首页> 外文期刊>Journal of Hazardous Materials >Passive in situ biobarrier for treatment of comingled nitramine explosives and perchlorate in groundwater on an active range
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Passive in situ biobarrier for treatment of comingled nitramine explosives and perchlorate in groundwater on an active range

机译:被动原位生物屏障,用于在有效范围内处理地下水中的混合硝胺炸药和高氯酸盐

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Hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX), octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine (HMX), and perchlorate (ClO4-) are common, and often co-mingled, contaminants at military ranges worldwide. This project investigated the feasibility of using a passive emulsified oil biobarrier plus a slow release pH buffering reagent to remediate RDX, HMX, and ClO4- in a low pH aquifer at an active range. A 33m biobarrier was emplaced perpendicular to the contaminant plumes, and dissolved explosives, perchlorate, and other relevant parameters were monitored. The pH increased and the DO and ORP decreased after emulsified oil injection, leading to 90% reductions in perchlorate, RDX, and HMX compared to upgradient groundwater. Some nitroso breakdown products were observed immediately downstream of the barrier, but generally decreased to below detection limits farther downgradient. First-order rate constants of approximately 0.1/d were obtained for all three contaminants. Dissolved metals (including As) also increased in the wells immediately adjacent to the barrier, but attenuated as the plume re-aerated in downgradient areas. Biobarrier installation and sampling were performed during scheduled range downtime and had no impacts to ongoing range activities. The field trial suggests that an emulsified oil biobarrier with pH buffering can be a viable alternative to remove explosives and perchlorate from shallow groundwater on active ranges.
机译:六氢-1,3,5-三硝基-1,3,5-三嗪(RDX),八氢-1,3,5,7-四硝基-1,3,5,7-四唑嗪(HMX)和高氯酸盐(ClO4 -)在全世界的军事范围内都是常见的污染物,通常是混合在一起的污染物。该项目研究了在低pH含水层中在有效范围内使用被动乳化油生物屏障加缓释pH缓冲剂修复RDX,HMX和ClO4-的可行性。垂直于污染物羽流放置33m的生物屏障,并监测溶解的炸药,高氯酸盐和其他相关参数。乳化注油后pH升高,DO和ORP降低,与升级地下水相比,导致高氯酸盐,RDX和HMX降低> 90%。在屏障的下游立即观察到一些亚硝基分解产物,但通常下降到低于检测极限的程度进一步下降。对于所有三种污染物,获得的一级速率常数约为0.1 / d。紧邻屏障的孔中的溶解金属(包括砷)也增加,但随着羽流在降梯度区域重新充气而减弱。生物屏障的安装和采样是在计划的停机时间内进行的,对正在进行的停机活动没有影响。现场试验表明,具有pH缓冲作用的乳化石油生物屏障可以是从有效范围内的浅层地下水中去除炸药和高氯酸盐的一种可行选择。

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