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Indoor Sorption of Surrogates for Sarin and Related Nerve Agents

机译:室内替代物对沙林和相关神经介质的吸附

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摘要

Sorption rate parameters were determined for three organophosphorus (OP) compounds [dimethyl methylphos-phonate (DMMP),diethyl ethylphosphonate (DEEP),and triethyl phosphate (TEP)j as surrogates for the G-type nerve agents sarin (GB),soman (GD),and tabun (GA).OP surrogates were injected and vaporized with additional volatile organic compounds into a 50 m~3 chamber finished with painted wallboard.Experiments were conducted at two furnishing levels:(i) chamber containing only hard surfaces including a desk,a bookcase,tables,and chairs and (ii) with the addition of plush materials including carpet with cushion,draperies,and upholstered furniture.Each furnishing level was studied with aged and new painted wallboard.Gas-phase concentrations were measured during sealed chamber adsorb and desorb phases and then fit to three mathematical variations of a previously proposed sorption model having a surface sink and allowing for an embedded sink.A four-parameter model allowing unequal transport rates between surface and embedded sinks provided excellent fits for all conditions.To evaluate the potential effect of sorption,this model was incorporated into an indoor air quality simulation model to predict indoor concentrations of a G-type agent and a nonsorbing agent for hypothetical outdoor releases with shelter-in-place (SIP) response.Sorption was simulated using a range of parameters obtained experimentally.Simulations considered outdoor Gaussian plumes of 1- and 5-h duration and infiltration rates of 0.1,0.3,and 0.9 h~(-1).Indoor toxic loads (TL) for a 10-h SIP were calculated as integralC~2 df for a G-type agent.For the 5-h plume,sheltering reduced TLs for the nonsorbing agent to approx10-65% of outdoor levels.Analogous TLs for a G-type agent were 2-31% or 0.3-12% of outdoor levels assuming slow or moderate sorption.The relative effect of sorption was more pronounced for the longer plume and higher infiltration rates.
机译:确定了三种有机磷(OP)化合物的吸附速率参数[二甲基甲基膦酸酯(DMMP),二乙基膦酸二乙酯(DEEP)和磷酸三乙酯(TEP)j作为G型神经毒剂沙林(GB),梭曼( GD替代品和塔邦(GA)。将OP替代物注入并与其他挥发性有机化合物一起蒸发到一个50 m〜3的涂漆墙板室中。在两个装饰水平下进行实验:(i)仅包含硬质表面的室桌子,书架,桌子和椅子;(ii)添加毛绒材料,包括带垫子的地毯,窗帘和带软垫的家具。对陈设和新涂的墙板的每种家具水平进行了研究。在密封期间测量了气相浓度室吸附和解吸相,然后适合先前提出的具有表面水槽并允许嵌入水槽的吸附模型的三个数学变化形式。四参数模型允许不相等的传输为了评估吸附的潜在影响,将该模型结合到室内空气质量模拟模型中,以预测假设的室外释放的室内G型剂和非吸附剂的浓度,以评估吸附的潜在影响。使用实验获得的一系列参数对吸附进行了模拟。模拟考虑了持续时间为1和5小时的户外高斯羽流以及渗透率为0.1、0.3和0.9 h〜(-1) )。计算10小时SIP的室内有毒负荷(TL),对于G型试剂为C〜2 df积分。对于5小时羽状流,非吸附剂的TL能够减少到室外水平的约10-65%假设吸附缓慢或中等,G型药剂的类似TL占室外水平的TL的2-31%或0.3-12%。更长的羽流和更高的渗透率对吸附的相对影响更为明显。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第9期|p.3203-3214|共12页
  • 作者单位

    Atmospheric Sciences and Indoor Environment Departments,Environmental Energy Technologies Division,Lawrence Berkeley National Laboratory,1 Cyclotron Road,Berkeley,California 94720;

    Atmospheric Sciences and Indoor Environment Departments,Environmental Energy Technologies Division,Lawrence Berkeley National Laboratory,1 Cyclotron Road,Berkeley,California 94720;

    Atmospheric Sciences and Indoor Environment Departments,Environmental Energy Technologies Division,Lawrence Berkeley National Laboratory,1 Cyclotron Road,Berkeley,California 94720;

    Atmospheric Sciences and Indoor Environment Departments,Environmental Energy Technologies Division,Lawrence Berkeley National Laboratory,1 Cyclotron Road,Berkeley,California 94720;

    Atmospheric Sciences and Indoor Environment Departments,Environmental Energy Technologies Division,Lawrence Berkeley National Laboratory,1 Cyclotron Road,Berkeley,California 94720;

    Atmospheric Sciences and Indoor Environment Departments,Environmental Energy Technologies Division,Lawrence Berkeley National Laboratory,1 Cyclotron Road,Berkeley,California 94720;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:07:50

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