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多粘类芽胞杆菌胞外多糖在微生物农药剂型中的功能研究 被引量:11
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作者 刘振华 魏鸿刚 +2 位作者 李元广 鲍柳 李淑兰 《农药学学报》 CAS CSCD 北大核心 2011年第6期603-607,共5页
为探明生防菌胞外多糖在微生物农药制剂加工中的应用潜力及价值,考察了多糖粗提物对农药载体的助悬浮作用及对生防菌的热保护和紫外保护作用。结果表明:多粘类芽胞杆菌Paenibacillus polymyxa(HY96-2)胞外多糖对硅藻土、高岭土和碳酸钙... 为探明生防菌胞外多糖在微生物农药制剂加工中的应用潜力及价值,考察了多糖粗提物对农药载体的助悬浮作用及对生防菌的热保护和紫外保护作用。结果表明:多粘类芽胞杆菌Paenibacillus polymyxa(HY96-2)胞外多糖对硅藻土、高岭土和碳酸钙3种载体具有明显的助悬浮作用,当载体中多糖粗提物添加量为0.25 g/g时,3种载体的悬浮率可分别提高62.6%、161.8%和284.0%。此外,该胞外多糖对HY96-2芽胞还表现出明显的热保护作用,对HY96-2和海洋芽胞杆菌Bacillus marinus(B-9987)的营养细胞及芽胞表现出明显的紫外保护作用:添加质量体积分数为0.5%的多糖粗提物后,HY96-2芽胞在80℃处理20 min后的存活率比对照提高了31.0%,经紫外(UV-B,290~320 nm)照射6 h后,HY96-2营养细胞和芽胞的存活率分别比对照提高了14.1%和22.6%,B-9987营养细胞和芽胞的存活率分别比对照提高了36.4%和29.5%。该胞外多糖可用作多粘类芽胞杆菌可湿性粉剂加工中的助剂,以替代或减少化学助剂的使用。 展开更多
关键词 多粘类芽胞杆菌 胞外多糖 可湿性粉剂 助悬浮 热保护 紫外保护
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Voltage property analysis of piezoelectric floating mass actuator used in middle ear implant 被引量:1
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作者 刘后广 塔娜 饶柱石 《Journal of Southeast University(English Edition)》 EI CAS 2009年第4期496-500,共5页
Aiming at a kind of middle ear implant(MEI), the driving voltage of a piezoelectric floating mass actuator is analyzed using a 0. 7Pb (Mg1/3Nb2/3) O3-0. 3PbTiO3 ( PMN- 30% PT)stack as a new type of vibrator. For... Aiming at a kind of middle ear implant(MEI), the driving voltage of a piezoelectric floating mass actuator is analyzed using a 0. 7Pb (Mg1/3Nb2/3) O3-0. 3PbTiO3 ( PMN- 30% PT)stack as a new type of vibrator. For the purpose of facilitating the analysis, a simplified coupling model of the ossicular chain and the piezoelectric actuator is constructed. First, a finite element model of a human middle ear is constructed by reverse engineering technology, and the validity of this model is confirmed by comparing the simulated motion of the stapes footplate obtained by this model with experimental measurements. Then the displacement impedance of the incus long process is analyzed, and a single mass-spring-damper equivalent model of the ossicular chain attached with the clamp is derived. Finally, a simplified coupling model of the ossicular chain and the piezoelectric actuator is established and used to analyze the driving voltage property of the actuator. The results show that the required driving voltage decreases with the increase in the frequency, and the maximum required driving voltage is 20. 9 V in the voice frequencies. However, in the mid-high frequencies where most sensorineural hearing loss occurs, the maximum required driving voltage is 3.8 V, which meets the low-voltage and low-power requirements of the MEI. 展开更多
关键词 middle ear implant piezoelectric actuator floating mass driving voltage
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