132 resultados para REGIMENES DE LUZ
Resumo:
Em pomares de macieira, o dano de granizo pode ser evitado através da cobertura das plantas com telas. Todavia, as telas alteram a intensidade e a qualidade da luz solar e, assim, podem comprometer o rendimento e a qualidade dos frutos. Este trabalho objetivou avaliar estes aspectos em macieiras 'Fuji', cobertas com telas nas cores branca e preta. A tela preta ocasionou maiores reduções na densidade de fluxo de fótons fotossinteticamente ativos (DFFFA) disponíveis às plantas (24,8%) em relação à tela branca (21,2%). O interior do dossel das plantas sob tela, especialmente quando cobertas com tela preta, recebeu radiação com menores valores da relação vermelho:vermelho distante (V:Vd) em relação às plantas descobertas. Somente sob tela preta, a magnitude das reduções na DFFFA e na relação V:Vd da luz foi capaz de aumentar a área média e a área específica das folhas e reduzir a taxa fotossintética potencial, reduzindo assim o rendimento (número e peso de frutos por cm² de seção transversal de tronco) e a coloração vermelha dos frutos. As telas antigranizo branca e preta reduziram a incidência de queimadura de sol, porém não afetaram a severidade de "russeting" e o número de sementes por fruto.
Resumo:
Objetivou-se avaliar o efeito da vermiculita, ágar, da luz artificial e a da natural no enraizamento in vitro de brotos de abacaxizeiro 'Gomo de Mel', bem como caracterizar anatomicamente essas plantas. O trabalho foi realizado no laboratório de Cultura de Tecidos Vegetais, do Departamento de Agricultura - UFLA, Lavras-MG. Foram utilizados brotos com 2 cm de comprimento, cultivados em meio MS acrescido de 30g.L-1 de sacarose. Testaram-se dois suportes físicos: 6g.L-1 de ágar e 15 g.L-1 de vermiculita para o enraizamento dos brotos em dois ambientes: sala de crescimento a 25±1 ºC, 45 W.m-2.s-1 durante 16 horas e casa de vegetação com radiação de 115,08 W.m-2.s-1 e 33 ºC (luz natural). Após 60 dias, avaliaram-se comprimento de parte aérea, massa fresca e seca de parte aérea e raízes, espessuras dos tecidos do limbo foliar, além de número, diâmetro polar e equatorial dos estômatos. O experimento foi instalado em delineamento inteiramente casualizado. Os resultados mostraram-se significativos para interação entre suportes físicos e ambientes para todas as variáveis analisadas. O uso do substrato vermiculita em luz artificial apresentou melhores resultados para todas as variáveis, exceto para número de estômatos. Para as características anatômicas, maiores espessuras dos tecidos do limbo foliar foram verificadas quando se utilizaram vermiculita e luz natural, sendo que, para o uso de ágar, também houve aumento das espessuras somente quando se utilizou o ambiente de luz natural. Quanto ao número de estômatos/mm², não houve diferença significativa para os tratamentos. Maior diâmetro polar e equatorial foi observado em estômatos de folhas cultivadas em luz artificial e vermiculita, e luz natural e vermiculita, respectivamente.
Resumo:
Foram otimizados os protocolos de micropropagação das cultivares de abacaxizeiro 'Vitória' e 'IAC Fantástico', bem como as respostas fotossintéticas e de crescimento destes genótipos à alteração do ambiente de cultivo in vitro. Para as duas cultivares, os tratamentos foram dispostos em DIC, com seis repetições e cinco plantas por repetição, em um esquema de parcelas subsubdivididas, constituídas de qualidade de luz (branca e vermelha), tipo de frasco de cultivo (fechado e ventilado) e concentração de sacarose no meio de cultivo (15 e 30 g L-1). A avaliação foi feita após 40 dias de cultivo in vitro. Nas condições deste estudo, não houve assimilação fotossintética do carbono. Essa não assimilação foi associada ao comprometimento bioquímico e sem comprometimento na eficiência fotoquímica. A presença da sacarose pode ser considerada o fator responsável pela não assimilação do CO2. Em comparação à cv. IAC Fantástico, a cv. Vitória apresentou maior crescimento devido à maior absorção de carbono via sacarose adicionada ao meio de cultivo.
Resumo:
The construction and evaluation of an inexpensive flow photometer for clinical analysis, using a bicolour LED and a phototransistor adapted for tubular flow cell, are described. The instrument presents some new features such as: automatic zero, electronic calibration and peak-hold signal. When compared with a classical photometer, it is simpler and has the advantages of a flow analysis system: lower volumes of reagents and samples, lower levels of contamination, shorter time for analysis and lower analysis costs. The instrument was used in the determination of the constituents in blood samples. The results obtained agree with those obtained by a classical photometer and the precision was better.
Resumo:
An adaptation of the Raman experiment is presented as a very convenient, simple and easily made demonstration about inelastic light scattering. The procedure involves an overhead projector, a rectangular and transparent cell, complementary filters and solvent. Alternatively a spectrofluorimeter can he used to evaluate how weak Raman scattering is.
Resumo:
Recentlly, we have proposed the representation of lanthanides within AM1 as sparkles for the purpose of obtaing ground state geometries of their complexes. We tested our quantum chemical sparkle model (SMLC/AM1) for the prediction of the crystallographic structure of complexes with coordination number nine, eight and seven. A technique is introduced for the theoretical prediction of eletronic spectra of the organic part of lanthanide complexes by replacing the metal ion by a point charge with the ligands held in their positions as determined by the SMLC/AM1, and by computing the theoretical spectra via the intermediate neglect of differential overlap/spectroscopic-configuration interaction (INDO/S-CI).
Resumo:
We are working in a new multi-doped glassy material to generate simultaneously the three primary light color (by addition) of the visible spectrum, with the control of the intensity of each one, allowing the simulation of any color: a full-color generator device. Tm+3, Tb+3 and Eu+3 ions were used (0.01 to 5,0 mol%) as blue, green and red narrow line emitters. A wide color gamut was obtained under ultraviolet excitation by varying the material composition. The chromaticity diagram is covered, including the white simulation.
Resumo:
Chlorinated polymers (PVC, PVDC and E-CTFE) were irradiated with white light produced at the Brazilian Synchrotron Light Source (LNLS). The emitted gases were analyzed by mass spectrometry. The spectra were dominated by peaks related to hydrochloric acid, HCl, and chlorine (35Cl). The measured HCl intensity is used to evaluate the sensitivity of the polymers over a broad energy range. PVDC showed the greatest light sensitivity as compared to PVC and E-CTFE.
Resumo:
The photofragmentation of a core-excited halogenated compound, Halotane (C2F3HClBr), generally used as anesthetic by inhalation, has been studied using high energy photons and electrons near C 1s ionization edge (~ 300 eV), using time-of-flight mass spectrometry in multicoincidence mode. We observe strong differences between the molecular fragmentation induced by photons and electron impact.
Resumo:
Eu3+ luminescence and EXAFS (Extended X-ray Absorption Fine Structure) results are presented for organic-inorganic hybrid gel hosts composed of a siliceous network to which small chains of oxyethylene units are covalently grafted by means of urea bridges. Coordination numbers for Eu3+ ions range from 12.8 to 9.7 with increasing Eu3+ concentration while the Eu3+-first neighbours mean distance is found to be constant at 2.48-2.49 Å in the same concentration range. Emission spectra display a broad band in the green/blue spectral region superposed to narrow lines appearing in the yellow/red region in such a way that for the eyes emission appears white. The broad band is assigned to intrinsic NH groups emission and also to electron-hole recombination in the nanosised siliceous domains. The narrow lines are assigned to intra-4f6, 5D0->7F0-4 Eu3+ transitions and from the energy position of the 7F0-4 levels a mean distance could be calculated for the Eu3+-first neighbours. The calculated results are in good agreement with the experimental ones obtained from EXAFS analysis.
Resumo:
Destruction of Padron® (dye and picloram) was evaluated using a photoreactor and a solar reactor. Photolysis was observed using only a germicide lamp (GL). Black light (BL) and H2O2 (172 mmol L-1) promoted a conversion of 49% and 6% of dye and picloram, respectively. Photocatalytic processes were more efficient using TiO2/GL (96%-dye; 60%-picloram) than TiO2/BL (44%-dye; 40%-picloram). Photolysis using sunlight was not observed during PadronÒ recirculation in the reactor constructed with four borosilicate tubes. Meanwhile, adding H2O2 resulted in 12% conversion of dissolved organic compounds. Finally, the most efficient mineralization (60%) was obtained using the Fenton reaction ( H2O2-176 mmol L-1; FeSO4x6H2O-90 mmol L-1) and sunlight.
Resumo:
The identification of the chemical compounds of the essential oil was performed with a gas chromatograph coupled to a mass spectrometer. The oil was left in the presence and absence of light and submitted to different temperatures to evaluate its stability. The yields of the major compounds were evaluated every fifteen days. Citral and myrcene, the major compounds of the essential oil, were degraded over time in both the presence and absence of light, but temperature only influenced the degradation of myrcene.
Resumo:
The assembly of a photochemical reactor with six fluorescent lamps, used for photopolymerizations is described. This chamber presents a mobile support, allowing the placement of samples at different heights and a safety lock that interrupts the radiation, if it is opened during operation. The mirrored internal walls avoid the dispersion and non-uniform distribution of light. There is no high heating because the own character of the used lamps. All parts could be purchased in commerce with less than U$ 150,00. This reactor was successfully used for monolithic stationary phase photopolymerization.
Resumo:
This article describes the use of a projection spectrograph based on an overhead projector for use in classroom demonstrations on light polarization and optical activity. A simple adaptation on a previously developed apparatus allows illustrating several aspects of optical activity, such as circular and linear birefringence, including their wavelength dependence. Specifically, we use the projection spectrograph to demonstrate the optical activity of an aqueous solution of sugar (circular birefringence), of a quartz plate and of an overhead projector transparence film (linear birefringence). A historical survey about the optical activity discovery and the main principles involved is also presented.
Resumo:
The production of visible light by chemical reactions constitutes interesting and fascinating phenomena and several reaction mechanisms are discussed to rationalize excited state formation. Most efficient chemiluminescence reactions are thought to involve one or more electron transfer steps and chemiexcitation is believed to occur by radical annihilation. A brief introduction to the general principles of light production and the main known chemiexcitation mechanisms will be given here. Subsequently, recent results on the mechanistic elucidation of efficient chemiluminescence systems, as the peroxyoxalate reaction, the induced decomposition of phenoxy-substituted 1,2-dioxetanes and the catalyzed decomposition of new a-peroxylactones will be discussed.