993 resultados para Paraná pine nut


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Balanced fertilization is important for plant growth. There is little information on physic nut (Jatropha curcas L.) and tests with the fertilization of the species are very recent. This study evaluated the initial growth of physic nut seedlings in response to NPK rates to Quartzarenic Neossol in a greenhouse and estimated P and K critical soil levels and N, P and K in shoot dry matter after 120 days of evaluation. The treatments were arranged in a randomized, fractional factorial design (4 x 4 x 4)½, totalizing 32 treatments with three replicates, 96 experimental plots and N rates (0, 75, 150 and 300 mg dm-3) as urea; P rates (0, 45, 90 and 180 mg dm-3) as triple superphosphate and K rates (0, 50, 100 and 200 mg dm-3) as potassium chloride. After 120 days, the plants were harvested and some variables evaluated: plant height, stem diameter, shoot and root dry weight, macro and micronutrient levels in plant shoots, and soil chemical properties. The physic nut seedlings responded to NPK fertilizer in the initial growth phase; the response to N was negative. The recommended P and K rates were 25 and 67 mg dm-3, respectively. The critical levels, corresponding to the recommended P rate were 13 and 74 mg dm-3 for K in soil (Mehlich-1). The N, P and K levels in the shoot dry matter of physic nut were 37.4, 2.1 and 35.7 g kg-1, respectively.

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Apesar de ainda existirem ecossistemas altomontanos no Paraná em excelente estado de conservação, iminentes ameaças antrópicas e a fragilidade desses ambientes têm sido motivos de preocupação. Este trabalho teve os seguintes objetivos: caracterizar solos de área representativa dos campos e florestas altomontanas ocorrentes na Serra da Igreja; apontar quais os possíveis fatores pedológicos que resultam nessas diferentes fitotipias; e caracterizar algumas das suas funcionalidades ambientais (estoque de C e de água). Os principais solos encontrados nos campos foram Organossolos Fólicos fíbricos/sápricos (líticos e típicos) e Organossolos Háplicos fíbricos/sápricos (típicos e térricos) e, nas florestas altomontanas, Gleissolos Háplicos alíticos típicos. Ambas as classes são de solos distróficos, extremamente ácidos, com alta saturação por Al trocável e altos teores de C orgânico total. A distribuição das florestas altomontanas está fortemente controlada por vales e colos de cumeeiras, os quais estão sujeitos a processos morfogenéticos que resultam em solos com horizontes minerais. Já os campos estão estabelecidos em topos, onde processos pedogenéticos promoveram espessamento de horizontes hísticos, os quais, em função de suas características intrínsecas, aliadas aos fortes ventos, parecem conter com sucesso o avanço da floresta sobre o campo. Os estoques de C por unidade de área nos solos dos campos são superiores aos dos solos das florestas altomontanas, sendo ambos considerados altos quando comparados aos dados de outros ecossistemas, sendo duas a três vezes maiores do que os encontrados em solos de ecossistemas de altitudes mais baixas na mesma latitude. Também foi constatada alta capacidade de retenção hídrica devido à porosidade total verificada nos horizontes hísticos, os quais têm o potencial de reter em média 12 vezes seu volume em água.

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In Brazil, plant-available micronutrients in the soil can be determined by several chemical extractants, the most common of which are dilute acid and chelating solutions. The purpose of this study was to assess the extractants 0.1 mol L-1 HCl, Mehlich-1, Mehlich-3 and DTPA for analysis of the micronutrients Cu, Zn, Fe, and Mn in soils from the state of Paraná. In samples from 12 soils (0-20 cm layer), wheat was planted (Triticum aestivum), grown for 42 days after emergence, and then bean (Phaseolus vulgaris) for 38 days. At the end of each planting period, the soil was sampled again. All extractants tested to assess the availability of Cu, Zn, Fe, and Mn correlated with each other. The efficiency of the extractants HCl, Mehlich-3 and DTPA in assessing plant-available Cu was similar, unlike Mehlich-1, which proved less efficient. The extractants HCl, Mehlich-1 and Mehlich-3 were less efficient in estimating plant-available Zn and Fe, and the most indicated extractant is DTPA. The efficiency of the extractants HCl, Mehlich-1, Mehlich-3 and DTPA in assessing plant-available Mn in soils from Paraná was similar.

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In recent years, physic nut (Jatropha curcas L.) has attracted attention because of its potential for biofuel production. Although it is adapted to low-fertility soils, physic nut requires soil acidity corrections and addition of a considerable amount of fertilizer for high productivity. The objective of this research was to evaluate the effectiveness of arbuscular mycorrhizal fungi (AMF) (control without AMF inoculation, Gigaspora margarita inoculation or Glomus clarum inoculation) on increasing growth and yield of physic nut seedlings under different rates of P fertilization (0, 25, 50, 100, 200, and 400 mg kg-1 P soil) in greenhouse. The experiment was arranged in a completely randomized, block in a factorial scheme design with four replications. The physic nut plants were harvested 180 days after the beginning of the experiment. Mycorrhizal inoculation increased physic nut growth, plant P concentration and root P uptake efficiency at low soil P concentrations. The P use quotient of the plants decreased as the amount of P applied increased, and the P use efficiency index increased at low P levels and decreased at high P levels. Mycorrhizal root colonization and AMF sporulation were negatively affected by P addition. The highest mycorrhizal efficiency was observed when the soil contained between 7.8 and 25 mgkg-1 of P. The physic nut plants responded strongly to P application, independent of mycorrhizal inoculation.

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O sistema plantio direto (PD) intensifica as perdas de N da ureia por volatilização, em comparação ao preparo convencional (PC). O objetivo deste estudo foi avaliar a magnitude desse efeito nas condições de temperatura amena e primavera chuvosa da região Centro-Sul do Paraná, bem como avaliar a influência de diferentes plantas de cobertura invernais (aveia-branca e ervilhaca comum) nas perdas de amônia (NH3) em PD. O estudo sobre o efeito dos preparos de solo foi realizado em experimento de longa duração (28 anos), e a avaliação das plantas de cobertura foi feita em experimento implantado especificamente com esse fim em área em PD por longo período (> 15 anos). Em ambos os experimentos cultivou-se milho. A ureia foi aplicada nas doses de 0, 80 e 160 kg ha-1 de N em apenas uma aplicação no experimento de preparos, e nas doses de 0, 100 e 200 kg ha-1 de N, divididas em duas aplicações, no experimento de plantas de cobertura. A volatilização de amônia foi avaliada durante 20 dias após a aplicação da ureia, utilizando coletores semiabertos estáticos. A atividade da urease no solo foi avaliada em ambos os experimentos. As maiores taxas de perda de NH3 ocorreram nos cinco dias que sucederam à aplicação de ureia. As perdas acumuladas atingiram 18 % da dose aplicada no PD e 3 % no PC, e as maiores perdas no PD podem ser parcialmente relacionadas à maior atividade da urease na camada superficial do solo. A volatilização de amônia não foi alterada pelo tipo de planta de cobertura. O parcelamento da adubação nitrogenada em cobertura por si só não garante a diminuição das perdas de N por volatilização, a qual é relacionada à ocorrência de chuva no período imediatamente posterior à aplicação da ureia.

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In Brazil extensive areas are covered with pine forests, planted for pulp and paper production. This industry generates solid alkaline waste, such as dregs. The application of this dregs to forest soils is an alternative for soil acidity correction and plant nutrient supply, as well as a solution for its proper disposal. The purpose of this study was to compare the residual effect of surface application of dregs and dolomitic lime on (a) changes in the physical and chemical properties of an acidic soil and (b) pine tree development. The experiment was carried out in 2004 in Bocaina do Sul, Santa Catarina, consisting of the application of increasing dreg and lime rates to a Pinus taeda L. production area, on a Humic Cambisol, in a randomized block design with four replications and 10 x 10 m plots. The treatments consisted of levels of soil acidity amendments corresponding to the recommendations by the SMP method to reach pH 5.5 in the 0-20 cm layer, as follows: no soil amendment; dregs at 5.08 (1/4 SMP), 10.15 (1/2 SMP) and 20.3 Mg ha-1 (1 SMP); and lime at 8.35 (1/2 SMP) and 16.7 Mg ha-1 (1 SMP). Soil layers were sampled in 2010 for analyses of soil chemical and physical properties. The diameter at breast height of the 6.5 year old pine trees was also evaluated. Surface application of dregs improved soil chemical fertility by reducing acidity and increasing base saturation, similar to liming, especially in surface layers. Dregs, comparable to lime, reduced the degree of clay flocculation, but did not affect the soil physical quality. There was no effect of the amendments on increase in pine tree diameter. Thus, the alternative to raise the pH in forest soils to 5.5 with dregs is promising for the forestry sector with a view to dispose of the waste and increase soil fertility.