首页> 外文会议>International in situ and on-site bioremediation symposium >DESIGN, CONSTRUCTION AND OPERATION OF A SULFATE BIOBARRIER TO TREAT CHLORINATED AND NON-CHLORINATED VOCs
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DESIGN, CONSTRUCTION AND OPERATION OF A SULFATE BIOBARRIER TO TREAT CHLORINATED AND NON-CHLORINATED VOCs

机译:用于处理氯化和非氯化VOC的硫酸盐生物沼气池的设计,建造和运行

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A large field-scale bioremediation pilot test (BPT) was conducted to demonstrate the ability of an in situ sulfate delivery system to treat groundwater impacted by a mixed plume of chlorinated and non-chlorinated solvents at a former industrial landfill site in New Hampshire. The primary chemicals of concern (CoCs) included cis- 1,2-dichloroethene (cDCE), vinyl chloride (VC), 1,2-dichloroethane (1,2-DCA), 1,1- dichloroethane (1,1-DCA), methylene chloride (MC), benzene, toluene, acetone, methyl ethyl ketone (MEK) and methyl isobutyl ketone (MIBK). Total VOC concentrations in the groundwater entering the system consistently exceeded 10 mg/L during the pilot test. Given the high degree of geologic heterogeneity at the Site, a gravel delivery trench (GDT) was installed in the subsurface, to a depth of 22 to 24.7 m (top of bedrock), to deliver and uniformly mix the added sulfate with the CoC-impacted groundwater. The GDT was installed using innovative construction techniques to minimize costs and excavation volumes. The sulfate delivery system was successfully installed and operated for a period of 13 months. At the end of the pilot test, the average declines of the CoCs due to biodegradation in the short-residence-time pilot test monitoring area (PTA) (I.e., concentrations corrected using bromide data to account for concentration decreases related to dilution) were as follows: cDCE, 68%; VC, 39%; 1,2-DCA, 21%; 1,1-DCA, 23%; MC, 75%; toluene 9%; benzene, 36%; acetone, 44%; MEK, 49%; and MIBK, 66%. Half-lives were calculated using these changes in concentration and breakthrough data from bromide tracer testing. Average half-lives (in days) for the CoCs were as follows: cDCE, 3; VC, 5; 1,2-DCA, 20; 1,1-DCA, 18; MC, 2; toluene, 36; benzene, 9; acetone, 4; MEK, 5; and MIBK, 4. Concentrations of CoCs at the compliance boundary were calculated using average half-lives and potential combinations of influent concentrations and groundwater velocity. Results of these calculations indicate that biodegradation alone is sufficient to achieve compliance with Ambient Groundwater Quality Standards (AGQS) at the downgradient compliance boundary for all conditions and CoCs except for VC and toluene under the condition of the maximum historic (5-year) influent concentration in conjunction with the maximum groundwater velocity. No significant operational issues (e.g., biofouling, precipitation or system downtime) occurred over 13 months of sulfate addition, and system performance exceeded the initial design expectations. The results of the BPT demonstrate that an in situ bioremediation strategy employing sulfate addition can be successfully applied to treat a mixed contaminant plume in heterogeneous hydrogeologic conditions.
机译:进行了大规模的现场生物修复中试(BPT),以证明原位硫酸盐输送系统具有处理新罕布什尔州以前的工业垃圾填埋场受氯化和非氯化溶剂混合羽流影响的地下水的能力。所关注的主要化学品(CoCs)包括顺式1,2-二氯乙烯(cDCE),氯乙烯(VC),1,2-二氯乙烷(1,2-DCA),1,1-二氯乙烷(1,1-DCA ),二氯甲烷(MC),苯,甲苯,丙酮,甲乙酮(MEK)和甲基异丁基酮(MIBK)。在试点测试期间,进入系统的地下水中总VOC浓度始终超过10 mg / L。鉴于该站点的高度地质异质性,在地下深处安装了砾石输送沟(GDT),深度为22至24.7 m(基岩顶部),以将添加的硫酸盐与CoC-影响地下水。 GDT使用创新的施工技术进行安装,以最大程度地降低成本和挖掘量。硫酸盐输送系统已成功安装并运行了13个月。在试点试验结束时,由于短时试点试验监测区域(PTA)中生物降解而导致的CoC的平均下降幅度(即,使用溴化物数据校正的浓度以解决与稀释相关的浓度下降)如下:cDCE,68%;风投,39%; 1,2-DCA,21%; 1,1-DCA,23%; MC,75%;甲苯9%;苯36%;丙酮44%; MEK,49%;和MIBK,占66%。使用这些浓度变化和来自溴化物示踪剂测试的突破数据来计算半衰期。 CoC的平均半衰期(天)如下:cDCE,3; VC,5; 1,2-DCA,20; 1,1-DCA,18; MC,2;甲苯36;苯9;丙酮; 4; MEK,5;和MIBK,4。使用平均半衰期以及进水浓度和地下水流速的潜在组合,计算了顺应性边界处的CoC浓度。这些计算结果表明,仅在最大历史(5年)进水浓度条件下,对于所有条件和CoC,仅在VC和甲苯之外的所有条件和CoC,仅在生物降解方面,就足以满足环境地下水质量标准(AGQS)的要求。结合最大地下水流速。在添加硫酸盐的13个月内没有发生重大操作问题(例如,生物污染,沉淀或系统停机),并且系统性能超出了最初的设计预期。 BPT的结果表明,采用硫酸盐添加的原位生物修复策略可以成功应用于异质水文地质条件下的混合污染物羽流。

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