个通量断面内微生物降解率为0.18~0.73 kg/d。由此可以证明,MNA可以有效地修复地下水中的石油污染。  相似文献   

2.
近来利用微生物原位修复受石油污染的含水层已被广泛关注,然而地下水中含有许多离子成分,这些无机离子对微生物降解有机污染物的影响机制还不清楚。本文采用批量实验研究了淄博齐鲁石化污染地下水中常见的7种无机离子(NO3-、PO4 3-、SO4 2-、Cl-、Ca2+、Mg2+、Fe3+)对微生物生长及生物降解苯的影响规律,利用高通量测序技术进一步探究了苯降解菌的种群特征。结果表明:7种离子都存在一个最适宜微生物生长的离子浓度,低于或超过该浓度苯的去除率明显降低,其中NO3-、SO42-、Fe3+最适宜浓度为0. 4mmol/L,PO4 3-、Cl-、Ca2+、Mg2+最适宜浓度分别为0. 2mmol/L、0. 1mol/L、2. 5mmol/L、2mmol/L;从微生物含量及其变化幅度来看,地下水环境中的NO3-离子对微生物的生长及苯的去除影响最显著,其他离子的影响则较小,但微生物对Cl-的耐受浓度较高。高通量测序结果显示驯化出的苯降解菌主要属于脱硫弧菌属(Desulfovibrio sp)、脱硫芽胞弯曲菌属(Desulfosporosinus sp)、不动杆菌属(Acinetobacter sp)和假单胞菌属(Pseudomonas sp)中的菌株。研究结果可为石油污染地下水的原位生物修复提供一定的科学依据。  相似文献   

3.
当地下水邂逅DNA:石油类有机污染及其生物降解   总被引:1,自引:0,他引:1  
地下水科学与工程研究发展到今日,已经成为一门涉及多个领域的综合性学科。地下水污染的控制和修复研究更需要跨学科的技术和知识支持,而生物修复作为一种高效低耗修复的技术成为环境领域的研究热点。微生物因其自身特性及其对污染的降解主导特征对确定有机物污染场地的永续修复具有重要意义。简要地综述了地下水有机污染及其原位修复、有机污染物和地下环境微生物的交互作用,进一步聚焦生物降解机制、生物修复和细菌研究。在此基础上以某石油污染场地地下水为例,进行了地下水中分离微生物菌株及其降解特征的实验研究。结果表明:放线菌降解效果最好,细菌和真菌次之;两两组合降解效果好于单菌,表明存在协同作用;不同菌株混合降解率较低,表明具有拮抗作用。通过动力学实验得出对TPH的降解符合一级反应动力学方程及其降解速度和降解半衰期。就微生物对有机组分降解而言,烷烃和总石油烃降解规律相似;难降解组分降解率低,后期因烷烃转化使其浓度升高;苯浓度变化不大。微生物活性实验表明:活菌总数和脱氢酶活性与降解率呈正相关变化。运用生理生化及分子生物学方法鉴定得出了具体的菌种。  相似文献   

4.
河北平原地下水NO3^-污染的原位微生态修复   总被引:2,自引:0,他引:2  
以地下水NO3^-污染为例,利用优选的菌群刺剂和少量营养碳源,在河北平原进行了NO3^-污染地下水的原位微生态修复试验.试验结果显示,地下水NO3^-含量在58~72.66mg/L时,经4.5~10天的修复试验,地下水中NO3^-含量降低至7.38~0.85mg/L,去除率达到86.5%~98.8%,去除效果较好,持续时间长.该方法为修复治理大面积地下水NO3^--N污染提供了可行的技术支撑.  相似文献   

5.
针对我国东北某石油烃污染场地地下水中的萘污染,筛选出了AcinetobacterPseudomonas菌属的高效萘降解菌群。该菌群对萘的耐受性较高,且具有良好的乳化性,能够自动调节细胞表面疏水性和自聚集性。不同pH值、萘初始浓度、温度和菌接种量对萘降解效率的影响研究表明:最适菌群生长的pH范围为7.08.0;萘降解效率和速率在1.005.00 mg/L范围内与其初始浓度成正比;在1030 ℃温度范围内均表现出较高的萘降解效率。在此基础上,利用Guass、GuassAmp、LogNomal、Poisson和Pulse数学模型对萘的降解过程进行拟合,其降解速率更符合GuassAmp模型。通过将降解动力学模型中的常数与影响因素相关联,推导出了拟合度较高的多因素影响下的萘降解动力学方程。  相似文献   

6.
生物曝气技术对石油类污染地下水的修复效果及去除机制   总被引:1,自引:0,他引:1  
针对东北某石油污染场地水文地质条件进行模拟,按照试验场地地层现状进行实验室缩放,研究微生物在含水层介质为砾砂、粗砂和中砂中的迁移速度以及含水层介质吸附的微生物量。选取苯和二甲苯作为目标石油污染物,研究生物曝气技术对被污染地下水的修复效果及其去除污染物的机制。实验结果表明:微生物在介质中的迁移速度从大到小为砾砂、粗砂、中砂;介质吸附微生物量的顺序从大到小为中砂、粗砂、砾砂;生物曝气4个月后,苯和二甲苯去除率分别为86.4%和81.7%,BS对中砂层中的苯和二甲苯去除效果好于砾砂层和粗砂层,苯的去除效果好于二甲苯。由挥发机制去除的污染物为46.24%,生物降解去除的污染物为36.98%,BS技术可以有效去除地下水中石油类污染物。  相似文献   

7.
反硝化条件下河岸渗滤过程中苯胺的降解   总被引:2,自引:0,他引:2  
吴耀国  曾睿  惠林  尹德忠 《地球科学》2006,31(2):273-278
通过河岸渗滤作用(riverbankfiltration, RBF) 诱发河水的补给, 增大地下水的允许开采量可以满足更多居民生活饮用水需求.受人类活动的影响, 河流等地表水体遭受苯胺污染, 可能通过RBF进入地下水, 以致饮用该地下水存在健康风险.为研究反硝化条件下, 苯胺在RBF中的转化, 采集渭河河床沉积物及沿岸地下水含水层的含水介质, 装置土柱, 进行土柱动态模拟实验.经过153 d的实验研究发现, 利用苯胺对RBF中土著反硝化微生物进行驯化, 大约经过37d菌种完全适应.具有该菌种的RBF系统, 对苯胺具有巨大降解能力, 在NO3——N约为23.0 mg/L的条件下, RBF系统可使40、80甚至400 mg/L浓度的苯胺100%降解, 矿化率分别达97.99%、91.39%与75.30%.反硝化条件下, 苯胺在RBF中的降解仅有少部分经过脱氨作用, 绝大部分与腐殖质以共价键形式形成耦合物, 该耦合物更易为微生物降解, 且降解过程中不产生对研究环境微生物有毒的中间产物, 可实现反硝化条件下RBF中苯胺的连续降解.   相似文献   

8.
黄土地区石油污染土壤生物修复的强化技术初探   总被引:1,自引:0,他引:1  
以石油为典型污染物,在本次试验前期工作筛选保藏的众多优势石油降解细菌中选择4株降解能力突出的菌,对该4菌株(分别编号为A、B、C、D)进行随机混合构建优势降解菌群。结果表明:菌群A-C-D降解石油能力最强,3 d内原油的降解率达到了39.67%,比单菌除油率提高了13.21%;对该菌群的最佳投加配比进行确定,菌群的最佳接种配比为A∶C∶D=1∶2∶0.5,3 d内菌群A-C-D在不同接种配比情况下降解率变化范围为27.8%~44.2%,最高值与最低值相差16.4%,因此菌群间各菌必须维持在一定的数量配比的情况下才能达到理想的降解效果。对影响生物修复效果的环境因素,如营养物质(C、N、P)、表面活性剂、通氧量、电子受体等进行综合考虑,通过正交试验确定菌群A-C-D的最佳修复条件为:营养物质配比C∶N∶P为75∶8∶3,表面活性剂为0.5%,通气条件为六层纱布,电子受体H2O2的加入量为1.5%。在最佳修复条件下,3 d内原油的降解率达到6146%,比自然条件修复下的除油率4.7%提高了56.76%,较只进行菌种强化时的最高除油率44.2%提高了约17%。  相似文献   

9.
在特殊地质体中开展地质微生物研究具有重要价值,但在深层含氟地下水环境中开展的相关研究尚有不足.为此,选取衡水市桃城区第三含水组并采集地下水水源井样品9个,进行了水化学分析和微生物16s RNA基因V4-V5区域测序.结果表明,研究区深层地下水偏碱性,TDS相对偏低,F-的平均含量为1.01 mg/L,水化学类型整体表现为Cl·SO4-Na与HCO3·Cl·SO4-Na型. F-含量对地下水微生物的丰度与多样性影响较为明显,高氟与低氟地下水特有菌属数量分别为39个和126个.地下水在门水平上以变形菌门(Proteobacteria)最为优势(47.67%~76.96%),属水平类群分散度较高,无明显优势菌属.整体上看,研究区地下水中菌群的组成对水化学过程响应灵敏且关系密切,NO3-、F-、DO与取样深度是影响微生物组成结构的主要因子,其中DO也是研究区地下水微生物丰度水平的重要保障.  相似文献   

10.
为探索石油污染土壤的高效修复方法,从实验室保存的优势菌中筛选得到4株降油效果最佳菌,采用摇床和恒温培养箱培养,对含油量为5%的石油污染土壤进行微生物菌剂强化处理和环境强化实验。微生物菌剂强化结果表明:4种菌和除油效果最好的A、C、D混合菌3d可将石油烃依次降解24%、19.81%、22.55%、26.46%、39.67%;并对该菌群的最佳投加配比进行确定,A、C、D菌群数量的最佳配比为Nn:Nc:No=1:2:0.5,3d内菌群A、C、D在最佳接种配比情况下可将石油烃降解44.2%。环境强化实验结果表明:A、C、D菌群在最佳修复条件营养物质C:N:P为75:8:3、表面活性剂为0.5%、通气条件为6层纱布、电子受体H2O2的加入量为1.5%下,3d内石油烃降解61.46%,比自然条件下修复的除油率4.7%提高了56.76%,较只进行菌种强化时最高除油率44.2%提高了约17%。  相似文献   

11.
The long-term oil exploitation in oil fields has led to pollution of surrounding soil, creating a serious ecological problem. In order to promote and improve the application of microbial remediation in oil contaminated soil, experiment is carried out in polluted area in Zhongyuan Oilfield. In the experiment, indigenous microorganisms and other physical and chemical methods are employed, ryegrass is grown, and environmental factors in soil are regulated to degrade the oil and treat the polluted soil. Results show that when the average oil content in the soil is about 523.08 mg/kg, 65 days’ remediation through plants and microorganisms could help bring the oil content down to 74.61 mg/kg, achieving a degradation rate of 85.74%; through salinity treatment, salt content in soil is reduced by 62.93-82.03% to 399-823 mg/kg from previous 2.22 g/kg. Through this experiment, the bioremediation method is improved and its effectiveness and feasibility are testified. The result has been applied in Zhongyuan Oilfield and has brought fair ecological and economic benefits, providing technical support to the treatment of contaminated soil of the same kind, and offering some insights to the treatment of soil contaminated by other organic pollutants.  相似文献   

12.
为了揭示季节性低温胁迫下陇东黄土高原油污土壤环境因子对耐冷混合菌场地生态修复的响应机制,利用自主筛选构建的耐冷石油降解混合菌在甘肃省庆阳市庆城县马岭镇长庆油田陇东油泥处理站开展了为期7个月的场地修复实验,采用常规方法测定了不同季节土壤理化特性、酶活性和微生物群落特性等环境指标。结果表明:(1)在季节性低温胁迫下(9-11月)M2组(耐冷混合菌处理组)月平均降解率明显增加(P<0.01),JZJ+M1组(金盏菊联合常温混合菌处理组)和M2组累计TPH降解率分别为15.37%±3.51%和28.64%±4.12%。(2)M2组土壤脱氢酶和多酚氧化酶在低温季节(LT)活性最高,且温度和处理存在显著交互作用(P<0.01)。在土壤营养元素方面,无论何种处理方式(JZJ+M1和M2)二者含量均为RT(常温季节)高于LT(P<0.05),同时明显高于CK组(P<0.05)。(3)M2组土壤微生物群落Shannon-Wiener指数和均匀度指数在LT高于RT(P<0.05)。(4)NMDS和Pearson相关性分析结果显示,M2组在低温季节具有较高TPH降解率主要与土壤多酚氧化酶、脱氢酶、单月TPH降解率(μ2)和Shannon-Wiener指数有关,且均呈极显著正相关关系。通过分析环境因子的季节响应,优化场地修复在低温环境的降解条件、加速低温期石油烃降解速率,以期为陇东地区低温耐冷混合菌场地生态修复技术的推广应用提供参考和基础数据资料。  相似文献   

13.
The objective of this paper was to investigate a petroleum-contaminated groundwater site in northeast China. Based on the monitoring and analysis of environmental characteristics of groundwater slightly contaminated with petroleum, microbes were added into the petroleum-contaminated groundwater via single-well and multiple-well models to enhance bioremediation. The effect of enhanced bioremediation was monitored and analyzed, and variations in the environmental characteristics of groundwater containing total petroleum hydrocarbons (TPH) were identified to provide a scientific basis for controlling and remediating petroleum-contaminated groundwater. Findings confirmed that this site was slightly contaminated and TPH levels exhibited a slight decreasing trend. After enhanced remediation, the microbial degradation effect was large, and the TPH concentration significantly reduced. In particular, near the wells treated by bioremediation, the amounts of electron acceptors, such as NO3 ?, Fe3+, and SO4 2?, markedly decreased. The product of the microbial degradation process, HCO3 ?, gradually increased in the treated wells. Activities of the enzyme catechol 1, 2-dioxygenase decreased, while those of catalase increased. Reductions in pH, from 7.4 to 6.1, were recorded, and the groundwater environment became further deoxidized.  相似文献   

14.
Experimental study of enhanced in-situ micro-ecological remediation of petroleum contaminated loess soil was carried out in Zhongyuan oil production areas, and the enhanced in-situ micro-ecological remediation technique includes optimistic in-situ microbial communities, physical chemistry methods, alfalfa planting and regulation of soil environmental elements. Experiments showed that the oil content in the contaminated soil with oil content about 2 898.25 mg/kg can be reduced about 98.61% after in-situ micro-ecological remediation for 99 days, which demonstrated the effectiveness of in-situ micro-ecological remediation methods for petroleum contaminated soil in central plains of China, and explored the practical and feasible application of these methods.  相似文献   

15.
监测自然衰减(monitoring natural attenuation,MNA)技术是目前普遍认可的去除地下水中挥发性有机污染物(volatile organic compounds,VOCs)的技术。但受其修复周期长、监测费用昂贵等因素的影响,实地开展MNA技术修复污染场地具有一定的局限性。基于此,本研究运用多相流数值模拟手段识别了某石油污染场地内典型VOCs污染物(苯、甲苯、萘)在地下水中的自然衰减过程并评估了其自然衰减能力。结果表明:采用TMVOC所建立的多相流数值模拟模型能较好地预测和识别VOCs在地下水中的衰减规律;在研究区中,苯、甲苯和萘由于理化性质差异,在地下水中的污染羽分布特征不同,其自然衰减过程受挥发、吸附和生物降解作用的影响程度也不同;挥发和生物降解作用对VOCs自然衰减的影响程度均为苯>甲苯>萘,而吸附作用对VOCs自然衰减的影响程度为萘>甲苯>苯;在污染源被阻断的前提下,苯、甲苯和萘分别在泄漏发生7.0、6.5和6.0年后通过自然衰减达到理想去除效果。本文研究成果可以为水文地质条件类似的VOCs污染场地MNA修复方案的制定和修复效果评估提供理论支撑。  相似文献   

16.
传统原位化学氧化地下水修复技术存在氧化剂迁移距离短和利用率低等问题。本研究在双井循环模式促进传质的基础上,通过注水井中的地下水电解原位提供O2和H2,配合乙二胺四乙酸(ethylenediamine tetraacetic acid,EDTA)络合溶解出含水层Fe(Ⅱ),活化O2产生羟基自由基(•OH),实现地下水三氯乙烯(TCE)的氧化降解。在填充了砂土和黏土互层的二维砂槽中,设置电流为0.2 A、流速为72 cm/d、初始TCE浓度为3 mg/L,经过9 d的连续通电处理后,TCE浓度降低到1 mg/L,降解率达到67%。通电前投加0.5 mmol/L EDTA,经过1 d水流循环后含水层中溶解态Fe(Ⅱ)浓度从02 mg/L增加到414 mg/L,黏土区域较高。通电过程中,循环井促进O2、Fe(Ⅱ)-EDTA和TCE的有效接触与反应,使TCE氧化降解。通电初期,黏土区域Fe(Ⅱ)氧化速率、TCE降解速率较周围慢,后期差异逐渐减小。未通电时加入醋酸钠可促进Fe(Ⅲ)还原,使含水层中铁循环利用。该修复过程通过循环井提升了氧化剂迁移距离,使用源于含水层的Fe(Ⅱ)-EDTA和稳定性较好的O2提高了氧化剂利用率,有望应用于有机污染地下水修复。  相似文献   

17.
Number 6 fuel oil is one of the most used energy sources for electricity generation. However, leaks can contaminate soil and also groundwater due to leaching. At old sites, the oil may have low toxicity but still contaminate groundwater with foul-tasting compounds even at low concentrations. The purpose of this study was to evaluate the feasibility of applying H2O2 to reduce the leaching potential of a fuel oil contaminated soil. A silt-loam soil was collected from a contaminated thermal-electric plant with a hydrocarbon concentration of 3.2% in soil producing 4.3 mg/l in leachate. Hydrogen peroxide was applied (0.1, 0.2, 0.3, 0.6, 1.2% dry weight basis), and petroleum hydrocarbons were measured in soil and leachate pre- and post-treatment (72 h). At first, the soil and leachate concentrations diminished linearly (24.4 and 27.3% in soil and leachate, respectively). This was followed by a phase in which the concentration in leachate diminished greatly (75.8%) although the concentration in soil was reduced only moderately (15.1%). Overall, hydrocarbons in leachates were reduced 82.4% even though concentrations in soil were only reduced 35.8%. Correlation analysis showed that at only 1.0% w/w H2O2 a concentration of petroleum hydrocarbons in leachate safe for human consumption (≤ 1 mg/l) could be obtained even with a final hydrocarbon concentration in soil > 2%. Thus, this study presents an alternative strategy for remediation of fuel oil contaminated soils in urban environments that protects water sources by focusing on contamination in leachates, without spending extra financial resources to reduce the hydrocarbon concentration in low-toxicity soil.  相似文献   

18.
《Applied Geochemistry》1993,8(6):551-567
Crude oil spilled from a pipeline break in a remote area of north-central Minnesota has contaminated a shallow glacial outwash aquifer. Part of the oil was sprayed over a large area to the west of the pipeline and part of it accumulated in an oil body that floats at the water table to the east of the point of discharge. Total dissolved organic carbon (TDOC) concentrations in shallow groundwater collected in the oil spray area reach 16 mg/l. This is nearly an order of magnitude higher than the TDOC concentrations of native groundwater (∼2–3mg/l). The additional TDOC derives from the partial degradation of petroleum residues deposited at the land surface and transported to the aquifer by vertical recharge. In the vicinity of the oil body, TDOC concentrations in groundwater are 48 mg/l, 58% of the TDOC being composed of non-volatile organic C. The majority of the volatile DOC (63%) is a mixture of low-molecular-weight saturated, aromatic and alicyclic hydrocarbons derived from the oil. Downgradient from the oil body along the direction of groundwater flow, concentrations of all measured constituents of the TDOC pool decrease. Concentrations begin to decline most rapidly, however, in the zone where dissolved O2 concentrations begin to increase, ∼50m downgradient from the leading edge of the oil. Within the anoxic zone near the oil body, removal rates of isometric monoaromatic hydrocarbons vary widely. This indicates that the removal processes are mediated mainly by microbiological activity. Molecular and spectroscopic characterization of the TDOC and its spatial and temporal variation provide evidence of the importance of biogeochemical processes in attenuating petroleum contaminants in this perturbed subsurface environment.  相似文献   

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