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961.
Recent outbreaks of foodborne illness have been linked to the consumption of contaminated sprouts. The spent irrigation water used to irrigate sprouts can carry many microorganisms, including pathogenic strains of Escherichia coli and Salmonella enterica. These pathogens are believed to originate from the seeds. The U.S. Food and Drug Administration recommends that sprout producers conduct microbiological testing of spent irrigation water from each production lot at least 48 h after seeds have germinated. Microbial analysis for the detection of Salmonella is labor-intensive and takes days to complete. A rapid and automated fiber-optic biosensor assay for the detection of Salmonella in sprout rinse water was developed in this study. Alfalfa seeds contaminated with various concentrations of Salmonella Typhimurium were sprouted. The spent irrigation water was assayed 67 h after alfalfa seed germination with the RAPTOR (Research International, Monroe, Wash.), an automated fiber optic-based detector. Salmonella Typhimurium could be positively identified in spent irrigation water when seeds were contaminated with 50 CFU/g. Viable Salmonella Typhimurium cells were also recovered from the waveguides after the assay. This biosensor assay system has the potential to be directly connected to water lines within the sprout-processing facility and to operate automatically, requiring manual labor only for preventative maintenance. Therefore, the presence of Salmonella Typhimurium in spent irrigation water could be continuously and rapidly detected 3 to 5 days before the completion of the sprouting process.  相似文献   
962.
Immunological properties of a 50% ethanol/aqueous extract of cheonggukjang (CGJ), a fermented soybean product, were investigated as a potent, orallyavailable, and cost-effective immunoadjuvant. Different from cholera toxin, a widely used experimental oral adjuvant with effects limited to mucosal immunity in the gut, oraladministration of the CGJ extract had positive effects on both mucosal and systemic immunity. Administration of keyhole limpet hemocyanin (KLH) with the CGJ extract resulted in hyper-production of KLH-specific IgA in the gut and KLH-specific IgG in the serum. Oral-administration of the CGJ extract resulted in promotion of both Th1 and Th2 immune responses, thus eliminating concerns over an imbalanced Th1 and Th2 immune bias that is often observed upon administration of other commonly used immunoadjuvants. Ethanol/aqueous extraction of CGJ resulted in enrichment of polyphenolic compounds, including flavonoids, providing a potential extra health benefit.  相似文献   
963.
Microcapsules containing thyme oil were prepared by in situ polymerization, using melamine–formaldehyde prepolymer as a wall material and 3 different emulsifiers (pluronic F‐127, tween 80, and sodium lauryl sulfate [SLS]). The general characteristics and release behavior of microcapsules, and their repellent effect against insects were investigated. The morphology of microcapsules using SLS was spherical shape with smooth surface. Microcapsules began to degrade at 150 °C. The particle size ranged from 1 to 10 μm and the loading efficiency of thyme oil was clearly affected by the emulsifier type. The highest loading efficiency appeared in microcapsules using SLS, which have good thermal resistance and smooth surface. The release rate of thyme oil from microcapsules was not only dependent on the storage temperature but also emulsifier type and microcapsules showed the sustained release properties for a long time. Diets, which were mixed with encapsulated thyme oil, expressed high insect repellent efficacy over 90% for 4 wk. Practical Application : Essential oil has various pest‐control characteristics, including repellent, ovicidal, and antifeedant efficacy. This work showed the sustained release properties and long‐lasting repellency of encapsulated essential oil. The results suggest that the great potential of essential oil microcapsules can be applied in coating or printing of food packaging materials for the insects repelling effects.  相似文献   
964.
Physical factors affecting the production of sisomicin byMicrornonospora inyoensis are presented. A sisomicin productivity was affected significantly by both the degree of aeration and the type of impeller used. In addition, the value of impeller tip speed was found to be an important factor in the sisomicin production. Therefore, scale-up on the basis of impeller tip speed was attempted and satisfactory results were obtained.  相似文献   
965.
Summary The complex formed between copper(II) and a polymeric ligand derived from poly-N5-(3-hydroxypropyl)-l-glutamine (PHPG) has been investigated by circular dichroism. It was found that the confonnational changes of PHPG occurred by forming complexes with Cu(II) according to the Cu/HPG molar ratios and different pH values. The helical structure was induced in PHPG by bound Cu(II) at Cu/peptide ratios< 1/16, while the structure changed from -helix to the random coil and -form at Cu/peptide ratios >1/16. It was also found that complex formation between Gu(II) and PHPG occurred above pH 9.5.  相似文献   
966.
The simple criterion proposed by Chandnani and Epstein (1984, 1986) for stable spouting, dor/dp ≤ 25.4, is shown to give a good separation between gas-solid systems which form permanent jets and those that bubble, for a wide range of experimental data reported in the literature. The criterion is suggested as a necessary but not sufficient condition for permanent jet formation in fluidized, spout-fluid and spouted beds.  相似文献   
967.
For the measurement of transmission loss of the silencers which have mean flow, the noise levels of signals depicted by microphone usually prohibit accurate measurements of the transmission loss. To overcome this difficulty, static pressure compensation technique has been developed to increase the dynamic range of the microphones, resulting accurate measurement of transmission loss in the presence of high noise level. Series of experiments to investigate the acoustic characteristics of expansion chamber with mean flow has been performed using the pressure compensated microphones. Results demonstrate: (1) frequency shift due to the presence of mean flow, (2) effect of length, diameter, offset length and twisting angles to the transmission loss of expansion chamber with and without mean flow (up to 50m/sec), (3) relation between the proposed parameter ‘aspect ratio’ and number of peaks of transmission loss in low frequency region.  相似文献   
968.
基于活动轮廓的运动目标的动态分割   总被引:7,自引:0,他引:7       下载免费PDF全文
提出了一种基于活动轮廓的运动目标动态分割方法。利用B样条曲线表示活动轮廓,导出了B样要曲线控制点的运动模型,从而使得活动轮廓能自动地跟踪运动目标的边缘,实现运动目标的动态分割。同时我们还提出了控制点数目的自动确定方法。实验结果验证了该方法的有效性。  相似文献   
969.
Intermediate temperature solid oxide fuel cell cathode materials (Ba, Sr)CoxFe1−xO3−δ [x = 0.2–0.8] (BSCF), were synthesized by a glycine-nitrate process (GNP) using Ba(NO3)2, Sr(NO3)2, Co(NO3)2·6H2O, and Fe(NO3)3·9H2O as starting materials and glycine as an oxidizer and fuel. Electrolyte-supported symmetric BSCF/GDC/ScSZ/GDC/BSCF cells consisting of porous BSCF electrodes, a GDC buffer layer, and a ScSZ electrolyte were fabricated by a screen printing technique, and the electrochemical performance of the BSCF cathode was investigated at intermediate temperatures (500–700 °C) using AC impedance spectroscopy. Crystallization behavior was found to depend on the pH value of the precursor solution. A highly acidic precursor solution increased the single phase perovskite formation temperature. In the case of using a precursor solution with pH 2, a single perovskite phase was obtained at 1000 °C. The thermal expansion coefficient of BSCF was gradually increased from 24 × 10−6 K−1 for BSCF (x = 0.2) to 31 × 10−6 K−1 (400–1000 °C) for BSCF (x = 0.8), which resulted in peeling-off of the cathode from the GDC/ScSZ electrolyte. Only the BSCF (x = 0.2) cathode showed good adhesion to the GDC/ScSZ electrolyte and low polarization resistance. The area specific resistance (ASR) of the BSCF (x = 0.2) cathode was 0.183 Ω cm2 at 600 °C. The ASR of other BSCF (x = 0.4, 0.6, and 0.8) cathodes, however, was much higher than that of BSCF (x = 0.2).  相似文献   
970.
With the aim of producing hydrogen at low cost and with a high conversion efficiency, steam methane reforming (SMR) was carried out under moderate operating conditions in a Pd-based composite membrane reactor packed with a commercial Ru/Al2O3 catalyst. A Pd-based composite membrane with a thickness of 4–5 μm was prepared on a tubular stainless steel support (diameter of 12.7 mm, length of 450 mm) using electroless plating (ELP). The Pd-based composite membrane had a hydrogen permeance of 2.4 × 10?3 mol m?1 s?1 Pa?0.5 and an H2/N2 selectivity of 618 at a temperature of 823 K and a pressure difference of 10.1 kPa. The SMR test was conducted at 823 K with a steam-to-carbon ratio of 3.0 and gas hourly space velocity of 1000 h?1; increasing the pressure difference resulted in enhanced methane conversion, which reached 82% at a pressure difference of 912 kPa. To propose a guideline for membrane design, a process simulation was conducted for conversion enhancement as a function of pressure difference using Aspen HYSYS®. A stability test for SMR was conducted for ~120 h; the methane conversion, hydrogen production rate, and gas composition were monitored. During the SMR test, the carbon monoxide concentration in the total reformed stream was <1%, indicating that a series of water gas shift reactors was not needed in our membrane reactor system.  相似文献   
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