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饲用苎麻机械化收获与农艺融合技术研究 被引量:4
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作者 唐守伟 刘凯 +5 位作者 戴求仲 魏仲珊 刘头明 王延周 朱四元 方友祥 《中国麻业科学》 2018年第5期226-233,共8页
饲用苎麻具有生长快、生物产量高和品质优的特点,是优良的南方饲草品种。然而,饲用苎麻的种植存在三大瓶颈问题:一是适应于南方种植的粗蛋白含量高且耐收割的品种较少;二是适应南方湿润气候作业的收获机械问题突出,饲用苎麻收割全凭手... 饲用苎麻具有生长快、生物产量高和品质优的特点,是优良的南方饲草品种。然而,饲用苎麻的种植存在三大瓶颈问题:一是适应于南方种植的粗蛋白含量高且耐收割的品种较少;二是适应南方湿润气候作业的收获机械问题突出,饲用苎麻收割全凭手工作业,劳动强度大且效率不高;三是适应机械化作业且生产效率高的种植模式缺乏,农机与农艺融合度不高,进而影响了南方饲用苎麻产业化推进。针对上述瓶颈问题,在中国农业科学院创新工程和国家麻类产业技术体系的支持下,与益阳创辉农业机械装备有限公司、德人牧业科技有限公司和湖南省畜牧兽医研究所共同开展了饲用苎麻机械化收获技术研究,研制出具有自主知识产权的履带自走式联合收割机,配套动力65 kW,工作效率达到0. 2 hm^2/h;筛选出适合南方湿润气候种植,生物产量和蛋白含量高,且抗机械碾压的饲用苎麻品种;探索出适应机械化作业的宽窄行种植模式,厢宽450 cm,株距分别为70、30 cm,行距50 cm,适合割幅220 cm的联合收割机往返收割一次。本技术主要创新为双搅龙割台联动,集割倒、输送、切碎和集料箱及自动卸料为一体的组合装置,形成了物料的最佳走向,大幅提高了工作效率;采用橡胶履带式行走装置减少了机械的接地压力,解决了传统轮胎式行走青饲料收割机对饲用苎麻根系损伤的问题;首创旋刀鼓风组合式切碎装置,解决了饲用苎麻在切碎过程中长纤维物易缠绕运动部件的难题;筛选出了适应机械化作业的宽窄行种植模式,实现了饲用苎麻联合收获与农艺融合技术的结合。 展开更多
关键词 饲用苎麻 履带自走式 联合收割机 农艺融合技术
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Selective Adsorption Properties and Stable Solidification of Cs by Insoluble Ferrocyanide Loaded Zeolites
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作者 Yuki Ikarashi Rana Syed Masud +4 位作者 Tomonori Nakai Hitoshi Mimura Eiji Ishizaki M inoru Matsukura Yoshinobu Hosoi 《Journal of Energy and Power Engineering》 2014年第3期461-469,共9页
In Fukushima NPP-1, large amounts of HALW (high-activity-level water) accumulated in the reactor, turbine building and the trench in the facility is treated by circulating injection cooling system. The development o... In Fukushima NPP-1, large amounts of HALW (high-activity-level water) accumulated in the reactor, turbine building and the trench in the facility is treated by circulating injection cooling system. The development of highly functional adsorbents and stable solidification method contributes to the advancement of the decontamination system and environmental remediation. The present study deals with: (1) preparation of insoluble ferrocyanide loaded zeolites; (2) selective uptake of Cs~ in seawater; and (3) estimation of Cs immobilization ratio and stable solidification. Various kinds of Cs-selective composites loaded with insoluble ferrocyanides (CoFC, NiFC) into the zeolites (zeolite A (A51, A-51J), zeolite X (LSX), chabazite (modified chabazite) and natural mordenite (SA-5)) matrices have been prepared to use successive impregnation/precipitation methods by Tohoku University. As for Cs~ adsorption, these composites had relatively large uptake (%) over 95%, distribution coefficients (Kd) above 103 cm3/g and excellent adsorption kinetics even in seawater. The immobilization ratio (%) of Cs for the CoFC saturated with Cs+was estimated at different calcination temperatures up to 1,200 ℃ in advance. The immobilization ratio was less than 0.1% above 1,000℃, indicating that the adsorbed Cs~ ions are completely volatilized and insoluble ferrocyanides had no immobilization ability for Cs. In contrast, the insoluble ferrocyanide-loaded zeolites had excellent Cs immobilization ability; in the case of insoluble ferrocyanide-loaded natural zeolites (NiFC-SA-5, CoFC-modified chabazite), the immobilization ratio was above 99% and 96% even after calcination at 1,000 ℃ and 1,100 ℃, respectively, indicating that nearly all Cs ions are immobilized in the sintered solid form. On the other hand, the immobilization ratio for the insoluble ferrocyanide-loaded A and X zeolites (NiFC-A (A51, A51J), NiFC-X) tended to decrease with calcining temperature; for example, the immobilization ratio for NiFC-X at 1,000 ℃and 1,100 ℃ was estimated to be 74.9% and 55.4%, respectively, and many spots concentrating Cs were observed on the surface. The difference in immobilization behavior between natural zeolites and synthetic ones is probably due to the phase transformation and surface morphology at higher temperature above 1,000 ℃. The stable solidification of insoluble ferrocyanides was thus accomplished by using the excellent Cs immobilization abilities of zeolite matrices (Cs trapping and self-sintering abilities). 展开更多
关键词 CS Sr Zeolites halw (high-activity-level water) insoluble ferrocyanides stable solidification.
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Selective adsorption and stable solidification of radioactive cesium ions by porous silica gels loaded with insoluble ferrocyanides 被引量:2
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作者 YIN XiangBiao WU Yan +2 位作者 MIMURA Hitoshi NIIBORI Yuichi WEI YueZhou 《Science China Chemistry》 SCIE EI CAS 2014年第11期1470-1476,共7页
Development of highly functional cesium selective adsorbents for the decontamination of high-activity-level water(HALW) from the Fukushima NPP-1 accident is very urgent. In order to selectively adsorb the radioactive ... Development of highly functional cesium selective adsorbents for the decontamination of high-activity-level water(HALW) from the Fukushima NPP-1 accident is very urgent. In order to selectively adsorb the radioactive cesium, three kinds of novel porous silica gels loaded with insoluble ferrocyanides(SLFC) were prepared using a successive impregnation/precipitation method. Based on the results of previous research, the SLFC composites have relatively large uptake ratio above 95%, distribution coefficients(Kd) above 103 cm3/g, and excellent adsorption kinetics even in seawater. The solidification results also indicate that zeolites have an excellent Cs immobilization characteristic, gas-trapping and self-sintering abilities, and low leachability. We chose three kinds of SLFC composites to achieve the optimization of solidification by mixing with nine kinds of additives at high temperatures(up to 1200 °C). The Cs contents in the three composites were estimated to be below 30% of the initial contents and decreased with the three stages at calcination temperatures ranging from 25 to 1200 °C. By contrast, the Cs immobilization ratio was markedly lowered by mixing with additives: of those, allophane had the best immobilization result. By increasing the additive ratio to 50 wt%, the Cs immobilization ratio became almost 100% and no volatilization of Cs was detected even after calcination at 1200 °C. This result indicates that calcination of the mixture of SLFC composites after adsorbing Cs+ ions and specific additives under appropriate ratio is effective for stable solidification. 展开更多
关键词 Cs zeolites high-activity-level water(halw insoluble ferrocyanides stable solidification
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