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9. | | SILVA, D. B. da; VIEIRA, R. F.; GOMES, I. da S.; ALVES, R. de B. das N. Coleta, conservação e cultivo experimental de macela (Achyrocline satureioides (Lam DC.- Asteraceae) na região do cerrado. Revista RG News, v. 4, n. 3, p. 384, 2018 Edição especial dos Anais do 5 Congresso Brasileiro de Recursos Genéticos, Fortaleza, nov. 2018. Na publicação: Ismael Gomes da Silva. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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10. | | SILVA, D. B. da; MATSUMOTO, K.; CARDOSO, L. D.; ALVES, R. de B. das N.; VIEIRA, R. F. Coleta e conservação de germoplasma de alecrim-pimenta Lippia sidoides cham. (Verbenaceae) no Brasil. In. CONGRESSO BRASILEIRO DE RECURSOS GENÉTICOS, 3., 2014, Santos. Anais... Brasília, DF: Sociedade Brasileira de Recursos Genéticos, 2014. Resumo. 058. 1 CD-ROM. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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11. | | ALVES, R. de B. das N.; CASTRO, A. C. R. de; PEREIRA, J. B.; WALTER, B. M. T. Coleta de germoplasma de caju no Brasil Central. Revista RG News, v. 4, n. 3, p. 382, 2018 Edição especial dos Anais do 5 Congresso Brasileiro de Recursos Genéticos, Fortaleza, nov. 2018. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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12. | | ALVES, R. de B. das N.; SILVA, G. P. da; SENA, L. C. N.; SOARES, U. M.; GOMES, E. R. Coleta de germoplasma de variedades tradicionais no Estado do Maranhao. In: SIMPOSIO DE RECURSOS GENETICOS PARA AMERICA LATINA E CARIBE, 2., 1999, Brasilia, DF. Anais... Brasilia: Embrapa Recursos Geneticos e Biotecnologia, 1999. CD-ROM. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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14. | | SILVA, D. B. da; ALVES, R. de B. das N.; COSTA, T. da S. A.; VIEIRA, R. F. Horto de referência de espécies medicinais utilizadas em programas de fitoterapia no Brasil. In: CONGRESSO BRASILEIRO DE RECURSOS GENÉTICOS; WORKSHOP EM BIOPROSPECÇÃO E CONSERVAÇÃO DE PLANTAS NATIVAS DO SEMI-ÁRIDO, 3.; WORKSHOP INTERNACIONAL SOBRE BIOENERGIA E MEIO AMBIENTE, 2010, Salvador. Bancos de germoplasma: descobrir a riqueza, garantir o futuro: anais. Brasília, DF: Embrapa Recursos Genéticos e Biotecnologia, 2010. CD-ROM Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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17. | | VIEIRA, R. F.; SILVA, D. B. da; BIZZO, H.; ALVES, R. de B. das N.; PAULA, K. D. da S. Introdução, conservação e caracterização química de acessos de Mentha spp. In: SIMPÓSIO BRASILEIRO DE RECURSOS GENÉTICOS, 2., 2008, Brasília, DF. Anais... Brasília, DF: Embrapa Recursos Genéticos e Biotecnologia: Fundação de Apoio à Pesquisa Científica e Tecnológica - FUNCREDI, 2008. p.228. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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19. | | BURLE, M. L.; SILVA, J. M.; ALVES, R. de B. das N.; CORDEIRO, C. M. T.; FREIRE, M.; FONSECA, J. R.; MELO, L. A. M. P. de. Diagnostico de variedades tradicionais de arroz de acordo com o ambiente de origem: primeira aproximacao. In: SIMPOSIO DE RECURSOS GENETICOS PARA AMERICA LATINA E CARIBE, 2., 1999, Brasilia, DF. Anais... Brasilia: Embrapa Recursos Geneticos e Biotecnologia, 1999. CD-ROM. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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20. | | SILVA, D. B. da; VIEIRA, R. F.; BRINGEL JUNIOR, J. B. de A.; MELO, L. A. M. P. de; ALVES, R. de B. das N. Coleta, conservação e cultivo experimental de macela (Achyrocline spp. - Asteraceae), na região do cerrado. Brasília, DF: Embrapa Recursos Genéticos e Biotecnologia, 2019. (Embrapa Recursos Genéticos e Biotecnologia / Circular Técnica, 94) Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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Registro Completo
Biblioteca(s): |
Embrapa Clima Temperado. |
Data corrente: |
09/03/2022 |
Data da última atualização: |
10/08/2022 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
RIBEIRO, P. L.; BAMBERG, A. L.; PEREIRA, I. dos S.; MONTEIRO, A. B.; POTES, M. da L.; LIMA, C. L. R. de. |
Afiliação: |
PABLO LACERDA RIBEIRO; ADILSON LUIS BAMBERG, CPACT; IVAN DOS SANTOS PEREIRA; ALEX BECKER MONTEIRO; MARIANA DA LUZ POTES; CLÁUDIA LIANE RODRIGUES DE LIMA. |
Título: |
Liming and co-application of water treatment residuals with biosolids for conditioning sandy soils. |
Ano de publicação: |
2022 |
Fonte/Imprenta: |
Land Degradation and Development, v. 33, n. 7, p. 989-1001, 2022. |
DOI: |
10.1002/ldr.4202 |
Idioma: |
Inglês |
Notas: |
First published: 17 January 2022. |
Conteúdo: |
Application of water treatment residuals (WTR) and biosolids (BS) might ameliorate fragile soils. However, studies integrating impacts of waste preparation methods such as liming and grinding associated with co-application approaches for soil conditioning are lacking. The present study aimed to evaluate the feasibility of agricultural use of WTR as well as their co-application with BS to ameliorate a sandy soil through assessing impacts on selected soil quality indicators and on nutrient and potentially toxic element concentration in plant tissue in addition to the biomass yield of annual crops. The following treatments were evaluated: non-amended soil (control); drying plus grinding and liming WTR; WTR co-application with BS at 3:1 ratio; and a soil amendment commercially available in Brazil. All treatments were soil incorporated in the 0.0?0.2 m layer at 30 Mg ha1 dose (dry mass). Selected soil physical, hydraulic, and chemical parameters were determined. Furthermore, nutrients and potentially toxic elements concentration in plant tissue as well as the agronomic performance of maize and ryegrass were measured. The co-application of WTR and BS increased the soil content of P, Zn, and Cu in the 0.0?0.1 m layer. The concentration of these nutrients also was greater in ryegrass tissue and promoted the biomass yield in 51%. WTR did not increase contaminants and did not decrease the P content in soil and in plant tissue, independently of drying plus grinding and liming. Considering the conditions investigated in our study, WTR/BS co-application was environmentally safe and effective in ameliorating soil quality. MenosApplication of water treatment residuals (WTR) and biosolids (BS) might ameliorate fragile soils. However, studies integrating impacts of waste preparation methods such as liming and grinding associated with co-application approaches for soil conditioning are lacking. The present study aimed to evaluate the feasibility of agricultural use of WTR as well as their co-application with BS to ameliorate a sandy soil through assessing impacts on selected soil quality indicators and on nutrient and potentially toxic element concentration in plant tissue in addition to the biomass yield of annual crops. The following treatments were evaluated: non-amended soil (control); drying plus grinding and liming WTR; WTR co-application with BS at 3:1 ratio; and a soil amendment commercially available in Brazil. All treatments were soil incorporated in the 0.0?0.2 m layer at 30 Mg ha1 dose (dry mass). Selected soil physical, hydraulic, and chemical parameters were determined. Furthermore, nutrients and potentially toxic elements concentration in plant tissue as well as the agronomic performance of maize and ryegrass were measured. The co-application of WTR and BS increased the soil content of P, Zn, and Cu in the 0.0?0.1 m layer. The concentration of these nutrients also was greater in ryegrass tissue and promoted the biomass yield in 51%. WTR did not increase contaminants and did not decrease the P content in soil and in plant tissue, independently of drying plus grinding and liming. Consider... Mostrar Tudo |
Thesagro: |
Água; Solo Arenoso; Tratamento da Água. |
Categoria do assunto: |
-- |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/item/232279/1/Artigo-Liming-and-co8208application-of-water-treatment-residuals-with-biosolids-for-conditioning.pdf
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Marc: |
LEADER 02386naa a2200241 a 4500 001 2140700 005 2022-08-10 008 2022 bl uuuu u00u1 u #d 024 7 $a10.1002/ldr.4202$2DOI 100 1 $aRIBEIRO, P. L. 245 $aLiming and co-application of water treatment residuals with biosolids for conditioning sandy soils.$h[electronic resource] 260 $c2022 500 $aFirst published: 17 January 2022. 520 $aApplication of water treatment residuals (WTR) and biosolids (BS) might ameliorate fragile soils. However, studies integrating impacts of waste preparation methods such as liming and grinding associated with co-application approaches for soil conditioning are lacking. The present study aimed to evaluate the feasibility of agricultural use of WTR as well as their co-application with BS to ameliorate a sandy soil through assessing impacts on selected soil quality indicators and on nutrient and potentially toxic element concentration in plant tissue in addition to the biomass yield of annual crops. The following treatments were evaluated: non-amended soil (control); drying plus grinding and liming WTR; WTR co-application with BS at 3:1 ratio; and a soil amendment commercially available in Brazil. All treatments were soil incorporated in the 0.0?0.2 m layer at 30 Mg ha1 dose (dry mass). Selected soil physical, hydraulic, and chemical parameters were determined. Furthermore, nutrients and potentially toxic elements concentration in plant tissue as well as the agronomic performance of maize and ryegrass were measured. The co-application of WTR and BS increased the soil content of P, Zn, and Cu in the 0.0?0.1 m layer. The concentration of these nutrients also was greater in ryegrass tissue and promoted the biomass yield in 51%. WTR did not increase contaminants and did not decrease the P content in soil and in plant tissue, independently of drying plus grinding and liming. Considering the conditions investigated in our study, WTR/BS co-application was environmentally safe and effective in ameliorating soil quality. 650 $aÁgua 650 $aSolo Arenoso 650 $aTratamento da Água 700 1 $aBAMBERG, A. L. 700 1 $aPEREIRA, I. dos S. 700 1 $aMONTEIRO, A. B. 700 1 $aPOTES, M. da L. 700 1 $aLIMA, C. L. R. de 773 $tLand Degradation and Development$gv. 33, n. 7, p. 989-1001, 2022.
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