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改进BCR法分析国家土壤标准物质中重金属化学形态 被引量:175

Utilization of modified BCR procedure for the chemical speciation of heavy metals in Chinese soil reference material
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摘要 采用欧盟改进BCR连续提取法分析了国家土壤标准物质(GSS-6、GSS-7、GSS-16)中重金属化学形态,测试方法为电感耦合等离子体原子发射光谱法及石墨炉原子吸收光谱法(ICP-AES和GFAAS)。提取的形态分别为:酸可交换态(第一步)、可还原态(第二步)及可氧化态(第三步),将3步提取态之和加上残渣态质量分数与国家标准土壤物质中重金属质量分数进行了比较,回收率在93.9%~104%之间。方法准确度用欧盟标准物质BCR-701进行验证,测定结果与标准值吻合良好。 A modified BCR procedure for the chemical speciation of heavy metals, proposed by the Commission of the European has been applied to the Chinese reference material of soils (GSS-6, Gss-7 and GSS-16). Analyses were carried out by inductively coupled plasma atomic emission or graphite furnace atomic absorption spectrometry (ICP-AES or GFAAS). The fractions extracted were: acid exchangeable (extraction step 1), reducible (extraction step 2), oxidizable (extraction step 3). The sum of the element contents in the three fractions plus the residue was compared to the total content of t heavy metals in the Chinese reference material of soils. The recovery is in the range from 93.9% to 104%. The accuracy was checked by using BCR-701 from the Commission of the European, and the determined values conformed well to the standard values.
出处 《生态环境学报》 CSCD 北大核心 2012年第11期1881-1884,共4页 Ecology and Environmental Sciences
基金 国家自然科学基金项目(40801086) 广东省科学院分析测试基金项目(SF2008-54)
关键词 化学形态 重金属 连续提取法 土壤 标准物质 chemical speciation heavy metals sequential extraction soils reference material
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  • 1PEIJNENBURG W J, JAGER T. Monitoring approaches to assess bioaccessibility and bioavailability of metals: matrix issues [J]. Ecotoxicolo:v and Environment Safety, 2003, 56 (1): 63-77.
  • 2李志博,骆永明,宋静,赵其国,刘志全.土壤环境质量指导值与标准研究 Ⅱ·污染土壤的健康风险评估[J].土壤学报,2006,43(1):142-151. 被引量:80
  • 3DAVIDSON C M, THOMAS R P, MCVEY S E, et al. Evaluation of a sequential extraction procedure for the speciation of heavy metals in sediments[J]. AnalyticaChimicaActa, 1994,291:277-286.
  • 4QUEVAUVILLER P. Operationally defined extraction procedures for soil and sediment analysis I. Standardization [J]. Trends in Analytical Chemistry, 1998, 17(5): 289-298.
  • 5VIOLANTE A, COZZOLINO V, PERELOMOV L, et al. Mobility and bioavailability of heavy metals and metalloids in soil environments[J]. Journal of Soil Science and Plant Nutrition, 2010, 10: 268-292.
  • 6KERSTEN M, FORSTNER U. Chemical Speciation in theEnvironment [M]. London: Chapman & Hall, 1995:245-317.
  • 7TESSIER A, CAMPBELL P G C, BISSON M. Sequential extraction procedure for the speciation of particulate trace metals [J]. Analytical Chemistry, 1979, 51: 844-851.
  • 8RAURET G, RUBIO R, L6PEZ-S,h.NCHEZ J F. Optimization of Tessier procedure for metal solid speciation in fiver sediments[J]. Trends in Analytical Chemistry, 1989, 36: 69-83.
  • 9RAURET G: LOPEZ-SANCHEZ J F, SAHUQUILLO A, et al. Improvement of the BCR three-step sequential extraction procedure prior to the certification of new sediment and soil reference materials[J]. Journal of Environmental Monitoring, 1999, 1: 57-61.
  • 10SAHUQUILLO A, LOPEZ-S,MNCHEZ J F, RUBIO R, et al. Use of a certified reference material for extractable trace metals to assess sources of uncertainty in the BCR three-stage sequential extraction procedure[J]. AnalyticaChimieaActa, 1999,382(3): 317-327.

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