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

机译:释氧材料在原位需氧生物修复中的应用

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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 (CaO2),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 (2CaO2 + 2H2O → O2 + 2Ca(OH) 2).The designed material with a density of 1.1 g/cm3 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:石油 - 烃的地下水污染是一种广泛的环境问题。在石油 - 烃污染的羽毛中,通过生物降解施加的有机污染物施加的溶解氧(DO)的需求超过了羽毛芯和中间羽毛内的厌氧条件的可用性。地区的目的是(1)开发连续氧气补充剂的氧释放材料,(2)确定所研究的氧释放材料的最佳组分,(3)评价氧释放速率和寿命在这种材料中,还研究了使用被动氧释放材料来清理由石油烃污染的含水层的潜力。进行设计,以设计并鉴定氧气释放材料的组分。氧释放的混合物通过以1:0.5:0.1的比例混合石膏,过氧化钙(CaO 2),沙子和水来制备材料制备。 4:0.75重量以粘合剂用作粘合剂,使用常规介质过滤砂来增加混合物的渗透性。过氧化钙在接触水(2caO 2 + 2h 2 O→O 2 + 2ca(OH)2)时释放氧气。设计的密度为1.1g / cm3的材料由3.5cm立方体制成,用于批量实验。结果表明,材料的氧释放速率为0.025mg /天/ g。氧释放材料能够保持活性氧气释放超过三个月。随着这种开发的氧气释放材料的应用,受污染的地下仍然是一种有氧环境,可用于随后的有氧生物修复。对于未来的现场应用,开发材料可以放在修复井,沟渠,水平井中或者障碍,无源生物载波系统具有优于传统系统的优势,包括维护,成本效益,没有地上设施,没有地下水泵送和再注,没有空气污染问题和遗传物霍特沃特原位的修复。预期拟议的治疗系统将提供更具成本效益的替代品来修复石油 - 碳氢化合物污染的含水层。这项技术也可用于其他有害废物污染的地方。

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