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首页> 外文期刊>Journal of environmental monitoring: JEM >Field turbidity method for the determination of lead in acid extracts of dried paint
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Field turbidity method for the determination of lead in acid extracts of dried paint

机译:现场浊度法测定干漆酸浸液中铅

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摘要

Lead, which can be found in old paint, soil, and dust, has been clearly shown to have adverse health effects on the neurological systems of both children and adults. As part of an ongoing effort to reduce childhood lead poisoning, the US Environmental Protection Agency promulgated the Lead Renovation, Repair, and Painting Program (RRP) rule requiring that paint in target housing built prior to 1978 be tested for lead before any renovation, repair, or painting activities are initiated. This rule has led to a need for a rapid, relatively easy, and an inexpensive method for measuring lead in paint. This paper presents a new method for measuring lead extracted from paint that is based on turbidimetry. This method is applicable to paint that has been collected from a surface and extracted into 25% (v/v) of nitric acid. An aliquot of the filtered extract is mixed with an aliquot of solid potassium molybdate in 1 M ammonium acetate to form a turbid suspension of lead molybdate. The lead concentration is determined using a portable turbidity meter. This turbidimetric method has a response of approximately 0.9 NTU per g lead per mL extract, with a range of 1-1000 Nephelometric Turbidity Units (NTUs). Precision at a concentration corresponding to the EPA-mandated decision point of 1 mg of lead per cm~2 is <2%. This method is insensitive to the presence of other metals common to paint, including Ba~(2+), Ca~(2+), Mg~(2+), Fe~(3+), Co~(2+), Cu~(2+), and Cd ~(2+), at concentrations of 10 mg mL~(-1) or to Zn~(2+) at 50 mg mL~(-1). Analysis of 14 samples from six reference materials with lead concentrations near 1 mg cm~(-2) yielded a correlation to inductively coupled plasma-atomic emission spectroscopy (ICP-AES) analysis of 0.97, with an average bias of 2.8%. Twenty-four sets of either 6 or 10 paint samples each were collected from different locations in old houses, a hospital, tobacco factory, and power station. Half of each set was analyzed using rotor/stator-25% (v/v) nitric acid extraction with measurement using the new turbidimetric method, and the other half was analyzed using microwave extraction and measurement by ICP-AES. The average relative percent difference between the turbidimetric method and the ICP-AES method for the 24 sets measured as milligrams of lead per cm~2 is -0.63 ± 32.5%; the mean difference is -2.1 ± 7.0 mg lead per cm~2. Non-parametric and parametric statistical tests on these data showed no difference in the results for the two procedures. At the federal regulated level of 1 mg of lead per cm~2 paint, this turbidimetric method meets the performance requirements for EPA's National Lead Laboratory Accreditation Program (NLLAP) of accuracy within ±20% and has the potential to meet the performance specifications of EPA's RRP rule.
机译:铅已发现存在于旧油漆,土壤和灰尘中,对儿童和成人的神经系统都有不利的健康影响。为了减少儿童铅中毒的持续努力,美国环境保护局颁布了《铅翻新,维修和涂漆计划》(RRP)规则,要求在进行任何翻新,维修之前,对1978年以前建造的目标房屋中的油漆进行铅测试。 ,或启动绘画活动。该规则导致需要一种快速,相对容易且廉价的测量油漆中铅的方法。本文提出了一种基于比浊法测量油漆中铅含量的新方法。此方法适用于从表面收集并提取到25%(v / v)硝酸中的油漆。将等分的过滤提取物与等分的固体钼酸钾在1 M乙酸铵中混合,以形成钼酸铅的混浊悬浮液。铅浓度使用便携式浊度计确定。这种比浊法的响应约为每毫升铅提取物每g铅0.9 NTU,范围为1-1000浊度浊度单位(NTU)。在对应于EPA规定的决策点1 cm / cm 2的铅浓度下的精密度<2%。此方法对涂料中常见的其他金属(包括Ba〜(2 +),Ca〜(2 +),Mg〜(2 +),Fe〜(3 +),Co〜(2+),浓度为10 mg mL〜(-1)的Cu〜(2+)和Cd〜(2+)或浓度为50 mg mL〜(-1)的Zn〜(2+)。对六种标准物质中14种样品的铅浓度接近1 mg cm〜(-2)进行分析,得出的结果与电感耦合等离子体原子发射光谱法(ICP-AES)分析的相关值为0.97,平均偏差为2.8%。从旧房子,医院,烟草工厂和发电站的不同位置收集了二十四套(每套6个或10个)油漆样品。每组的一半使用转子/定子-25%(v / v)硝酸萃取进行分析,并使用新的比浊法进行测量,另一半使用微波萃取进行分析并通过ICP-AES进行测量。 24台仪器的浊度法和ICP-AES方法之间的平均相对百分差为-0.63±32.5%(铅的毫克数/ cm〜2);平均差异为-2.1±7.0 mg铅/ cm〜2。对这些数据的非参数和参数统计检验表明,两种方法的结果没有差异。在联邦法规规定的每厘米2油漆含铅量为1毫克的情况下,这种浊度法可以满足EPA国家铅实验室认可计划(NLLAP)的精度要求,精度在±20%以内,并且有可能满足EPA的性能要求。 RRP规则。

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