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Application of oxygen-releasing material to enhance in situ aerobic Bioremediation

机译:氧气释放材料在原位有氧生物化增强中的应用

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Contamination of groundwater by petroleum-hydrocarbons is a widespread environmental problem. Generally in plumes of petroleum-hydrocarbon contamination, the dissolved oxygen (DO) demand imposed by biodegradation of organic contaminants exceeds the DO available creating anaerobic conditions within the plume core and mid-plume areas. The objectives of this bench-scale study were to (1) develop oxygen-releasing materials for continuous oxygen supplement, (2) determine the optimal components of the studied oxygen release material, and (3) evaluate the oxygen release rate and lifetime of this material. Moreover, the potential of using a passive oxygen release material to clean up aquifers contaminated by petroleum hydrocarbons was also studied. Bench experiments were conducted to design and identify the components of the oxygen-releasing materials. The mixtures of the oxygen release material were prepared by blending gypsum, calcium peroxide (CaO_2), sand, and water together at a ratio of 1:0.5:0.14:0.75 by weight. Cement was used as a binder and regular medium filter sand was used to increase the permeability of the mixture. Calcium peroxide releases oxygen upon contact water (2CaO_2 + 2H_2O → O_2 + 2Ca(OH)_ 2). The designed material with a density of 1.1 g/cm~3 was made of 3.5-cm cube for the batch experiment. Results show that the oxygen release rate of the material is 0.025 mg/day/g. The oxygen release material is able to remain active in oxygen release for more than three months. With the application of this developed oxygen release material, the contaminated subsurface can remain an aerobic environment for subsequent aerobic bioremediation. For the future field application, the developed materials can be placed in remediation wells, trenches, horizontal wells, or barriers. Thus, the passive biobarrier system has advantages over conventional system including less maintenance, cost-effectiveness, no above-ground facilities, no groundwater pumping and reinjection, no air pollution problems, and groundwater remediation in situ. The proposed treatment system would be expected to provide a more cost-effective alternative to remediate petroleum-hydrocarbon contaminated aquifers. This technology can also be applied for other hazardous waste contaminated sites.
机译:由石油烃地下水的污染是一个普遍存在的环境问题。通常在石油类烃污染的羽流,由有机污染物生物降解施加的溶解氧(DO)需求超过可用的DO创建羽核心和中间羽流区域内的厌氧条件。这种实验室规模的研究的目的是:(1)开发用于连续氧气补充氧释放材料,(2)确定所研究的氧释放材料的最佳组分,和(3)评估的该氧释放速度和寿命材料。此外,使用无源氧释放材料,以清理由石油烃污染的含水层的电位也进行了研究。工作台进行实验设计和识别氧释放材料的组分。 0.5:0.14:氧释放材料的混合物通过混合石膏,过氧化钙(CaO_2),砂和水一起以1:1的比例制备0.75(重量)。水泥作为粘合剂和常规介质过滤砂被用于增加混合物的渗透性。接触时水过氧化钙释放氧(2CaO_2 + 2H_2O→O_2 + 2CA(OH)_ 2)。所设计的材料,1.1克的密度/厘米〜3由3.5厘米的立方体的间歇实验。结果表明,该材料的氧释放速率为0.025毫克/天/克。释氧材料能够在释放氧气来保持活跃超过三个月。有了这个发达的释氧材料的应用,被污染的地下可以保持后续好氧生物修复有氧环境。对于未来场应用中,开发材料可以放置在补救井,沟渠,水平井或障碍。因此,被动防生物系统具有优于常规系统的优点,包括较少的维护,成本效益,没有上述的地面设施,没有抽取地下水和再注入,没有空气污染的问题,以及地下水修复原位。所提出的处理系统将预计提供一种更具成本效益的替代来补救石油烃污染的含水层。该技术还可以应用于其他危险废物污染的场所。

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