Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 30 checked references that resolve
resolves10.1590/S0102-05362004000200026Germinação de sementes e desenvolvimento de plântulas de moringa (Moringa oleifera Lam.) em função do peso da semente e do tipo de substrato
resolves10.1007/s10646-015-1577-7Copper toxicity in a natural reference soil: ecotoxicological data for the derivation of preliminary soil screening values
resolves10.1016/j.jenvman.2016.07.050Ecological restoration of a copper polluted vineyard: Long-term impact of farmland abandonment on soil bio-chemical properties and microbial communities
resolves10.1081/CSS-100104220ADEQUATE AND TOXIC LEVELS OF COPPER AND MANGANESE IN UPLAND RICE, COMMON BEAN, CORN, SOYBEAN, AND WHEAT GROWN ON AN OXISOL
resolves10.1016/j.crvi.2015.02.001Impact of dual inoculation with Rhizobium and PGPR on growth and antioxidant status of Vicia faba L. under copper stress
resolves10.1016/j.plaphy.2018.03.003Soil amendment as a strategy for the growth of young vines when replanting vineyards in soils with high copper content
resolves10.1081/PLN-200049147Plant Response to Copper Toxicity as Affected by Plant Species and Soil Type
resolves10.1016/j.plaphy.2016.02.030Biochemical changes in black oat (avena strigosa schreb) cultivated in vineyard soils contaminated with copper
resolves10.1007/s11104-010-0351-0Toxicity and accumulation of copper and nickel in maize plants cropped on calcareous and acidic field soils
resolves10.1016/j.envpol.2017.08.008Validation of site-specific soil Ni toxicity thresholds with independent ecotoxicity and biogeochemistry data for elevated soil Ni
resolves10.1201/b18198Trace Elements in Abiotic and Biotic Environments
resolves10.1016/j.ejsobi.2009.12.002Differential copper impact on density, diversity and resistance of adapted culturable bacterial populations according to soil organic status
resolves10.1093/molbev/mss131Divergent Evolutionary Pattern of Starch Biosynthetic Pathway Genes in Grasses and Dicots
resolves10.1897/04-602R.1Soil factors controlling the expression of copper toxicity to plants in a wide range of European soils
The 19 references without a DOI — listed, not checked
no DOI — not checkedAlmeida, B. G., Donagemma, G. K., Ruiz, H. A., Braida, J. A., Viana, J. H. M., Reichert, J. M. M.,... Teixeira, W. G. (2012). Padronização de métodos para análise granulométrica no Brasil. Rio de Janeiro, RJ: EMBRAPA Solos.
no DOI — not checkedAlvarez, V. H. & Ribeiro, A. C. (1999). Calagem. In: V. H. Alvarez, P. T. G. Guimarães, & A. C. Ribeiro (Eds.),. Recomendações para o uso de corretivos e fertilizantes em Minas Gerais (pp. 43-60). Viçosa, MG: CFSEMG.
no DOI — not checkedConselho Estadual de Política Ambiental (2011). Deliberação Normativa nº 166 de 29 de junho de 2011. Diário do Executivo - 27 de Julho de 2011. Belo Horizonte: COPAM.
no DOI — not checkedConselho Nacional do Meio Ambiente (2009). Resolução nº 420 de 28 de dezembro de 2009. Diário Oficial da União n° 249. Brasília: Ministério do Meio Ambiente.
no DOI — not checkedEnvironment Canada (2005). Report EPS 1/RM/46. Guidance document on statistical methods for environmental toxicity tests. Ottawa: EC.
no DOI — not checkedInternational Organizations for Standardization (2012). Soil quality - determination of the effects of pollutants on soil flora - Part 2: effects of contaminated soil on the emergence and early growth of higher plants, nº 11269-2. Geneva: ISO.
no DOI — not checkedJensen, J., & Mesman, M. (2006). Ecological risk assessment of contaminated land: decision support for site specific investigations. New York, NY: RIVM.
no DOI — not checkedMalavolta, E. (1981). Manual de química agrícola: adubos e adubação. São Paulo, SP: Agronômica Ceres.
no DOI — not checkedMantovani, A. (2009). Composição química de solos contaminados por cobre: formas, sorção e feito no desenvolvimento de espécies vegetais. Tese de doutorado, Universidade Federal do Grande do Sul, Porto Alegre, RS, Brasil. Recuperado de https://www.lume.ufrgs.br/bitstream/handle/10183/17085/0007102 87.pdf?sequence=1
no DOI — not checkedPenha, J. G., Carvalho, G. S., Abreu, L. B. de, Ribeiro, B. T., Souza Costa, E. T. de, & Marques, J. J. (2017). Procedimentos para quantificação de elementos- traço por espectrofotometria de absorção atômica em matrizes de interesse ambiental. (Boletim Técnico). Lavras, MG: Editora UFLA.
no DOI — not checkedSantos, H. P., Melo, G. W. B., Luz, N. B., & Tomasi, R. J. (2004). Comportamento fisiológicos de plantas de aveia (Avena strigosa) em solos com excesso de cobre. (Comunicado Técnico). Bento Gonçalves, RS: EMBRAPA.
no DOI — not checkedSingh, D., Nath, K., & Sharma, Y. K. (2007). Response of wheat seed germination and seedling growth under copper stress. Journal of Environmental Biology, 28(2), 409-414.
no DOI — not checkedSoil Survey Staff (2014). Keys to soil taxonomy. Washington, DC: USDA-Natural Resources Conservation Service.
no DOI — not checkedStatsoft, I. S. (2004). Data Analysis Software System. Version 7.0.
no DOI — not checkedTeixeira, P. C., Donagemma, G. K., Fontana, A., & Teixeira, W. G. (Eds.). (2017). Manual de métodos de análise de solo. Brasília, DF: EMBRAPA.
no DOI — not checkedUnited States Environmental Protection (2007). Agency method 3051A (SW-846): microwave assisted acid digestion of sediments, sludges, and oils. Washington: USEPA.
no DOI — not checkedVan Vlaardingen, P. L. A., Traas, T. P., Wintersen, A., & Aldenberg, T. (2004). ETX 2. 0: a program to calculate hazardous concentrations and fraction affected, based on normally distributed toxicity data. Bilthoven, BA: RIVM.
no DOI — not checkedVerbruggen, E. M. J., Posthumus, R., & Van Wezel, A. P. R. (2001). Ecotoxicological serious risk concentrations for soil, sediment and (ground) water: updated proposals for first series of compounds. Bilthoven, BA: RIVM.
no DOI — not checkedWarne, M. S. J., & Van Dam, R. (2008). NOEC and LOEC data should no longer be generated or used - Opinion Piece. Australasian Journal of Ecotoxicology, 14(1), 1-5.
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