Influence of agro-industrial wastes on the sorption, desorption, and distribution of copper in soils polluted by mine tailings

Jorge Mendoza1, Tatiana Garrido1, Davor Cotoras2, Francisco Arriagada1
1Departamento de Química Inorgánica Y Analítica, Facultad de Ciencias Químicas Y Farmacéuticas, Universidad de Chile, Santiago, Chile
2Departamento de Bioquímica y Biología Molecular, Facultad de Ciencias Químicas y Farmacéuticas, Universidad de Chile, Santiago, Chile

Tóm tắt

Từ khóa


Tài liệu tham khảo

Abad-Valle P, Iglesias-Jiménez E, Alvarez-Ayuso E (2017) A comparative study on the influence of different organic amendments on trace element mobility and microbial functionality of a polluted mine soil. J Environ Manag 188:287–296

Arias M, Pérez-Novo C, Osorio F, López E, Soto B (2005) Adsorption and desorption of copper and zinc in the surface layer of acid soils. J Colloid Interface Sci 288:21–29

Asensio V, Covelo E, Kandeler E (2013) Soil management of copper mine tailing soils - sludge amendment and tree vegetation could improve biological soil quality. Sci Total Environ 456:82–90

Atanassova I (1995) Adsorption and desorption of Cu at high equilibrium concentrations by soil and clay samples from Bulgaria. Environ Pollut 87:17–21

Atanassova I, Okazaki M (1997) Adsorption-desorption characteristics of high levels of copper in soil clay fractions. Water Air Soil Pollut 98:213–228

Badilla-Ohlbaum R, Ginocchio R, Rodriguez P, Cespedes A, González S, Allen H, Lagos G (2001) Relationship between soil copper content and copper content of selected crop plants in central Chile. Environ Toxicol Chem 20:2749–2757

Bradl H (2004) Adsorption of heavy metal ions on soils and soils constituents. J Colloid Interface Sci 277:1–18

Camus F (1975) Geology of the El Teniente ore body with emphasis on wall rock alteration. Econ Geol 70:1341–1372

Carter M, Gregorich E (2008) Soil sampling and methods of analysis. CRC Press, Boca Raton

Cavallaro N, McBride MB (1984) Zinc and copper sorption and fixation by an acid soil clay: effect of selective dissolutions. Soil Sci Soc Am J 48:1050–1054

CIREN (1996) Agrological Study VI Region. Descriptions of soils, materials and symbols. Publication No. 114. Natural Resources Information Center (CIREN), Santiago (in Spanish)

Clemente R, Pardo T, Madejón P, Madejón E, Bernal MP (2015) Food byproducts as amendments in trace elements contaminated soils. Food Res Int 73:176–189

Cochilco (2017) Accessed 4 December 2018 https://www.cochilco.cl/Lists/Anuario/Attachments/17/Anuario- avance7-10-7-17.pdf

Covelo E, Vega F, Andrade M (2007) Competitive sorption and desorption of heavy metals by individual soil components. J Hazard Mater 140:308–315

de la Fuente C, Clemente R, Martinez-Alcala I, Tortosa G, Bernal MP (2011) Impact of fresh and composted solid olive husk and their water-soluble fractions on soil heavy metal fractionation; microbial biomass and plant uptake. J Hazard Mater 186:1283–1289

Decree No. 7 (2009) Declares a zone saturated with respirable particulate material MP10, as annual concentration and 24 hours the central valley of the VI region. Ministry Secretariat General of the Presidency. Official Journal of the Republic of Chile, 27-March-2009. https://www.leychile.cl/N?i=288384&f=2009-09-10&p=. Accessed 15 November 2018 (in Spanish)

Dold B, Fontboté L (2001) Element cycling and secondary mineralogy in porphyry copper tailings as a function of climate, primary mineralogy and mineral processing. J Geochem Explor 74:3–55

Edraki M, Baumgartl T, Manlapig E, Bradshaw D, Franks DM, Moran CJ (2014) Designing mine tailings for better environmental, social and economic outcomes: a review of alternative approaches. J Clean Prod 84:411–420

Farrah H, Hatton D, Pickering W (1980) The affinity of metal ions for clay surfaces. Chem Geol 28:55–68

Forjan R, Asensio V, Rodríguez-Vila A, Covelo E (2016) Contribution of waste and biochar amendment to the sorption of metals in a copper mine tailing. Catena 137:120–125

Garrido T, Mendoza J, Arriagada F (2012) Changes in the sorption, desorption, distribution, and availability of copper, induced by application of sewage sludge on Chilean soils contaminated by mine tailings. J Environ Sci 24:912–918

He M, Tian G, Liang X, Yu Y, Wu J, Zhou G (2007) Effects of two sludge application on fractionation and phytotoxicity of zinc and copper in soil. J Environ Sci 19:1482–1490

Jones S, Bardos R, Kidd P, Mench M, de Leij F, Hutchings T, Cundy A, Joyce C, Soja G, Friesl-Hanl W, Herzig R, Menger P (2016) Biochar and compost amendments enhance copper immobilization and support plant growth in contaminated soils. J Environ Manag 171:101–112

Jorge-Mardomingo I, Jiménez-Hernández ME, Moreno L, de la Losa A, de la Cruz MT, Casermeiro MA (2015) Application of high doses of organic amendments in a Mediterranean agricultural soil: an approach for assessing the risk of groundwater contamination. Catena 131:74–83

Karna R, Luxton T, Bronstein K, Redmon JH, Scheckel K (2017) State of the science review: Potential for beneficial use of waste by-products for in situ remediation of metal-contaminated soil and sediment. Crit Rev Environ Sci Technol 47:65–129

Kelm U, Helle S, Matthies R, Morales A (2009) Distribution of trace elements in soils surrounding the El Teniente porphyry copper deposit, Chile: the influence of smelter emissions and a tailings deposit. Environ Geol 57:365–376

Kodirov O, Kersten M, Shukurov N, Martín Peinado FJ (2018) Trace metal(loid) mobility in waste deposits and soils around Chadak mining area, Uzbekistan. Sci Total Environ 622-623:1658–1667

Kossoff D, Dubbin WE, Alfredsson M, Edwards SJ, Macklin MG, Hudson-Edwards KA (2014) Mine tailings dams: Characteristics, failure, environmental impacts, and remediation. Appl Geochem 51:229–245

Li P, Lang M, Wang X, Zhang T (2016) Sorption and desorption of copper and cadmium in a contaminated soil affected by soil amendments. Clean-Soil Air Water 44:1547–1556

Lindsay M, Moncur M, Bain J, Jambor J, Ptacek C, Blowes D (2015) Geochemical and mineralogical aspects of sulfide mine tailings. Appl Geochem 57:157–177

Lu A, Zhang S, Qin X, Wu W, Liu H (2009) Aging effect on the mobility and bioavailability of copper in soil. J Environ Sci 21:173–178

Luzio W, Seguel O, Casanova M (2010) Soils of the arid Mediterranean area. In: Luzio W (ed) Soils of Chile. University of Chile, Santiago, pp 125–194 (in Spanish)

Martín-Peinado FJ, Romero-Freire A, García-Fernández I, Sierra-Aragón M, Ortiz-Bernad I, Simón-Torres M (2015) Long-term contamination in a recovered area affected by a mining spill. Sci Total Environ 514:219–223

Mendoza J, Garrido T, Castillo G, San Martin N (2006) Metal availability and uptake by sorghum plants grown in soils amended with sludge from different treatments. Chemosphere 65:2304–2312

Mouta E, Soares M, Casagrande J (2008) Copper adsorption as a function of solution parameters of variable charge soils. J Braz Chem Soc 19:996–1009

Pardo T, Bernal MP, Clemente R (2017) Phytostabilisation of severely contaminated mine tailings using halophytes and field addition of organic and inorganic amendments. Chemosphere 178:556–564

Ping L, Brosse N, Sannigrahi P, Ragauskas A (2011) Evaluation of grape stalks as a bioresource. Ind Crop Prod 33:200–204

Pujol D, Liu C, Fiol N, Olivella M, Gominho J, Villaescusa I, Pereira H (2013) Chemical characterization of different granulometric fractions of grape stalks waste. Ind Crop Prod 50:494–500

Seo D, Yu K, DeLaune R (2008) Comparison of monometal and multimetal adsorption in Mississippi River alluvial wetland sediment: batch and column experiments. Chemosphere 73:1757–1764

Shaheen S, Tsadilas C, Rinklebe J (2015) Immobilization of soil copper using organic and inorganic amendments. J Plant Nutr Soil Sci 178:112–117

Sparks DL (2005) Sorption-Metals. In: Hillel D, Hatfield JL, Powlson DS, Rosenzweig C, Scow KM, Singer JJ, Sparks DL (eds) Encyclopedia of soils in the environment. Elsevier Ltd, Oxford, pp 532–537

Spencer E, Wilkinson J, Creaser R, Seguel J (2015) The distribution and timing of molybdenite mineralization at the El Teniente Cu-Mo porphyry deposit, Chile. Econ Geol 110:387–421

Sposito G (2008) The Chemistry of Soils. Oxford University Press Inc, New York

Tella M, Bravin M, Thuries L, Cazevieille P, Chevassus-Rosset C, Collin B, Chaurand P, Legros S, Doelsch E (2016) Increased zinc and copper availability in organic waste amended soil potentially involving distinct release mechanisms. Environ Pollut 212:299–306

Ure AM, Quevauviller P, Muntau H, Griepink B (1993) Speciation of heavy metal in soils and sediments. An account of the improvement and harmonization of extraction techniques undertaken under the auspices of the BCR of the Commission of the European Communities. Int J Environ Anal Chem 51:135–151

USDA (2018) U.S. Department of Agriculture, Natural Resources Conservation Service. National soil survey handbook, title 430-VI. http://www.nrcs.usda.gov/wps/portal/nrcs/detail/soils/ref/?cid=nrcs142p2_054242. Accessed 3 November 2018

Zhang W, Long J, Wei Z, Alakangas L (2016) Vertical distribution and historical loss estimation of heavy metals in an abandoned tailings pond at HTM copper mine, northeastern China. Environ Earth Sci 75:1462