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31.
A field experiment was conducted to investigate the effects on soil properties of solarization combined with rice bran additive.
The treatments included control (bare soil), black polyethylene film mulch (BM), clear polyethylene film mulch (CM), rice
bran mixture (RBMx), rice bran mulch (RBM), rice bran mixture and black polyethylene film mulch (RBMx + BM), rice bran and
black polyethylene film mulch (RBM + BM), rice bran mixture and clear polyethylene film mulch (RBMx + CM), and rice bran and
clear polyethylene film mulch (RBM + CM). Initially, 15 kg m−2 of rice bran was applied to each treatment as the organic amendment. A cover of black or clear polyethylene film was then
used to begin the soil solarization process. Approximately 49 days later, the polyethylene film was removed and five broccoli
seedlings per replication were planted 6 weeks later. The combination of rice bran mixture with the clear/transparent polyethylene
film mulch (RBMx + CM) raised both the mean and maximum soil temperatures over 0–30 cm of soil depth. Maximum soil temperature
under the RBMx + CM treatment was the highest of all treatments (77°C) and were about 32°C greater than under the control,
while it was only 52°C under RBM + BM treatment. Combining rice bran with clear/transparent polyethylene film mulch during
the soil solarization process is recommended for raising soil temperatures. Further investigation over a longer period of
soil solarization process with rice bran–organic amendment and polyethylene film mulch combinations is required to more accurately
determine their effects on soil properties and crop production. 相似文献
32.
M.B. Muli D. Kengo A. Mzingirwa R. Musila 《East African Agricultural and Forestry Journal》2017,82(2-4):168-174
The average annual rainfall in coastal Kenya is 450–700?mm per annum in most places while the total annual evapotranspiration is 1200–1800?mm. In arid and semi-arid lands (ASALs), farmers grow maize varieties for medium to high rainfall zones without considering the need for water harvesting to enhance crop yield. To address the moisture constraint, a study was conducted to evaluate the performance of drought tolerant maize varieties under different water harvesting technologies (Zai pits, tied ridges and conventional). The treatments were laid out in a split - plot design with water harvesting methods as the main plots and maize varieties as the sub-plots. The response of four maize varieties (DK8031, DUMA 43, KDV1 and PH4) to three water harvesting technologies was evaluated. Variety Duma 43 produced the highest grain yield (P < 0.05) compared to the other varieties whereas yields for Zai pits and tied ridges were higher (P < 0.05) than for conventional treatment. Economic analysis revealed a higher gross margin for tied ridges than for Zai pits. Conventional planting showed a negative gross margin under the ASAL conditions. The variety DUMA 43 was selected for yield and cob size components whereas PH4 was selected for grain recovery when pounded and high stover biomass. 相似文献
33.
Reactivity of wood charcoal with ozone 总被引:8,自引:0,他引:8
We investigated the resistance of wood charcoal against ozone and estimated the half-life of the charcoal in air. The weight of wood charcoal prepared by the carbonization of Fagus crenata sawdust at 400°C (C-400) was not affected with up to 8.5% ozone while the charcoal prepared at 1000°C (C-1000) burned with 4.9% ozone. Pores with a diameter of approximately 100–200nm were observed on the surface of ozone-treated C-1000 by scanning electron microscopy, although no pores were found in ozone-treated C-400. The peak positions of the C1s spectra and the full width at half maximum of X-ray photoelectron spectrum peaks suggest that C-400 has an amorphous structure composed of aliphatic carbons and small aromatic molecules while C-1000 and activated charcoal (AC) are polyaromatic. It is likely that the aromatic layers of C-1000 and AC were destroyed and the edge carbon atoms were removed as CO or CO2 by ozone oxidation. We estimated the half-life of C-1000 with ozone in air to be about 50000 years by assuming that the weight of C-1000 decayed exponentially. Thus, it is suggested that wood charcoal is stable on a geological time scale. 相似文献
34.
Olov Karlsson Tsutomu Ikeda Takao Kishimoto Kengo Magara Yuji Matsumoto Shuji Hosoya 《Journal of Wood Science》2000,46(3):263-265
Evidence for the presence of lignin-carbohydrate bonds of the benzylic ether type in wood and pulps may be obtained by use of ozonation treatment to selectively degrade the lignin. It was found that the benzyl ether bond in 3-(4-hydroxy-3-methoxyphenyl)-2-(2-methoxy-phenoxy)-3-(methyl--d-glucopyranosid-6-O-yl)-1-propanol was rather stable during ozonation in acetic acid-water-methanol 1631 at 0°C. The corresponding acid, 3,4-dihydroxy-2-(methyl--d-glucopyranosid-6-O-yl)-butanoic acid, was found to be the major reaction product. The use of ozonation followed by acid hydrolysis in connection with studies of lignincarbohydrate linkages is briefly discussed.Part of this paper was presented at the 10th ISWPC, Yokohama, 1999 相似文献
35.
We analyzed the histopathological changes and the number of motor neurons (MNs) in the lumbar spinal cord of Cu/Zn superoxide dismutase transgenic (SOD1G93ATg) mice, which are frequently used as a disease model of amyotrophic lateral sclerosis (ALS). In SOD1G93ATg mice, hyaline inclusions and foamy vacuoles in the neuronal cell body were observed at 7 weeks of age before neurologic symptoms, and large vacuoles, spheroid formation, and nerve cell aggregation became prominent after 13 weeks of age. The number of healthy MNs was 28.7 to 37.1 cells/animal in wild-type mice and 9.3 to 13.6 cells/animal in transgenic (Tg) mice. Furthermore, the number of MNs, including degenerative neurons, in Tg mice was 27.3–36.1 cells/animal at 18 weeks of age and 17.8–19.6 cells/animal at 21 weeks of age. The present results provide useful information for the development of drugs in ALS treatment. 相似文献
36.
The purpose of this study was to investigate the behavior of lignin and carbohydrates in kraft pulps during sulfuric acid bleaching. Beech kraft pulp and red pine kraft pulp were bleached with dilute sulfuric acid at pH 1.3 with addition of sodium nitrate and sodium nitrite at 100°C for 1 h. The pulps were then extracted with aqueous sodium hydroxide solution at 70°C for 1 h. Lignin and carbohydrates in the acid effluents and the alkali effluents were analyzed. The carbohydrate compositions of unbleached and bleached kraft pulps were also determined. The residual lignin in kraft pulp was degraded to a molecular size similar to that of milled wood lignin during sulfuric acid bleaching without additives, and it was further degraded to a much smaller molecular size during sulfuric acid bleaching with additives. It was found that the amount of carbohydrate dissolved in the bleach effluents were only about 1 of the dry weight of the kraft pulp under these bleaching conditions. The carbohydrates dissolved during bleaching were mostly of hemicellulose origin.Part of this report was presented at the 8th International Symposium on Wood and Pulping Chemistry, Helsinki, July 1995 相似文献
37.
The effect of water stress in regulated deficit irrigation on soybean yield (Glycine max [L.] Merr.)
R. A. Bustomi Rosadi Afandi Masateru Senge Kengo Ito John T. Adomako 《Paddy and Water Environment》2007,5(3):163-169
The objective of this research was to investigate the effect of water stress in regulated deficit irrigation (RDI) on the
yield of soybean growing on Ultisol soil. This research was conducted under plastic house on the experimental farm of Lampung Polytechnique from August to November
2004. The water stress treatments in regulated deficit irrigation were ET1 (1.0 × ETc), ET2 (0.8 × ETc), ET3 (0.6 × ETc), ET4 (0.4 × ETc) and ET5 (0.2 × ETc), arranged in a randomized block design with four replications. ETc means crop evapotranspiration under standard condition, which was well watered. For example, the ET2 (0.8 × ETc) treatment means that the amount of supplied water per a day is the same as the crop adjustment evapotranspiration (ETcadj) with the value 0.8 of water stress coefficient (K
s). The RDI treatments were carried out just at vegetative phase and its treatments were stopped at the beginning of flowering
phase, and afterwards the treatments were watered at 1.0 × ETc. The results showed that since week II, the soybean experienced stress throughout the growth period except ET2 treatment. ET2 treatment started to be stressed at week V and continued to be stressed until the harvest time. At the ET3 treatment, the critical water content (θc) of soybean was reached at week II, and the θc was 0.24 m3/m3 on the average. The RDI at vegetative period significantly affected the yield. The highest yield was ET1 (35.2 g/plant), followed by ET2 (31.0 g/plant), ET3 (18.1 g/plant), ET4 (7.6 g/plant), and ET5 (3.3 g/plant). The optimal water management of soybean with the highest yield efficiency was regulated deficit irrigation
with water stress coefficient (K
s) of 0.80 for vegetative phase. 相似文献
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Kengo Ishimaru Tomas Vystavel Paul Bronsveld Toshimitsu Hata Yuji Imamura Jeff De Hosson 《Journal of Wood Science》2001,47(5):414-416
Conclusions Various carbon structures were observed in the wood charcoal sample: the well known pyrolytic graphite layers, onion-like particles, and diamond structure. It is suggested that wood charcoal carbonized at 700°C is a complex of various carbon structures. The pore structure was observed by electron microscopy, and it is supposed that the microstructure and pores are closely related. Further study of the microstructure during the carbonization process of charcoal is necessary to better understand the characteristic functions of wood charcoal for utilizing it as a source of carbon material.A summary of this study was presented at the 51st annual meeting of the Japan Wood Research Society, Tokyo, April 2001, and the 50th annual meeting of the Society of Materials Science, Osaka, May 2001 相似文献