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Tong Mingwei 《保鲜与加工》1995,(4):72-75
In this papet,a new deoxidationmethod-jet thermal deoxidation of industrialfeedwater was presented,a preliminary theoretical anlysis of mechamism of deoxidation methed wasmade. Using this experimental method,we studied the deoxidation methed and checked the effect ofthe temperatare pressure fogging state and jet direction on the deoxidation efficiency. 相似文献
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内外遮阳对连栋塑料温室内光环境的影响 总被引:1,自引:2,他引:1
借助热辐射理论 ,在分析太阳辐射在温室内的传播过程基础上 ,建立了一种连栋塑料温室在无遮阳、内遮阳和外遮阳情况下的光环境模型 ,并结合实际情况分析讨论了边缘效应对室内光环境的影响。结果表明 :在不考虑边缘效应时 ,内、外遮阳条件下温室内的光环境基本上无差异 ;而考虑边缘效应时 ,外遮阳具有相对较好的光照环境 ,在遮阳网透射率低时更为明显。实测结果与模拟值的变化规律基本吻合。 相似文献
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Qi Haikun Wang Sai Xu Dongyong Lu Zhengying Zhao Wenchao Hao Yanjie Zhang Xiang Li Wei Han Huanyong Wang Jiangtao Wang Hongzhe Chen Hongzhang Wang Lin Du Mingwei Tian Xiaoli Li Zhaohu 《棉花学报》2013,32(5):425-437
[Objective] The objective of this study was to investigate the stability and universality of cotton chemical topping by applying mepiquat chloride (1,1-dimethyl-piperidinium chloride, DPC) in different cotton-growing regions. [Method] Field experiments were conducted in 2018 at 10 locations in the Yellow River basin (Hejian and Handan, Hebei province; Dezhou and Wudi, Shandong province), the Yangtze River basin (Dafeng, Jiangsu province; Huanggang, Hubei province), and Xinjiang area (Shihezi location I and loacation II, northern Xinjiang and Luntai and Shaya, southern Xinjiang). Local cultivars/lines were used, and the experiments were performed using a randomized complete block design with three or four replicates. Accompanied with typical DPC multi-application in each location, chemical topping was conducted at 10 days before manual topping (T1) or at the same time with manual topping (T2) by applying four dosages of DPC (0, 90, 180, 270 g·hm-2), manual topping was used as the first control and non-topping as the second control. [Result] The time of chemical topping significantly affected cotton plant height (except for the results in Handan, Dezhou and Wudi) and the number of fruit branches (except for the results in Dafeng and Huanggang). It was observed that earlier chemical topping would result in lower cotton plant height and a fewer fruit branches. In Hejian and Shihezi location I, the average plant height across DPC chemical topping at T1 stage was not only lower than that of T2 stage but also 3.3 cm and 4.6 cm lower than that of manual topping, respectively. In most locations, chemical topping at T1 stage increased around two fruit branches per plant compared with manual topping, while in T2 stage the increased fruit branches per plant ranged from 2.3 to 7.7. Also, we found that a higher dosage of DPC resulted in shorter plant height (except for that in Huanggang). In some locations, plant heights of chemical topping with 180 g·hm-2 or 270 g·hm-2 DPC were even shorter than that of manual topping. The number of fruit branches per plant of 0 g·hm-2 DPC increased by 2.4-8.3 compared with manual topping. However, chemical topping with 90-270 g·hm-2 DPC significantly reduced the number of fruit branches compared with 0 g·hm-2 DPC. There were no significant differences in the number of fruit branches among three DPC dosages (90, 180, and 270 g·hm-2). In Handan, seed cotton yield of chemical topping at T2 stage was significantly lower than that of manual topping due to the decreased boll number, which is possibly associated with the high temperature and drought weather after chemical topping. While at other locations, most treatments of chemical topping by using DPC did not produce significant effects on yield. In addition, chemical topping by using DPC did not delay cotton maturity, characterized by their similar boll-opening rate and the first harvest rate to those of manual topping before spraying harvest aids. [Conclusion] Cotton chemical topping with DPC is more stable and universal across different cotton-growing regions. We suggest that 90-180 g·hm-2 DPC could be used at the same time with manual topping for cotton chemical topping. 相似文献
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九里明抗菌镇痛有效部位中PAs的研究 总被引:4,自引:0,他引:4
采用试管分项提取预试法、系统提取预试法和圆形纸层析预试法,进行了九里明植物化学成分预试;利用硅胶G薄板层析法,Ehrlich试剂喷雾显色,对九里明全草及其抗菌镇痛有效部位中双稠吡咯啶生物碱进行了检查。结果发现,九里明全草含有黄酮及其甙类、蒽醌及其甙类、酚类、强心甙、氨基酸、鞣质、皂甙、有机酸和生物碱,不含氰甙、多肽、蛋白质、内酯、油脂和挥发油;九里明全草含有双稠吡咯啶生物碱,但九里明抗菌镇痛有效部位中则未检出双稠吡咯啶生物碱。 相似文献
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普通小麦体细胞无性系R2代变异发生特点 总被引:5,自引:0,他引:5
小麦R2代体细胞无性系变异存在4种发生方式,即合株性稳定谱异,全株分离变异,穗系嵌合稳定变异,穗系嵌合分离变异,其中稳定变异相当普遍、红占总变异的1/3。发生阶段较全株性变异于发生较迟的穗系嵌合变异。不同的变异性状有不同折发生方式。株型、穗型、芒型和叶色变异多为分离变异,熟期为稳定变异,株高,腊质等兼有稳定及分离变异,其中某性状是显性突变的结果,多数分离性状的分离均属简单分离,且箐少见到基因突变的 相似文献
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本文选取河南省15个具有代表性的气象站点,根据其1998—2019年的逐月气象观测资料和TRMM 3B43V7逐月卫星降水数据,运用多种统计指标评估TRMM 3B43V7卫星降水产品在河南省的适用性;采用卫星降水数据代替地面降水资料计算标准化帕尔默干旱指数(SPDI),并寻求最优时间尺度;结合历史干旱事件记载,评估SP... 相似文献
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影响黄河流域棉区北部棉花机械采收的恶性杂草主要有藜、反枝苋、铁苋菜、龙葵、苘麻、田旋花、打碗花和裂叶牵牛等。于2013、2014、2016年研究了这些杂草的化学防除方法。苗蕾期用嘧硫草醚和三氟啶磺隆对藜、反枝苋、龙葵、苘麻、田旋花、打碗花的防效较好,药后30~40 d的株防效超过95%;对铁苋菜和鹅绒藤的防效较差,同期株防效不足85%;对裂叶牵牛的防效居中,同期株防效为84%~94%。花铃期用嘧硫草醚和三氟啶磺隆对上述恶性杂草的防效下降;而乙氧氟草醚的杀草活性较强,药后25~40 d株防效可达100%(裂叶牵牛除外)。草甘膦在苗蕾期、花铃期和吐絮期对各种恶性杂草的株防效均在95%~100%(花铃期的裂叶牵牛除外)。上述处理对棉花均未产生明显药害,对产量也无显著影响。针对黄河流域棉区机采棉田,苗蕾期应用嘧硫草醚或/和三氟啶磺隆,花铃期应用乙氧氟草醚或草甘膦,吐絮期应用草甘膦,可较好地防除恶性杂草。 相似文献