Three years of phytostabilisation experiment of bare acidic soil extremely contaminated by copper smelting using plant biodiversity of metal-rich soils in tropical Africa (Katanga, DR Congo)
Colinet, Gilles ; Université de Liège > Ingénierie des biosystèmes (Biose) > Echanges Eau-Sol-Plantes
Mahy, Grégory ; Université de Liège > Ingénierie des biosystèmes (Biose) > Biodiversité et Paysage
Ngongo luhembwe, Michel
Visser, Marjolein
Meerts, Pierre
Language :
English
Title :
Three years of phytostabilisation experiment of bare acidic soil extremely contaminated by copper smelting using plant biodiversity of metal-rich soils in tropical Africa (Katanga, DR Congo)
R.U. Ayres, L.W. Ayres, I. Rade, 2002; The life cycle of copper, its co-products and by-products. Mining minerals and sustainable development (MMSD) project N°24. IIED and WBCSD, England, Reg No. 252. VAT Reg. No. GB 440 4948 50. Registered Charity No. 800066 January 1884; 2002.
Baize, D., Tercé, M., 2002. Les éléments traces métalliques dans les sols: approches fonctionnelles et spatiales. INRA, Edition Quae, p. 565.
Banza C.L.N., Nawrot T.S., Haufroid V., Decrée S., De Putter T., Smolders E., Kabyla B.I., Luboya O.N., Ilunga A.N., Mutombo A.M., Nemery B. High human exposure to cobalt and other metals in Katanga: a mining area of the Democratic Republic of Congo. Environ. Res. 2009, 109:745-752.
Cailteux J.L.H., Kampunzu A.B., Lerouge C., Kaputo A.K., Milesi J.P. Genesis of sediment-hosted stratiform copper-cobalt deposits, central African Copperbelt. J. Afr. Earth Sci. 2005, 42:134-158.
Chaney R.L., Reeves R.D., Baklanov I.A., Centofanti T., Broadhurst C.L., Baker A.J., van der Ent A., Roseberg R.J. Phytoremediation and phytomining: using plants to remediate contaminated or mineralized environments. Plant Ecol. Evol. Harsh Environ. 2014, 365-392.
Cheyns K., Banza Lubaba Nkulu C., Ngombe L.K., Asosa J.N., Haufroid V., De Putter T., Nawrot T., Muleka Kimpanga C., Luboya Numbi O., Kabyla Ilunga B., Nemery B., Smolders E. Pathways of human exposure to cobalt in Katanga: a mining area of the DR Congo. Sci. Total Environ. 2014, 490:313-321.
Cooke J.A., Johnson M.S. Ecological restoration of land with particular reference to mining metals and industrial minerals: a review of theory and practice. Environ. Rev. 2002, 10:41-71.
Córdova S., Neaman A., González I., Ginocchio R., Fine P. The effect of lime and compost amendments on the potential for the revegetation of metal-polluted acidic soils. Geoderma 2011, 166:135-144.
Cunningham S.D., Berti W.R. Phytoextraction and phytostabilization: technical, economic, and regulatory considerations of soil-lead issue. Phytoremediation of Toxic Metals: Using Plants to Clean up the Environment 2000, 359-376. John Wiley & Sons, Canada. I. Raskin, B.D. Ensley (Eds.).
Duvigneaud P., Denaeyer-De Smet S. Cuivre et végétation au Katanga. Bull. Soc. R. Bot. Belg. 1963, 96:92-231.
Farrell M., Jones M. Use of composts in the remediation of heavy metal contaminated soil. J. Hazard. Mater. 2010, 175:575-582.
Faucon M.P., Meerseman A., Shutcha M.N., Mahy G., Luhembwe M.N., Malaisse F., Meerts P. Copper endemism in the congolese flora: a database of copper affinity and conservation value of cuprophytes. Plant Ecol. Evol. 2010, 143:5-18.
Faucon M.P., Muding B.T., Van Rossum F., Meerts P., Decocq G., Mahy G. Ecology and hybridization potential of two sympatric metallophytes: the narrow endemic Crepidorhopalon perennis (Linderniaceae) and its more widespread congener C. tenuis. Biotropica 2012, 44:454-462.
Faucon M.P., Parmentier I., Colinet G., Mahy G., Luhembwe M.N., Meerts P. May rare metallophytes benefit from disturbed soils following mining activity? The case of the Crepidorhopalon tenuis in Katanga (DR Congo). Restor. Ecol. 2011, 19:333-343.
Faucon M.P., Shutcha M.N., Meerts P. Revisiting copper and cobalt concentrations in supposed hyperaccumulators from SC Africa: influence of washing and metal concentration in soil. Plant Soil 2007, 301:29-36.
Houben D., Evrard L., Sonnet P. Beneficial effects of biochar application to contaminated soils on the bioavailability of Cd, Pb and Zn and the biomass production of rapeseed (Brassica napus L.). Biomass Bioenergy 2013, 57:196-204.
Karami N., Clemente R., Moreno-Jiménez E., Lepp N.W., Beesley L. Efficiency of green waste compost and biochar soil amendments for reducing lead and copper mobility and uptake to ryegrass. J. Hazard. Mater. 2011, 191:41-48.
Kiikkilä O. Heavy-metal pollution and remediation of forest soil around the Harjavalta Cu-Ni smelter, in SW Finland. Silva Fennica 2003, 37:399-415.
Kozlov M.V., Zvereva E.L. Industrial barrens: extreme habitats created by non-ferrous metallurgy. Rev. Environ. Sci. Biotechnol. 2007, 6:231-259.
Kucharski R., Sas-Nowosielka A., Malkovski E., Japenga J., Kuperberg J.M., Pogrzeba M., Krzyzak J. The use of indigenous plant species and calcium phosphate for the stabilization of highly metal-polluted sites in northern Poland. Plant Soil 2005, 273:291-305.
Kumpiene J., Lagerkvist A., Maurice C. Stabilization of As, Cr, Cu, Pb and Zn in soil using amendments - a review. Waste Manag. 2008, 28:215-225.
Lange B., Faucon M.P., Meerts P., Shutcha M., Mahy G., Pourret O. Prediction of the edaphic factors influence upon the copper and cobalt accumulation in two metallophytes using copper and cobalt speciation in soils. Plant Soil 2014, 379:275-287.
Leblanc M., Malaisse F. Lubumbashi, un écosystème urbain tropical. Centre international de sémiologie 1978, 152. Université national du zaïre.
Leteinturier B. Evaluation du potentiel phytocénotique des gisements cuprifères d'Afrique centro-australe en vue de la phytoremédiation de sites pollués par l'activité minière. PhD thesis 2002, 364. Faculty of Agricultural Sciences of Gembloux, Belgium.
Li M.S. Ecological restoration of mineland with particular reference to the metalliferous mine wasteland in China: a review of research and practice. Sci. Total Environ. 2006, 357:38-353.
Lopareva-Pohu A., Verdin A., Garçon G., Lounès-Hadj Sahraoui A., Pourrut B., Debiane D., Waterlot C., Laruelle F., Bidar G., Douay F., Shirali P. Influence of fly ash aided phytostabilisation of Pb, Cd and Zn highly contaminated soils on Lolium perenne and Trifolium repens metal transfer and physiological stress. Environ. Pollut. 2011, 159(6):1721-1729.
Madejon E., de Mora A.P., Felipe E., Burgos P., Cabrera F. Soil amendments reduce trace element solubility in a contaminated soil and allow regrowth of natural vegetation. Environ. Pollut. 2006, 139:40-52.
Mench M., Vangronsveld J., Clijsters H., Lepp N.W., Edwards R. In situ metal immobilization and phytostabilization of contaminated soils. Phytoremediation of Toxic Metals: Using Plants to Clean up the Environment 2000, 323-358. John Wiley & Sons, Canada. I. Raskin, B.D. Ensley (Eds.).
Mench M., Vangronsveld J., Lepp N., Bleeker P., Ruttens A., Geebelen W., et al. Phytostabilization of metal-contaminated sites. Phytoremediation of Metal-Contaminated Soils 2006, 109-190. Springer, Netherlands. J.-L. Morel (Ed.).
Ministry of mines of Democratic Republic of Congo, 2014. Statistiques minières: Exercice 2013. 35p. http://www.mines-rdc.cd/fr/documents/statistiquesminieres2013.pdf.
Moreno-Jiménez E., Esteban E., Carpena-Ruiz R.O., Lobo M.C., Peñalosa J.M. Phytostabilisation with Mediterranean shrubs and liming improved soil quality in a pot experiment with a pyrite mine soil. J. Hazard. Mater. 2012, 201:52-59.
Mpundu M.M. Contaminations des sols en Eléments Traces Métalliques à Lubumbashi Katanga/RDCongo). Evaluation des risques de contamination de la chaîne alimentaire et choix de solutions de remédiation. PhD thesis 2010, 460. University of Lubumbashi, DR Congo.
Mujinya B.B., Mees F., Boeckx P., Bodé S., Baert G., Erens H., Delefortrie S., Verdoodt A., Ngongo M., Van Ranst E. The origin of carbonates in termite mounds of the Lubumbashi area, DR Congo. Geoderma 2011, 165:95-105.
Mujinya B.B., Van Ranst E., Verdoodt A., Baert G., Ngongo L.M. Termite bioturbation effects on electro-chemical properties of ferralsols in the upper Katanga (DR Congo). Geoderma 2010, 158:233-241.
Munyemba F.K. Quantification et modélisation de la dynamique paysagère dans la région de Lubumbashi: évaluation de l'impact écologique des dépositions issues de la pyrométallurgie. PhD thesis 2010, University of Lubumbashi, DR Congo, 255p.
Narendrula R., Kongolo K.K., Beckett P. Comparative soil metal analyses in Sudbury (Ontario, Canada) and Lubumbashi (Katanga: DR-Congo). Bull. Environ. Contam. Toxicol. 2012, 88:187-192.
Ngongo M.L., Van Ranst E., Baert G., Kasongo E.L., Verdoodt A., Mujinya B.B., Mukalay J.M. Guide des Sols en République Démocratique du Congo, Tome I: Etude et Gestion 2009, Don Bosco, Lubumbashi.
Orchard C., Léon-Lobos P., Ginocchio R. Phytostabilization of massive mine wastes with native phytogenetic resources: potential for sustainable use and conservation of the native flora in north-central Chile. Cienc. Investig. Agrar. 2009, 36:329-352.
Padmavathiamma P.K., Li Y.L. Phytoremediation technology: hyper-accumulation metals in plants. Water Air Soil Pollut. 2007, 184:105-126.
Padmavathiamma P.K., Li L.Y. Effect of amendments on phytoavailability and fractionation of copper and zinc in a contaminated soil. Int. J. Phytorem. 2010, 12:697-715.
Perez de Mora A., Madrid F., Cabrera F., Madejon E. Amendments and plant cover influence on trace element pools in a contaminated soil. Geoderma 2007, 139:1-10.
Pilon-Smits E. Phytoremédiation. Ann. Revision Plant Biol. 2005, 56:15-39.
Pourret O., Lange B., Houben D., Colinet G., Shutcha M., Faucon M.P. Modeling of cobalt and copper speciation in metalliferous soils from Katanga (Democratic Republic of Cong. J. Geochem. Explorat. 2015, 149:87-96.
Reddy K.J., Wan L., Gloss S.P. Solubility and mobility of copper, zinc and lead in acidic environments. Plant and Soil 1995, 171:53-58.
Schnoor J.L. Phytoremédiation. Technology evaluation report TE-98-01 1997, Ground Water Remediation Technologies Analysis Center, Pittsburgh, 43p.
Shutcha M.N., Mpundu M.M., Faucon M.-P., Luhembwe M.N., Visser M., Colinet G., Meerts P. Phytostabilisation of copper-contaminated soil in Katanga: an experiment with three native grasses and two amendments. Int. J. Phytorem. 2010, 12:616-632.
Spedding C.R.W., Large R.V. A point-quadrat method for description of pasture in terms of height and density. Grass Forage Sci. 1957, 12:229-234.
Ulriksen C., Ginocchio R., Mench M., Neaman A. Lime and compost promote plant re-colonization of metal-polluted, acidic soils. Int. J. Phytorem. 2012, 14:820-833.
Vangronsveld J., Herzig R., Weyens N., Boulet J., Adriaensen K., Ruttens A., Thewys T., Vassilev A., Meers E., Nehnevajova E., van der Lelie D., Mench M. Phytoremediation of contaminated soils and groundwater: lessons from the field. Environ. Sci. Pollut. Res. 2009, 16:765-794.
Winterhalder K. Environmental degradation and rehabilitation of the landscape around Sudbury: a major mining and smelting area. Environ. Rev. 1996, 4:185-225.
Wu Q., Wang S., Thangavel P., Li Q., Zheng H., Bai J., Qiu R. Phytostabilization potential of Jatropha curcas L. in polymetallic acid mine tailings. Int. J. Phytorem. 2011, 13:788-804.