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61.
Abstract

The impacts of using radio frequency (RF) energy to dry purple-fleshed potatoes were investigated and compared to infrared radiation (IR) and microwave (MW) drying techniques. The gelatinization rate, color, flavor, morphological, and structural characteristics, thermodynamic properties, as well as antioxidant capacity were examined. The results indicated that the drying time of RF (70?min) and MW (21?min) were shorter than IR (105?min). The gelatinization ratio of MW, RF, and IR were 94.4?±?2.0, 88.3?±?1.4, and 64.5?±?1.1%, respectively. The degree of crystallization of purple-fleshed potato powder decreased with all three drying methods. RF-dried potatoes were able to retain higher polyphenols (loss rate: 4.3%), total anthocyanin (3.7%), and total flavonoid content (35.1%), whereas IR showed the lowest retention. The content of polyphenols also decreased significantly. Furthermore, after RF heating, the scavenging of free radicals was higher compared to MW and IR.  相似文献   
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63.
以江苏某企业的石英尾砂为研究对象,基于Jenike剪切理论,分析石英尾砂的物料性质、四棱锥料仓结构对重力流卸料的影响,考虑料仓卸料口尺寸和斜锥角对料仓内物料流动状态的影响,设计石英尾砂料仓及其辅助气力助流系统,且将其应用于江苏某企业试运行。结果表明:石英尾砂的含水率在14%(质量分数)时,物料的内摩擦角最大,物料粒径越细小,物料内摩擦角越大,但达150μm时增势趋于平缓;设计的石英尾砂料仓及其辅助气力助流系统可保障物料装卸料性能和防止物料堵仓;年产2万t石英尾砂的条件下,设计的石英尾砂料仓及其辅助气力助流系统可为企业节省200万元的生产成本,且社会环境效益显著。  相似文献   
64.
Solar thermochemical hydrogen production with energy level upgraded from solar thermal to chemical energy shows great potential. By integrating mid-and-low temperature solar thermochemistry and solid oxide fuel cells, in this paper, a new distributed energy system combining power, cooling, and heating is proposed and analyzed from thermodynamic, energy and exergy viewpoints. Different from the high temperature solar thermochemistry (above 1073.15 K), the mid-and-low temperature solar thermochemistry utilizes concentrated solar thermal (473.15–573.15 K) to drive methanol decomposition reaction, reducing irreversible heat collection loss. The produced hydrogen-rich fuel is converted into power through solid oxide fuel cells and micro gas turbines successively, realizing the cascaded utilization of fuel and solar energy. Numerical simulation is conducted to investigate the system thermodynamic performances under design and off-design conditions. Promising results reveal that solar-to-hydrogen and net solar-to-electricity efficiencies reach 66.26% and 40.93%, respectively. With the solar thermochemical conversion and hydrogen-rich fuel cascade utilization, the system exergy and overall energy efficiencies reach 59.76% and 80.74%, respectively. This research may provide a pathway for efficient hydrogen-rich fuel production and power generation.  相似文献   
65.
In this study, yttrium iron garnet co-doped with Zn and Zr atoms with a chemical formula Y3ZnxZrxFe(5−2x)O12 (x = 0.0-0.3) has been successfully prepared by the solid-state reaction method. The effects of doping concentration on the microstructure, crystal structure, magnetic properties, and dielectric properties of Y3ZnxZrxFe(5−2x)O12 were investigated. The microstructure analysis indicates that co-doping of YIG with Zn and Zr can effectively reduce the grain size of the ceramic. The crystal structure results reveal that the doping concentration of Zn–Zr has substantial influence on the lattice parameters of YIG, such as, increases the lattice constant, crystal cell size, and interplanar spacing. However, the second phase of ZrO2 appears once ≥ 0.15. Additionally, the dielectric properties of YIG ferrite can be regulated using this Zn–Zr co-doping method. Zn–Zr co-doping can improve the dielectric stability and reduce the dielectric loss at high temperature. The magnetization measurement shows that the saturation magnetization is stabilized at x < 0.15, and the magnetic loss is decreased with the increase in the doping concentration. Overall, the findings show that the ceramic with x = 0.1 exhibits better properties included high saturation magnetization (24.607 emu/g), low magnetic loss (0.0025 @ 1 MHz), and relatively low dielectric loss (496 @ 400°C).  相似文献   
66.
Video transmission over IEEE 802.11e wireless networks still shows poor performance for large bandwidth demand and frequently changed environments. Thus, several enhancements of IEEE 802.11e were proposed. On the other hand, big frames and simultaneous sending of adjacent frames always cause packet dropping for buffer overflow. In the past, we proposed an IEEE 802.11e enhancement named DFAA and a content aware mechanism to solve the above problems. The motivation of this paper is to find a proper way to integrate these two mechanisms. A DFAA enhancement (DFAA-E) is proposed to make up the insufficiency of content aware mechanism. Experiments results show that the combination of DFAA-E and content aware mechanism improves the video decoded quality greatly. And its performance can be further enhanced by selecting the suitable settings of certain parameters.  相似文献   
67.
Perovskite ferroelectrics possess the fascinating piezoelectric properties near a morphotropic phase boundary, attributing to a low energy barrier that the results in structural instability and easy polarization rotation. In this work, a new lead-free system of (1-x)BaTiO3-xCaHfO3 was designed, and characterized by a coexistence of ferroelectric rhombohedral-orthorhombic-tetragonal (R-O-T) phases. With the increase amount of CaHfO3 (x), a stable coexistence region of three ferroelectric phases (R-O-T) exists at 0.06  x  0.08. Both large piezoelectric coefficient (d33~400 pC/N), inverse piezoelectric coefficient (d33*~547 pm/V) and planar electromechanical coupling factor (kp~58.2%) can be achieved for the composition with x = 0.08 near the coexistence of three ferroelectric phases. Our results show that the materials with the composition located at a region where the three ferroelectric R-O-T phases coexist would have the lowest energy barrier and thus greatly promote the polarization rotation, resulting in a strong piezoelectric response.  相似文献   
68.
69.
梁佰战  郑力宁  肖波 《特殊钢》2019,40(2):28-30
淮钢采用90 t顶底复吹转炉-LF-RH-200 mm×200 mm连铸-连轧工艺流程试生产了2炉Φ60 mm链轨节用钢15B36Cr(/%:0.30~0.37C、0.15~0.30Si、1.20~1.50Mn、≤0.040P、≤0.0505、0.20~0.40Cr、≤0.25Ni、≤0.35Cu、≤0.06Mo、0.0005~0. 0030B)。通过加严影响淬透性化学成分,控制出钢碳≥0.08%,转炉有效挡渣和下渣检测系统控制下渣,LF炉铝粒和电石渣面脱氧,RH最低真空度处理20~30 min,结晶器电磁搅拌、末端电磁搅拌和连铸低过热度保护浇铸等工艺措施,15B36Cr钢的化学成分稳定控制在内控范围内,除了B粗以外,其他类型非金属夹杂物级别全部控制在1.0以内,淬透性控制在较窄的范围内,试制钢种关键技术指标达到客户和预期设计要求。  相似文献   
70.
苏6井区下石盒子组高分辨率层序地层学特征   总被引:1,自引:0,他引:1  
以高分辨率层序地层学理论和技术方法为指导,在苏里格气田苏6井区地表露头、钻井岩心、测井、地震资料综合研究的基础上,通过基准面旋回结构、叠加样式的沉积动力学分析,将该井区下石盒子组划分为2个长期、5个中期和14个短期旋回层序;并较为详细地讨论了各期旋回层序特征;建立了以长期旋回层序界面和最大洪泛面为等时年代地层框架,以中期旋回层序为等时地层单元的高分辨率层序地层格架;通过分析,认为下石盒子组盒8下段天然气储、盖条件最为有利;有利于储层发育的河道砂体主要出现在长、中期上升半旋回的中、下部,层序界面上相当短期旋回级别的单河道砂体是下石盒子组天然气勘探开发的主要目标。  相似文献   
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