10 research outputs found

    水解植物蛋白(HVP)的酶法制备及应用

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    利用胰蛋白酶水解豆粕粉来制备植物水解蛋白 (HVP) ,确定了胰蛋白酶的最佳水解条件为 :T=5 5℃ ,pH =8 0 ,E/S =2 6 0 0u/g ,固液比 1:8,水解 6h。得到了收率高 ,水溶性好的HVP。还举例说明了酶解HVP液在调味品方面的应

    水解植物蛋白(HVP)的酶法制备及应用

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    利用胰蛋白酶水解豆粕粉来制备植物水解蛋白(HVP),确定了胰蛋白酶的最佳水解条件为:T=55℃,PH=8.0,E/S=2600u/g,固液比1:8,水解6h。得到了收率高,水溶性好的HVP。还举例说明了酶解HVP液在调味品方面的应用

    Folding wing device of wing type submarine

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    本发明涉及一种折叠翼装置,特别涉及一种翼式潜水艇的折叠翼装置。包括支撑架、左主翼、左折叠连杆机构、滑架、驱动机构、右折叠连杆机构及右主翼,其中支撑架和驱动机构设置于艇身上,滑架可沿竖直方向滑动地与支撑架连接;驱动机构与滑架连接,用于驱动滑架上下移动;左主翼和右主翼分别通过左转轴和右转轴连接在艇身的两侧,左主翼通过左折叠连杆机构与滑架连接;右主翼通过右折叠连杆机构与滑架连接。本发明能够将翼式潜水艇艇翼折叠收拢,减小横向空间尺寸,便于运输、回收、停靠等,并起到一定的保护作用

    水解植物蛋白(HVP)的酶法制备及应用

    No full text
    利用胰蛋白酶水解豆粕粉来制备植物水解蛋白(HVP),确定了胰蛋白酶的最佳水解条件为:T=55℃,PH=8.0,E/S=2600u/g,固液比1:8,水解6h。得到了收率高,水溶性好的HVP。还举例说明了酶解HVP液在调味品方面的应用

    水解植物蛋白(HVP)的酶法制备及应用

    No full text
    利用胰蛋白酶水解豆粕粉来制备植物水解蛋白(HVP),确定了胰蛋白酶的最佳水解条件为:T=55℃,PH=8.0,E/S=2600u/g,固液比1:8,水解6h。得到了收率高,水溶性好的HVP。还举例说明了酶解HVP液在调味品方面的应用

    喷射型单重态氧发生器性能研究

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    单重态氧发生器作为氧碘化学激光的核心部件,为化学激光器提供化学能。通过对工业喷射器及旋风分离器的研究,结合产生单重态氧的化学反应环境,进行了大量模拟及设计改进工作,研制了一种新型喷射型单重态氧发生器,并进行了相关实验研究。喷射型单重态氧发生器利用喷嘴能够产生比传统发生器类型更多的气液表面,获得足够的反应效率,可以大幅度降低发生器液体使用量,从而减小发生器辅助系统,提高体积效率。为满足O2(1△)停留时间短及分离效率高的要求,利用气液两相喷射的高初速度以旋风分离器完成气液分离。新型发生器氯气利用率可达97%~99%,其O2(1△)产率为40%~50%

    均匀液滴氧发生器液流破断的线性分析

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    在均匀液滴氧发生器的研究过程中,液滴的形成是关键技术。利用压电换能器对液流施加扰动,初始扰动沿液流表面呈指数增长,直到将液流夹断生成液滴。通过理论分析,发现在影响液流表面增长率的诸多参数中,碱性过氧化氢溶液(BHP)表面张力的增加和液体分配板板孔直径的减小能够增大扰动增长率,其他参数的改变对增长率的影响非常小。通过分析还发现,BHP液体的喷射流速不同,要取得最大增长率的外界扰动频率也随之变化,外界施加扰动的频率随液流喷射流速的增大而增大。这些结果为均匀液滴氧发生器的实验研究提供有力的参考依据

    JUNO Sensitivity on Proton Decay pνˉK+p\to \bar\nu K^+ Searches

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    The Jiangmen Underground Neutrino Observatory (JUNO) is a large liquid scintillator detector designed to explore many topics in fundamental physics. In this paper, the potential on searching for proton decay in pνˉK+p\to \bar\nu K^+ mode with JUNO is investigated.The kaon and its decay particles feature a clear three-fold coincidence signature that results in a high efficiency for identification. Moreover, the excellent energy resolution of JUNO permits to suppress the sizable background caused by other delayed signals. Based on these advantages, the detection efficiency for the proton decay via pνˉK+p\to \bar\nu K^+ is 36.9% with a background level of 0.2 events after 10 years of data taking. The estimated sensitivity based on 200 kton-years exposure is 9.6×10339.6 \times 10^{33} years, competitive with the current best limits on the proton lifetime in this channel

    JUNO sensitivity on proton decay pνK+p → νK^{+} searches

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    JUNO sensitivity on proton decay p → ν K + searches*

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    The Jiangmen Underground Neutrino Observatory (JUNO) is a large liquid scintillator detector designed to explore many topics in fundamental physics. In this study, the potential of searching for proton decay in the pνˉK+ p\to \bar{\nu} K^+ mode with JUNO is investigated. The kaon and its decay particles feature a clear three-fold coincidence signature that results in a high efficiency for identification. Moreover, the excellent energy resolution of JUNO permits suppression of the sizable background caused by other delayed signals. Based on these advantages, the detection efficiency for the proton decay via pνˉK+ p\to \bar{\nu} K^+ is 36.9% ± 4.9% with a background level of 0.2±0.05(syst)±0.2\pm 0.05({\rm syst})\pm 0.2(stat) 0.2({\rm stat}) events after 10 years of data collection. The estimated sensitivity based on 200 kton-years of exposure is 9.6×1033 9.6 \times 10^{33} years, which is competitive with the current best limits on the proton lifetime in this channel and complements the use of different detection technologies
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