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Erschienen in: Environmental Earth Sciences 2/2013

01.01.2013 | Original Article

Chemical availability of arsenic and heavy metals in sediments from abandoned cinnabar mine tailings

verfasst von: Raquel Larios, Rodolfo Fernández-Martínez, Verónica Silva, Isabel Rucandio

Erschienen in: Environmental Earth Sciences | Ausgabe 2/2013

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Abstract

The understanding of the solid-phase speciation of arsenic in soils and sediments is important in the evaluations of its potential mobility and availability in the environment. The spoil heaps of abandoned mercury mines contain waste materials with high arsenic and heavy metals concentrations. The weathering of these tailings can cause their mobilization to the surroundings. In this work, the mobility and availability of arsenic and some heavy metals were evaluated in sediments from two heavily polluted mercury mining districts in Asturias (NW Spain). For this purpose, a slightly modified version of the Bureau Community of Reference sequential extraction scheme was applied to sediments. The total contents in the operationally defined fractions were analysed by inductively coupled plasma-atomic emission spectrometry. Extremely high total arsenic concentrations were found in all sediments ranging from 4,000 to 24,800 mg kg−1. High easily mobilizable arsenic contents were found in the first mining area, related to the solubilization of Ca-bearing phases, supported by extracts analyses, X-ray diffraction results and the positive correlation found among the As and Ca fractionations. Ni and Zn were the most mobile among heavy metals, being Cr the least mobile, suggesting an anthropogenic origin due to the metallurgical processes, transport or dispersion generated from neighbour spoil heaps. In the second mining area, the bulk of As was concentrated in the residual phase, as well as Cr, Cu, Fe, Pb, Ti, indicating a mineralogical origin and the low availability of these elements. The strong correlations established between As and Fe and Ti distributions support the hypothesis that As is mainly associated to structural mineral phases in these sediments.

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Literatur
Zurück zum Zitat Appelo CAJ, Van der Weiden MJJ, Tournassat C, Charlet L (2002) Surface complexation of ferrous iron and carbonate on ferrihydrite, and the mobilisation of arsenic. Environ Sci Technol 36:3096–3103CrossRef Appelo CAJ, Van der Weiden MJJ, Tournassat C, Charlet L (2002) Surface complexation of ferrous iron and carbonate on ferrihydrite, and the mobilisation of arsenic. Environ Sci Technol 36:3096–3103CrossRef
Zurück zum Zitat Baig JA, Kazi TG, Arain MB, Shah AQ, Sarfraz RA, Afridi HI, Kandhro GA, Jamali MK, Khan S (2009) Arsenic fractionation in sediments of different origins using BCR sequential and single extraction methods. J Hazard Mater 167(1–3):745–751CrossRef Baig JA, Kazi TG, Arain MB, Shah AQ, Sarfraz RA, Afridi HI, Kandhro GA, Jamali MK, Khan S (2009) Arsenic fractionation in sediments of different origins using BCR sequential and single extraction methods. J Hazard Mater 167(1–3):745–751CrossRef
Zurück zum Zitat Belazi AU, Davidson CM, Keating GE, Littlejohn D, McCartney M (1995) Determination and speciation of heavy metals in sediments from the Cumbrian coast, NW England, UK. J Anal Atomic Spectrom 10(3):233–240CrossRef Belazi AU, Davidson CM, Keating GE, Littlejohn D, McCartney M (1995) Determination and speciation of heavy metals in sediments from the Cumbrian coast, NW England, UK. J Anal Atomic Spectrom 10(3):233–240CrossRef
Zurück zum Zitat Calderon V, Ryan A, Shrader D (2007) Analysis of environmental samples by ICP-OES following US EPA guidelines. Atom Spectrosc March, 17–18 Calderon V, Ryan A, Shrader D (2007) Analysis of environmental samples by ICP-OES following US EPA guidelines. Atom Spectrosc March, 17–18
Zurück zum Zitat Da Costa GM, Ribeiro-Herzog L (2011) Association between phosphorus and iron oxides in manganese ores. Am Mineral 96:68–73CrossRef Da Costa GM, Ribeiro-Herzog L (2011) Association between phosphorus and iron oxides in manganese ores. Am Mineral 96:68–73CrossRef
Zurück zum Zitat Davidson CM, Duncan AL, Littlejohn D, Ure AM, Garden LM (1998) A critical evaluation of the three-stage BCR sequential extraction procedure to assess the potential mobility and toxicity of heavy metals in industrially-contaminated land. Anal Chim Acta 363(1):45–55CrossRef Davidson CM, Duncan AL, Littlejohn D, Ure AM, Garden LM (1998) A critical evaluation of the three-stage BCR sequential extraction procedure to assess the potential mobility and toxicity of heavy metals in industrially-contaminated land. Anal Chim Acta 363(1):45–55CrossRef
Zurück zum Zitat Davidson CM, Ferreira PCS, Ure AM (1999) Some sources of variability in application of the three-stage sequential extraction procedure recommended by BCR to industrially-contaminated soil. Fresenius J Anal Chem 363(5–6):446–451CrossRef Davidson CM, Ferreira PCS, Ure AM (1999) Some sources of variability in application of the three-stage sequential extraction procedure recommended by BCR to industrially-contaminated soil. Fresenius J Anal Chem 363(5–6):446–451CrossRef
Zurück zum Zitat Eggleton J, Thomas KV (2004) A review of factors affecting the release and bioavailability of contaminants during sediment disturbance events. Environ Int 30(7):973–980CrossRef Eggleton J, Thomas KV (2004) A review of factors affecting the release and bioavailability of contaminants during sediment disturbance events. Environ Int 30(7):973–980CrossRef
Zurück zum Zitat Fernández E, Jiménez R, Lallena AM, Aguilar J (2004) Evaluation of the BCR sequential extraction procedure applied for two unpolluted Spanish soils. Environ Pollut 131(3):355–364CrossRef Fernández E, Jiménez R, Lallena AM, Aguilar J (2004) Evaluation of the BCR sequential extraction procedure applied for two unpolluted Spanish soils. Environ Pollut 131(3):355–364CrossRef
Zurück zum Zitat Fytianos K, Bovolenta S, Muntau H (1995) Assessment of metal mobility from sediment of lake Vegoritis. J Environ Sci Health A 30(6):1169–1190CrossRef Fytianos K, Bovolenta S, Muntau H (1995) Assessment of metal mobility from sediment of lake Vegoritis. J Environ Sci Health A 30(6):1169–1190CrossRef
Zurück zum Zitat Gao XL, Chen SY, Long AM (2008) Composition and sources of organic matter and its solvent extractable components in surface sediments of a bay under serious anthropogenic influences: daya Bay, China. Mar Pollut Bull 56(6):1066–1075CrossRef Gao XL, Chen SY, Long AM (2008) Composition and sources of organic matter and its solvent extractable components in surface sediments of a bay under serious anthropogenic influences: daya Bay, China. Mar Pollut Bull 56(6):1066–1075CrossRef
Zurück zum Zitat García-Sánchez A, Alonso-Rojo P, Santos-Francés F (2010) Distribution and mobility of arsenic in soils of a mining area (Western Spain). Sci Total Environ 408(19):4194–4201CrossRef García-Sánchez A, Alonso-Rojo P, Santos-Francés F (2010) Distribution and mobility of arsenic in soils of a mining area (Western Spain). Sci Total Environ 408(19):4194–4201CrossRef
Zurück zum Zitat Gleyzes C, Tellier S, Astruc M (2002) Fractionation studies of trace elements in contaminated soils and sediments: a review of sequential extraction procedures. Trends Anal Chem 21(6–7):451–467CrossRef Gleyzes C, Tellier S, Astruc M (2002) Fractionation studies of trace elements in contaminated soils and sediments: a review of sequential extraction procedures. Trends Anal Chem 21(6–7):451–467CrossRef
Zurück zum Zitat Glosinska G, Sobczynski T, Boszke L, Bierla K, Siepak J (2005) Fractionation of some heavy metals in bottom sediments from the middle Odra River (Germany/Poland). Polish J Environ Stud 14(3):305–317 Glosinska G, Sobczynski T, Boszke L, Bierla K, Siepak J (2005) Fractionation of some heavy metals in bottom sediments from the middle Odra River (Germany/Poland). Polish J Environ Stud 14(3):305–317
Zurück zum Zitat Gutiérrez-Claverol M, Luque-Cabal C (1994) Recursos del subsuelo de Asturias. Servicio de Publicaciones, Univ Oviedo, p 374 Gutiérrez-Claverol M, Luque-Cabal C (1994) Recursos del subsuelo de Asturias. Servicio de Publicaciones, Univ Oviedo, p 374
Zurück zum Zitat Harvey CF, Swartz CH, Badruzzaman ABM, Keon-Blute N, Yu W, Ali MA, Jay J, Beckie R, Niedan V, Brabander D, Oates PM, Ashfaque KN, Islam S, Hemond HF, Ahmed MF (2002) Arsenic mobility and groundwater extraction in Bangladesh. Science 298:1602–1606CrossRef Harvey CF, Swartz CH, Badruzzaman ABM, Keon-Blute N, Yu W, Ali MA, Jay J, Beckie R, Niedan V, Brabander D, Oates PM, Ashfaque KN, Islam S, Hemond HF, Ahmed MF (2002) Arsenic mobility and groundwater extraction in Bangladesh. Science 298:1602–1606CrossRef
Zurück zum Zitat Herrera V, De Gregori I, Pinochet H (2009a) Assessment of trace elements and mobility of arsenic and manganese in Lagoon sediments of the Huasco and Coposa salt flats, Chilean altiplano. J Chilean Chem Soc 54(4):454–459 Herrera V, De Gregori I, Pinochet H (2009a) Assessment of trace elements and mobility of arsenic and manganese in Lagoon sediments of the Huasco and Coposa salt flats, Chilean altiplano. J Chilean Chem Soc 54(4):454–459
Zurück zum Zitat Herrera V, de Gregori I, Pinochet H (2009b) Assessment of trace elements and mobility of arsenic and manganese in lagoon sediments of the salars of Huasco and Coposa, Chilean Altiplano. J Chilean Chem Soc 54(3):282–288 Herrera V, de Gregori I, Pinochet H (2009b) Assessment of trace elements and mobility of arsenic and manganese in lagoon sediments of the salars of Huasco and Coposa, Chilean Altiplano. J Chilean Chem Soc 54(3):282–288
Zurück zum Zitat Hlavay J, Prohaska T, Weisz M, Wenzel WW, Stingeder GJ (2004) Determination of trace elements bound to soils and sediment fractions—(IUPAC technical report). Pure Appl Chem 76(2):415–442CrossRef Hlavay J, Prohaska T, Weisz M, Wenzel WW, Stingeder GJ (2004) Determination of trace elements bound to soils and sediment fractions—(IUPAC technical report). Pure Appl Chem 76(2):415–442CrossRef
Zurück zum Zitat Ho MD, Evans GJ (1997) Operational speciation of cadmium, copper, lead and zinc in the NIST Standard Reference Materials 2710 and 2711 (Montana Soil) by the BCR sequential extraction procedure and flame atomic absorption spectrometry. Anal Commun 34(11):363–364CrossRef Ho MD, Evans GJ (1997) Operational speciation of cadmium, copper, lead and zinc in the NIST Standard Reference Materials 2710 and 2711 (Montana Soil) by the BCR sequential extraction procedure and flame atomic absorption spectrometry. Anal Commun 34(11):363–364CrossRef
Zurück zum Zitat Hoang TH, Bang S, Kim KW, Nguyen MH, Dang DM (2010) Arsenic in groundwater and sediment in the Mekong River delta, Vietnam. Environ Pollut 158(8):2648–2658CrossRef Hoang TH, Bang S, Kim KW, Nguyen MH, Dang DM (2010) Arsenic in groundwater and sediment in the Mekong River delta, Vietnam. Environ Pollut 158(8):2648–2658CrossRef
Zurück zum Zitat Klavins M, Briede A, Rodinov V, Kokorite I, Parele E, Klavina I (2000) Heavy metals in rivers of Latvia. Sci Total Environ 262(1–2):175–184CrossRef Klavins M, Briede A, Rodinov V, Kokorite I, Parele E, Klavina I (2000) Heavy metals in rivers of Latvia. Sci Total Environ 262(1–2):175–184CrossRef
Zurück zum Zitat Larios R, Fernández-Martínez R, LeHecho I, Rucandio I (2012a) A methodological approach to evaluate arsenic speciation and bioaccumulation in different plant species from two highly polluted mining areas. Sci Total Environ 414:600–607CrossRef Larios R, Fernández-Martínez R, LeHecho I, Rucandio I (2012a) A methodological approach to evaluate arsenic speciation and bioaccumulation in different plant species from two highly polluted mining areas. Sci Total Environ 414:600–607CrossRef
Zurück zum Zitat Larios R, Fernández-Martínez R, Silva V, Loredo J, Rucandio I (2012b) Arsenic contamination and speciation in surrounding waters of three old cinnabar mines. J Environ Monit 14:531–542CrossRef Larios R, Fernández-Martínez R, Silva V, Loredo J, Rucandio I (2012b) Arsenic contamination and speciation in surrounding waters of three old cinnabar mines. J Environ Monit 14:531–542CrossRef
Zurück zum Zitat Licheng Z, Guijiu Z (1996) The species and geochemical characteristics of heavy metals in the sediments of Kangjiaxi River in the Shuikoushan Mine Area, China. Appl Geochem 11(1–2):217–222CrossRef Licheng Z, Guijiu Z (1996) The species and geochemical characteristics of heavy metals in the sediments of Kangjiaxi River in the Shuikoushan Mine Area, China. Appl Geochem 11(1–2):217–222CrossRef
Zurück zum Zitat Loredo J, Luque C, Iglesias JG (1988) Conditions of formation of mercury deposits from the Cantabrian Zone (Spain). Bull Minéral 111:393–400 Loredo J, Luque C, Iglesias JG (1988) Conditions of formation of mercury deposits from the Cantabrian Zone (Spain). Bull Minéral 111:393–400
Zurück zum Zitat Loredo J, Ordóñez A, Baldo C, García-Iglesias J (2003a) Arsenic mobilization from waste piles of the El Terronal mine, Asturias, Spain. Geochem: Explor Environ, Anal 3(3):229–237CrossRef Loredo J, Ordóñez A, Baldo C, García-Iglesias J (2003a) Arsenic mobilization from waste piles of the El Terronal mine, Asturias, Spain. Geochem: Explor Environ, Anal 3(3):229–237CrossRef
Zurück zum Zitat Loredo J, Pereira A, Ordóñez A (2003b) Untreated abandoned mercury mining works in a scenic area of Asturias (Spain). Environ Int 29(4):481–491CrossRef Loredo J, Pereira A, Ordóñez A (2003b) Untreated abandoned mercury mining works in a scenic area of Asturias (Spain). Environ Int 29(4):481–491CrossRef
Zurück zum Zitat Loredo J, Álvarez R, Ordóñez A (2005) Release of toxic metals and metalloids from Los Rueldos mercury mine (Asturias, Spain). Sci Total Environ 340(1–3):247–260CrossRef Loredo J, Álvarez R, Ordóñez A (2005) Release of toxic metals and metalloids from Los Rueldos mercury mine (Asturias, Spain). Sci Total Environ 340(1–3):247–260CrossRef
Zurück zum Zitat Loredo J, Ordóñez A, Álvarez R (2006) Environmental impact of toxic metals and metalloids from the Muñón Cimero mercury-mining area (Asturias, Spain). J Hazard Mater 136(3):455–467CrossRef Loredo J, Ordóñez A, Álvarez R (2006) Environmental impact of toxic metals and metalloids from the Muñón Cimero mercury-mining area (Asturias, Spain). J Hazard Mater 136(3):455–467CrossRef
Zurück zum Zitat Loredo J, Petit-Domínguez MD, Ordoñez A, Galán MP, Fernández-Martínez R, Alvarez R, Rucandio MI (2010) Surface water monitoring in the mercury mining district of Asturias (Spain). J Hazard Mater 176(1–3):323–332CrossRef Loredo J, Petit-Domínguez MD, Ordoñez A, Galán MP, Fernández-Martínez R, Alvarez R, Rucandio MI (2010) Surface water monitoring in the mercury mining district of Asturias (Spain). J Hazard Mater 176(1–3):323–332CrossRef
Zurück zum Zitat Luque Cabal C, Gutiérrez Claverol M (2006) La minería del mercurio en Asturias. Rasgos históricos. Eujoa, PhD Thesis. Oviedo (Spain), p 554 Luque Cabal C, Gutiérrez Claverol M (2006) La minería del mercurio en Asturias. Rasgos históricos. Eujoa, PhD Thesis. Oviedo (Spain), p 554
Zurück zum Zitat Martin T, Brockhoff C, Creed J, Group EMW (1994) Method 200.7: determination of metals and trace elements in water and wastes by inductively coupled plasma-atomic emission spectrometry. Revision 4.4 edn. Martin T, Brockhoff C, Creed J, Group EMW (1994) Method 200.7: determination of metals and trace elements in water and wastes by inductively coupled plasma-atomic emission spectrometry. Revision 4.4 edn.
Zurück zum Zitat Mester Z, Cremisini C, Ghiara E, Morabito R (1998) Comparison of two sequential extraction procedures for metal fractionation in sediment samples. Anal Chim Acta 359(1–2):133–142CrossRef Mester Z, Cremisini C, Ghiara E, Morabito R (1998) Comparison of two sequential extraction procedures for metal fractionation in sediment samples. Anal Chim Acta 359(1–2):133–142CrossRef
Zurück zum Zitat Morillo J, Usero J, Gracia I (2002) Partitioning of metals in sediments from the Odiel River (Spain). Environ Int 28(4):263–271CrossRef Morillo J, Usero J, Gracia I (2002) Partitioning of metals in sediments from the Odiel River (Spain). Environ Int 28(4):263–271CrossRef
Zurück zum Zitat Morillo J, Usero J, Rojas R (2008) Fractionation of metals and As in sediments from a biosphere reserve (Odiel salt marshes) affected by acidic mine drainage. Environ Monit Assess 139(1–3):329–337CrossRef Morillo J, Usero J, Rojas R (2008) Fractionation of metals and As in sediments from a biosphere reserve (Odiel salt marshes) affected by acidic mine drainage. Environ Monit Assess 139(1–3):329–337CrossRef
Zurück zum Zitat Naimo D, Adamo P, Imperato M, Stanzione D (2005) Mineralogy and geochemistry of a marine sequence, Gulf of Salerno, Italy. Quater Int 140–141:53–63CrossRef Naimo D, Adamo P, Imperato M, Stanzione D (2005) Mineralogy and geochemistry of a marine sequence, Gulf of Salerno, Italy. Quater Int 140–141:53–63CrossRef
Zurück zum Zitat Nordstrom DK (2000) An overview of arsenic mass poisoning in Bangladesh and West Bengal, India. In: Young C (ed) Minor elements 2000: processing and environmental aspects of As, Sb, Se, Te, and Bi. Society for Mining, Metallurgy and Exploration, Littleton, CO, pp 21–30 Nordstrom DK (2000) An overview of arsenic mass poisoning in Bangladesh and West Bengal, India. In: Young C (ed) Minor elements 2000: processing and environmental aspects of As, Sb, Se, Te, and Bi. Society for Mining, Metallurgy and Exploration, Littleton, CO, pp 21–30
Zurück zum Zitat Ordóñez A, Alvarez R, Charlesworth S, Miguel Ed, Loredo J (2011) Risk assessment of soils contaminated by mercury mining, Northern Spain. J Environ Monit 13:128–136CrossRef Ordóñez A, Alvarez R, Charlesworth S, Miguel Ed, Loredo J (2011) Risk assessment of soils contaminated by mercury mining, Northern Spain. J Environ Monit 13:128–136CrossRef
Zurück zum Zitat Pempkowiak J, Sikora A, Biernacka E (1999) Speciation of heavy metals in marine sediments vs their bioaccumulation by mussels. Chemosphere 39(2):313–321CrossRef Pempkowiak J, Sikora A, Biernacka E (1999) Speciation of heavy metals in marine sediments vs their bioaccumulation by mussels. Chemosphere 39(2):313–321CrossRef
Zurück zum Zitat Pérez-Cid B, Lavilla I, Bendicho C (1996) Analytical assessment of two sequential extraction schemes for metal partitioning in sewage sludges. Analyst 121(10):1479–1484CrossRef Pérez-Cid B, Lavilla I, Bendicho C (1996) Analytical assessment of two sequential extraction schemes for metal partitioning in sewage sludges. Analyst 121(10):1479–1484CrossRef
Zurück zum Zitat Quevauviller P (1998) Operationally defined extraction procedures for soil and sediment analysis I. Standardization. Trends Anal Chem 17(5):289–298CrossRef Quevauviller P (1998) Operationally defined extraction procedures for soil and sediment analysis I. Standardization. Trends Anal Chem 17(5):289–298CrossRef
Zurück zum Zitat Quevauviller P, Ure A, Muntau H, Griepink B (1993) Improvement of analytical measurements within the BCR-program—single and sequential extraction procedures applied to soil and sediment analysis. Int J Environ Anal Chem 51(1–4):129–134CrossRef Quevauviller P, Ure A, Muntau H, Griepink B (1993) Improvement of analytical measurements within the BCR-program—single and sequential extraction procedures applied to soil and sediment analysis. Int J Environ Anal Chem 51(1–4):129–134CrossRef
Zurück zum Zitat Rauret G, López-Sánchez JF, Sahuquillo A, Rubio R, Davidson C, Ure A, Quevauviller P (1999) Improvement of the BCR three step sequential extraction procedure prior to the certification of new sediment and soil reference materials. J Environ Monit 1(1):57–61CrossRef Rauret G, López-Sánchez JF, Sahuquillo A, Rubio R, Davidson C, Ure A, Quevauviller P (1999) Improvement of the BCR three step sequential extraction procedure prior to the certification of new sediment and soil reference materials. J Environ Monit 1(1):57–61CrossRef
Zurück zum Zitat Sadiq M (1997) Arsenic chemistry in soils: an overview of thermodynamic predictions and field observations. Water Air Soil Pollut 93(1–4):117–136 Sadiq M (1997) Arsenic chemistry in soils: an overview of thermodynamic predictions and field observations. Water Air Soil Pollut 93(1–4):117–136
Zurück zum Zitat Saria L, Shimaoka T, Miyawaki K (2006) Leaching of heavy metals in acid mine drainage. Waste Manage Res 24(2):134–140CrossRef Saria L, Shimaoka T, Miyawaki K (2006) Leaching of heavy metals in acid mine drainage. Waste Manage Res 24(2):134–140CrossRef
Zurück zum Zitat Slavek J, Pickering WF (1981) A study of the sorptive properties of surface sediments in a landfill project region. Water Res 15(7):867–874CrossRef Slavek J, Pickering WF (1981) A study of the sorptive properties of surface sediments in a landfill project region. Water Res 15(7):867–874CrossRef
Zurück zum Zitat Smith E, Naidu R, Alston AM (1998) Arsenic in the soil environment: a review. Adv Agron 64:149–195CrossRef Smith E, Naidu R, Alston AM (1998) Arsenic in the soil environment: a review. Adv Agron 64:149–195CrossRef
Zurück zum Zitat Svete P, Milacic R, Pihlar B (2001) Partitioning of Zn, Pb and Cd in river sediments from a lead and zinc mining area using the BCR three-step sequential extraction procedure. J Environ Monit 3(6):586–590CrossRef Svete P, Milacic R, Pihlar B (2001) Partitioning of Zn, Pb and Cd in river sediments from a lead and zinc mining area using the BCR three-step sequential extraction procedure. J Environ Monit 3(6):586–590CrossRef
Zurück zum Zitat Szakova J, Tlustos P, Balik J, Pavlikova D, Vanek V (1999) The sequential analytical procedure as a tool for evaluation of As, Cd and Zn mobility in soil. Fresenius J Anal Chem 363(5–6):594–595 Szakova J, Tlustos P, Balik J, Pavlikova D, Vanek V (1999) The sequential analytical procedure as a tool for evaluation of As, Cd and Zn mobility in soil. Fresenius J Anal Chem 363(5–6):594–595
Zurück zum Zitat Tack FMG, Verloo MG (1995) Chemical speciation and fractionation in soil and sediment heavy-metal analysis—a review. Int J Environ Anal Chem 59(2–4):225–238CrossRef Tack FMG, Verloo MG (1995) Chemical speciation and fractionation in soil and sediment heavy-metal analysis—a review. Int J Environ Anal Chem 59(2–4):225–238CrossRef
Zurück zum Zitat Tessier A, Campbell PGC, Bisson M (1979) Sequential extraction procedure for the speciation of particulate trace metals. Anal Chem 51(7):844–851CrossRef Tessier A, Campbell PGC, Bisson M (1979) Sequential extraction procedure for the speciation of particulate trace metals. Anal Chem 51(7):844–851CrossRef
Zurück zum Zitat Ure AM, Davidson CM (1995) Chemical speciation in the environment. Blackie Academic & Professional, Glasgow, p 408 Ure AM, Davidson CM (1995) Chemical speciation in the environment. Blackie Academic & Professional, Glasgow, p 408
Zurück zum Zitat Usero J, Gamero M, Morillo J, Gracia I (1998) Comparative study of three sequential extraction procedures for metals in marine sediments. Environ Int 24(4):487–496CrossRef Usero J, Gamero M, Morillo J, Gracia I (1998) Comparative study of three sequential extraction procedures for metals in marine sediments. Environ Int 24(4):487–496CrossRef
Zurück zum Zitat Van Herreweghe S, Swennen R, Vandecasteele C, Cappuyns V (2003) Solid phase speciation of arsenic by sequential extraction in standard reference materials and industrially contaminated soil samples. Environ Pollut 122(3):323–342CrossRef Van Herreweghe S, Swennen R, Vandecasteele C, Cappuyns V (2003) Solid phase speciation of arsenic by sequential extraction in standard reference materials and industrially contaminated soil samples. Environ Pollut 122(3):323–342CrossRef
Zurück zum Zitat Varejão EVV, Bellato CR, Fontes MPF, Mello JWV (2011) Arsenic and trace metals in river water and sediments from the southeast portion of the Iron Quadrangle, Brazil. Environ Monit Assess 172:631–642 Varejão EVV, Bellato CR, Fontes MPF, Mello JWV (2011) Arsenic and trace metals in river water and sediments from the southeast portion of the Iron Quadrangle, Brazil. Environ Monit Assess 172:631–642
Zurück zum Zitat Yuan CG, Shi JB, He B, Liu JF, Liang LN, Jiang GB (2004) Speciation of heavy metals in marine sediments from the East China Sea by ICP-MS with sequential extraction. Environ Int 30(6):769–783CrossRef Yuan CG, Shi JB, He B, Liu JF, Liang LN, Jiang GB (2004) Speciation of heavy metals in marine sediments from the East China Sea by ICP-MS with sequential extraction. Environ Int 30(6):769–783CrossRef
Metadaten
Titel
Chemical availability of arsenic and heavy metals in sediments from abandoned cinnabar mine tailings
verfasst von
Raquel Larios
Rodolfo Fernández-Martínez
Verónica Silva
Isabel Rucandio
Publikationsdatum
01.01.2013
Verlag
Springer-Verlag
Erschienen in
Environmental Earth Sciences / Ausgabe 2/2013
Print ISSN: 1866-6280
Elektronische ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-012-1757-1

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