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QP-1800型香蕉茎杆切割破片机的研制 被引量:9
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作者 欧忠庆 张劲 +3 位作者 李明 连文伟 李明福 邓干然 《中国农机化》 2007年第6期85-88,共4页
阐述了QP-1800型香蕉茎杆切割破片机的主要结构、工作过程、主要技术参数和试验结果。并分析确定了主要参数、刀具的安装位置和上料时香蕉茎杆的方向。试验结果表明,该机生产率高,切割破开的茎杆可满足刮麻机的工艺要求。
关键词 破片机 设计 参数 香蕉茎杆
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香蕉茎杆纤维提取加工设备的结构改进 被引量:9
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作者 欧忠庆 张劲 +2 位作者 高锦合 黄涛 盛占武 《热带农业科学》 2010年第11期44-47,共4页
通过改进切割破片机的关键部件切割刀具结构和采用不切割茎杆芯部的工艺方案等,使设备功耗和切割阻力大大减少,解决了茎杆撕裂、折断和腐烂茎杆加工问题,大大提高了适应性;通过增加排渣槽上方侧板、刀轮罩内表面横板,增大刀轮罩与刀轮... 通过改进切割破片机的关键部件切割刀具结构和采用不切割茎杆芯部的工艺方案等,使设备功耗和切割阻力大大减少,解决了茎杆撕裂、折断和腐烂茎杆加工问题,大大提高了适应性;通过增加排渣槽上方侧板、刀轮罩内表面横板,增大刀轮罩与刀轮的间隙和增设刀轮罩两端消声孔等改进设计,使刮麻机喂料口风速降低约90.8%,空载噪声降低约6 dB(A),大大减少了茎杆渣飞溅现象,改善了喂料和工作条件,提高了加工效率。 展开更多
关键词 香蕉茎杆 纤维 切割破片机 刮麻
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Effects of Drought Stress on the Photoprotection in Ammopiptanthus mongolicus Leaves 被引量:16
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作者 赵长明 王根轩 《Acta Botanica Sinica》 CSCD 2002年第11期1309-1313,共5页
Ammopiptanthus mongolicus (Maxim.) Cheng f. is one of the evergreen shrubs in the desert region of China. In midday its leaves bear photon flux density over 1 500 μmol·m -2 ·s -1 at natural habit... Ammopiptanthus mongolicus (Maxim.) Cheng f. is one of the evergreen shrubs in the desert region of China. In midday its leaves bear photon flux density over 1 500 μmol·m -2 ·s -1 at natural habitat. They show the obvious phenomenon of photoinhibition. For the study of the effects of drought stress on the major protective mechanism against strong light in A. mongolicus leaves, the diurnal variations of photosynthetic rate and chlorophyll fluorescence parameters were investigated under natural conditions with portable photosynthetic measurement system (CIRAS_1) and portable fluorometer (MFMS_2). The experimental results showed that, under normal and drought stress conditions,the net photosynthetic rate ( Pn ), the primary maximum photochemical efficiency of PSⅡ ( Fv/Fm ) and the quantum efficiency of noncyclic electron transport of PSⅡ ( Φ PSⅡ ) decreased obviously at noon (Figs.2,3A,4B). In comparison with plants under normal condition, under drought stress minimal chlorophyll fluorescence ( Fo ) decreased at first and then increased (Fig.3A), non_photochemical quenching ( NPQ ) quickly increased and sustained at a higher level (Fig.4B). This indicated that the major photoprotective mechanism of A. mongolicus leaves was the xanthophyll cycle_dependent thermal energy dissipation under normal condition, while under drought stress, the major photoprotective mechanism was both the xanthophyll cycle_dependent thermal energy dissipation and the reversible inactivation of PSⅡ reaction center. 展开更多
关键词 Ammopiptanthus mongolicus PHOTOINHIBITION PHOTOPROTECTION chlorophyll fluorescence parameters PSⅡ reaction center
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