18 resultados para growing media
em Repositório Institucional UNESP - Universidade Estadual Paulista "Julio de Mesquita Filho"
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Dendrobium nobile orchids were grown for three years in different substrates (tree fern fiber, blocks of pressed coconut bark, bark of Eucalyptus grandis, mixtures with coconut bark blocks and eucalyptus bark and mixtures with the latter materials and charcoal. Plant growth increased with higher concentrations of S (up to 1.6 g/kg), Cu (up to 46 mg/kg) and Zn (up to 147 mg/kg), and decreased with higher concentrations of Ca (up to 13.2 g/kg), Mg (up to 6.6 g/kg) and B (up to 19 mg/kg). High Mo (up to 5.3 mg/kg) caused a more intense loss of leaves after planting. Relations between nutrient concentrations also affected plant growth. With exception of eucalyptus bark, all growing media under study were suitable for plant growth.
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O trabalho teve como objetivo avaliar o efeito do uso de fino de carvão no substrato e da aplicação de extrato pirolenhoso no substrato e na planta sobre o desenvolvimento de porta-enxertos de limoeiro 'Cravo' (Citrus limonia Osbeck) cultivados em ambiente protegido. O experimento foi desenvolvido no delineamento em blocos casualisados, com análise em esquema fatorial 3 x 2 x 3, sendo: 3 proporções de fino de carvão (0, 100 e 200 cm³ dm-3) em mistura com substrato comercial, 2 concentrações de extrato pirolenhoso (0 e 20 cm³ dm-3) misturadas no substrato (240 cm³ por dm³ de substrato) e 3 concentrações de extrato pirolenhoso (0, 5 e 10 cm³ dm-3) pulverizadas na parte aérea, em 4 repetições. Aos 150 e 180 dias após o plantio foram realizadas avaliações do desenvolvimento das plantas. As misturas de fino de carvão e substrato comercial contendo fino de carvão na proporção de 100 cm³ dm-3 não influíram no desenvolvimento de porta-enxertos de limoeiro 'Cravo' , porém, na proporção de 200 cm³ dm-3 prejudica o desenvolvimento dos mesmos. O umedecimento pré-plantio do substrato com solução diluída (20 cm³ dm-3) de extrato pirolenhoso ou pulverização da parte aérea das plantas com soluções a 5 e 10 cm³ dm-3 provoca redução do desenvolvimento de porta-enxertos de limoeiro 'Cravo' .
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Com o objetivo de avaliar o efeito da presença do extrato pirolenhoso (EP) na calda de pulverização sobre o teor foliar de nutrientes de limoeiro 'Cravo' (Citrus limonia Osbeck), foi desenvolvido um experimento com seis tratamentos e quatro repetições, em blocos ao acaso, em ambiente protegido. Os tratamentos constituíram da pulverização das soluções: T0 = água; T1 = solução de micronutrientes sem EP; T2 = solução de micronutrientes + EP (1cm³ dm-3); T3 = solução de micronutrientes + EP (2 cm³ dm-3); T4 = solução de micronutrientes + EP (5cm³ dm-3); T5 = solução de micronutrientes + EP (10 cm³ dm-3). A solução de micronutrientes foi preparada com sulfatos de Cu, Fe, Mn, Zn (250 mg dm-3 do elemento) e ácido bórico (42,5 mg dm-3 de B). As plantas foram cultivadas em tubetes cônicos de 0,280 dm³, com substrato sem a adição de micronutrientes na formulação. As soluções foram pulverizadas uma única vez, aos 140 dias após o plantio (DAP), momento em que as plantas apresentavam aproximadamente 20 cm de altura. Ao final do experimento (160 DAP), quantificaram-se a massa seca e os teores de macro e micronutrientes da parte aérea e sistema radicular. A presença do extrato pirolenhoso na solução de micronutrientes não interferiu na concentração foliar de B, Fe e Zn em mudas de limoeiro 'Cravo'. Entretanto, na concentração de 10 cm³ dm-3, aumentou a concentração foliar de Cu e Mn. Observou-se também que as plantas pulverizadas com soluções contendo EP (1 a 10 cm³ dm-3) + micronutrientes apresentaram menor teor de Fe e maior teor de Ca no sistema radicular.
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Marketable chrysanthemums were produced in several different peat types. Only the plants in one of the dredged frozen black peats and one of the milled white peats had a significant lower shoot dry weight than those in one of the sod and milled white peats, respectively. As the N-contents of the fertilized peats show neither deficiency nor excess in nutrient supply, possibly they are not the reason for the differences in shoot dry weight. The air capacity, which is extremely low in both dredged frozen black peats and dropped further during the cultivation period due to decomposition, also cannot explain the differences in shoot dry weight sufficiently (R-2=0.44*; n=12). A close linear negative correlation (R-2=0.77**; n=12) was found between the CAT (VDLUFA) soluble Fe and the shoot dry weight. Therefore, the Fe-contents might be a quality factor of peat to be used as a growing medium.
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Different growing media were compared as to water adsorption and water loss, at Jaboticabal, SP, Brazil, through a three-year period. The objective was to recommend substrates other than tree fern fiber for cultivation of epiphytic orchids. Two treatments of each substrate were used in each sampling: materials stored in laboratory (without use) and materials exposed to conditions of orchid cultivation under laths (used). Generally, the substrates without use adsorbed less water than used substrates. When materials without use were compared, the tree fern fiber retained initially the greatest quantity of water and the blocks of pressed coconut bark, the smallest. However, these blocks gained a great capacity of water adsorption after being used. Charcoal added to the growing media did not cause significant alterations in the studied characteristics. In terms of water relations, the best growing media to substitute the tree fern fiber were composed by blocks of pressed coconut bark or by mixtures of this material with charcoal or Eucalyptus grandis bark. Bark of E grandis alone or in mixture with charcoal did not give good results.
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Marketable chrysanthemums were produced in several different peat types. Only the plants in one of the dredged frozen black peats and one of the milled white peats had a significant lower shoot dry weight than those in one of the sod and milled white peats, respectively. As the N-contents of the fertilized peats show neither deficiency nor excess in nutrient supply, possibly they are not the reason for the differences in shoot dry weight. The air capacity, which is extremely low in both dredged frozen black peats and dropped further during the cultivation period due to decomposition, also cannot explain the differences in shoot dry weight sufficiently (R2=0.44*; n=12). A close linear negative correlation (R2=0.77** n=12) was found between the CAT (VDLUFA) soluble Fe and the shoot dry weight. Therefore, the Fecontents might be a quality factor of peat to be used as a growing medium.
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The change of chemical properties during storage of 12 fertilized bagged peats of different origins at high temperature was investigated. The average values for N, soluble salts and EC decreased significantly, whereas the pH as well as P and K contents changed only slightly. Differences in N were observed between the peats. The contents of CAT soluble N in the two dredged frozen black peats did not change during storage. However, a decrease in N was found when water extraction was used. In the case of the 10 white peats the loss of N differed considerably, but it was independent of the method of peat harvest. The N decrease resulted mainly from reduced levels of NO3-N. Substances damaging to plant growth do not seem to have developed during storage as shown by trials on the germination and the growth of Chinese cabbage. There were no significant differences between the peats, whether stored or not.
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The chemical properties of 12 different peats have been analyzed by methods from VDLUFA (German Association of Agricultural Analysis and Research Institutes) and EN (European Committee for Standardization, Technical Committee 223: Soil improvers and growing media). The analyses of pH (CaCl 2), contents of salts (H 2O), nutrients (CAT), and Na and Cl (H 2O) were carried out by VDLUFA methods, while those of pH (H 2O), EC (H 2O), nutrients (CAT), Na (CAT and H 2O) and Cl (H 2O) according to EN. Ten milled or sod white peats and two dredged frozen black peats of different degrees of decomposition were used. All of them contained high amounts of Mg, while black peats were additionally high in N, Fe and Zn. The pH-values were about the same for all peats. N- and Mn-contents depended most on peat origin. Analytical values of both CAT-methods were in the same range. Extraction with H 2O (EN) as compared to CAT (EN) resulted in considerably lower values.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Pós-graduação em Agronomia (Produção Vegetal) - FCAV
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Pós-graduação em Ciência Florestal - FCA
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Pós-graduação em Ciência Florestal - FCA
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Pós-graduação em Agronomia (Ciência do Solo) - FCAV