CO2 assimilation oxidative stress and biomass yield of Massai grass (Panicum maximum cv. Massai) as affected by sulfur and cadmium interaction: a pre-requisite study for agromining (2017)
- Authors:
- Autor USP: LAVRES JUNIOR, JOSÉ - CENA
- Unidade: CENA
- Subjects: GRAMÍNEAS FORRAGEIRAS; NUTRIÇÃO VEGETAL; BIOMASSA
- Language: Inglês
- Imprenta:
- Source:
- Título: Programme Booklet
- Conference titles: Agriculture and Climate Change
-
ABNT
LAVRES JUNIOR, José et al. CO2 assimilation oxidative stress and biomass yield of Massai grass (Panicum maximum cv. Massai) as affected by sulfur and cadmium interaction: a pre-requisite study for agromining. 2017, Anais.. Sitges: Elsevier, 2017. . Acesso em: 02 jan. 2026. -
APA
Lavres Junior, J., Rabelo, F. H. S., Rossi, M. L., Martinelli, A. P., & Azevedo, R. A. (2017). CO2 assimilation oxidative stress and biomass yield of Massai grass (Panicum maximum cv. Massai) as affected by sulfur and cadmium interaction: a pre-requisite study for agromining. In Programme Booklet. Sitges: Elsevier. -
NLM
Lavres Junior J, Rabelo FHS, Rossi ML, Martinelli AP, Azevedo RA. CO2 assimilation oxidative stress and biomass yield of Massai grass (Panicum maximum cv. Massai) as affected by sulfur and cadmium interaction: a pre-requisite study for agromining. Programme Booklet. 2017 ;[citado 2026 jan. 02 ] -
Vancouver
Lavres Junior J, Rabelo FHS, Rossi ML, Martinelli AP, Azevedo RA. CO2 assimilation oxidative stress and biomass yield of Massai grass (Panicum maximum cv. Massai) as affected by sulfur and cadmium interaction: a pre-requisite study for agromining. Programme Booklet. 2017 ;[citado 2026 jan. 02 ] - Photosynthesis rate, chlorophyll content and initial development of physic nut without micronutrient fertilization
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