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微咸水喷灌对作物影响的研究进展 被引量:8
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作者 孙泽强 董晓霞 +2 位作者 王学君 郑东峰 刘兆辉 《中国生态农业学报》 CAS CSCD 北大核心 2011年第6期1475-1479,共5页
微咸水喷灌条件下,作物同时受到土壤盐分和喷灌水盐分的双重影响。大部分作物通过叶片吸收盐分的速率与盐分浓度和喷水历时基本上呈线性函数关系;同时,喷灌过程中不仅要监测灌溉水的电导率,而且与其他水源混合时也要监测离子组成,尽量降... 微咸水喷灌条件下,作物同时受到土壤盐分和喷灌水盐分的双重影响。大部分作物通过叶片吸收盐分的速率与盐分浓度和喷水历时基本上呈线性函数关系;同时,喷灌过程中不仅要监测灌溉水的电导率,而且与其他水源混合时也要监测离子组成,尽量降低Mg2+、Cl-和Na+的含量。喷灌频率的增加比喷水历时的增加更能增加作物盐分的吸收,并加重对作物的损伤。微咸水喷灌后短时间的淡水冲洗可以减少作物叶片对盐分的吸收。微咸水喷灌显著降低成熟植被的生物量和作物累积耗水量,造成作物一定程度的减产,而且具有累积效应;但作物产量和叶片汁液离子浓度没有明显的相关关系。今后,应重点研究以下5个方面的问题:(1)微咸水喷灌下作物的耐盐性评价指标,建立相应的评价体系;(2)选育耐微咸水喷灌的品种,尤其是用于草场恢复重建、城市绿化、盐渍土改良等耐盐牧草、草坪草的选育;(3)制定与微咸水喷灌相适应的灌溉制度,研究微咸水喷灌条件下作物叶片上和土壤中盐分的淋洗对微咸水喷灌具有重要的作用;(4)微咸水喷灌对作物影响的区域性和时效性,应建立微咸水喷灌对作物产量影响的区域性评价和研究长期微咸水喷灌对作物的影响;(5)微咸水喷灌对土壤盐分积累及分布的影响。 展开更多
关键词 微咸水 喷灌 盐分吸收 作物产量 耐盐性评价
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烤池沼公鱼加工工艺的研究 被引量:7
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作者 程静 刘学军 《肉类工业》 2014年第2期13-16,共4页
以池沼公鱼为原料,采用先低温干燥,然后浸渍调味,最后高温烘烤的方法制备烤鱼。以水分含量、复水率、盐分吸收率及感官评分作为评价指标,通过单因素试验确定干燥和烘烤的适宜条件,在此基础上进行正交试验,得出烤公鱼的最佳工艺条件为:... 以池沼公鱼为原料,采用先低温干燥,然后浸渍调味,最后高温烘烤的方法制备烤鱼。以水分含量、复水率、盐分吸收率及感官评分作为评价指标,通过单因素试验确定干燥和烘烤的适宜条件,在此基础上进行正交试验,得出烤公鱼的最佳工艺条件为:干燥温度为60℃,干燥时间为4.0h,烤制温度为170℃,烤制时间为18min。 展开更多
关键词 池沼公鱼 水分含量 复水率 盐分吸收 感官评分
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苗木样品等因素对荧光物质的影响
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作者 尚敏克 姜国斌 矢幡久 《辽宁农业科学》 2002年第3期13-15,共3页
通过对比实验研究了高分子荧光物质 (PTS)与 pH、温度、共存离子以及植物组织特性的关系。结果表明 :在质外体液流测定等利用PTS作为示踪剂的试验中 ,对PTS进行测定时特别要注意以下两点 :其一 ,应在对荧光强度有最大敏感度的pH条件下... 通过对比实验研究了高分子荧光物质 (PTS)与 pH、温度、共存离子以及植物组织特性的关系。结果表明 :在质外体液流测定等利用PTS作为示踪剂的试验中 ,对PTS进行测定时特别要注意以下两点 :其一 ,应在对荧光强度有最大敏感度的pH条件下进行测定 ,即用MES缓冲液把 pH值调整到 6左右时进行测定 ;其二 ,要分别用树种的叶、枝干和根等器官 ,求出荧光强度和不同PTS含量的标准曲线。再根据这个标准曲线 ,由提取液的荧光强度 ,来确定各被测样品的PTS含量。温度和共存离子的影响也要尽可能地加以考虑。 展开更多
关键词 荧光物质 质外体液流 荧光强度 离子 水分吸收 盐胁迫 植物根系盐分吸收速度
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面粉的另类用法
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《广东农村实用技术》 2005年第1期45-45,共1页
1.洗涤沾满油腻的碗碟,除了用洗洁精洗、开水烫等外,还有一种鲜为人知的简单方法——取适量面粉,用开水调成极稀的面汤,用面汤洗净沾油的餐具后,再用清水冲一冲就干净了。
关键词 面粉 使用方法 清洗剂 盐分吸收功效
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Effect of Water Vapor Absorption on Measurements of Atmospheric Nitrate Radical by LP-DOAS 被引量:3
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作者 Su-wen Li Wen-qing Liu +3 位作者 Pin-hua Xie Yi-jun Yang De-bao Chen Zheng Li 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 北大核心 2008年第5期433-437,共5页
During the measurement of atmospheric nitrate radical by long-path differential optical absorption spectroscopy, water vapor strong absorption could affect the measurement of nitrate radical and detection limits of sy... During the measurement of atmospheric nitrate radical by long-path differential optical absorption spectroscopy, water vapor strong absorption could affect the measurement of nitrate radical and detection limits of system. Under the tropospheric condition, the optical density of water vapor absorption is non-linearly dependent on column density. An effective method was developed to eliminate the effect of water vapor absorption. Reference spectra of water vapor based on the daytime atmospheric absorption spectra, when fitted together with change of cross section with water vapor column densities, gave a more accurate fitting of water vapor absorptions, thus its effect on the measurements of nitrate radical could be restricted to a minimum and detection limits of system reached 3.6 ppt. The modified method was applied during an intensive field campaign in the Pearl River Delta, China. The NO3 concentration in polluted air masses varied from 3.6 ppt to 82.5 ppt with an average level of 23.6±1.8 ppt. 展开更多
关键词 Nitrate radical Water vapor absorption Long-path differential optical absorption spectroscopy Detection limit
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Identification of Superoxide O2^- during KNO3-NaNO2-NaNO3 Salt by Electron UV-Vis Absorption Spectroscopy Thermal Decomposition of Molten Paramagnetic Resonance and
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作者 刘舒婷 苏涛 +2 位作者 张鹏 费泽杰 刘洪涛 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2017年第4期372-378,I0001,共8页
On account of excellent thermal physical properties, molten nitrates/nitrites salt has been widely employed in heat transfer and thermal storage industry, especially in concentrated solar power system. The thermal sta... On account of excellent thermal physical properties, molten nitrates/nitrites salt has been widely employed in heat transfer and thermal storage industry, especially in concentrated solar power system. The thermal stability study of molten nitrate/nitrite salt is of great importance for this system, and the decomposition mechanism is the most complicated part of it. The oxide species O2^2- and O2^- were considered as intermediates in molten KNO3-NaNO3 while hard to been detected in high temperature molten salt due to their trace concentration and low stability. In this work, the homemade in situ high temperature UV- Vis instrument and a commercial electron paramagnetic resonance were utilized to supply evidence for the formation of superoxide during a slow decomposition process of heat transfer salt (HTS, 53 wt% KNO3/40 wt% NaNO2/7 wt% NaNO3). It is found that the superoxide is more easily generated from molten NaNO2 compared to NaNO3, and it has an absorption band at 420-440 nm in HTS which red shifts as temperature increases. The band is assigned to charge-transfer transition in NaO2 or KO2, responsible for the yellow color of the molten nitrate/nitrite salt. Furthermore, the UV absorption bands of molten NaNO2 and NANO3 are also obtained and compared with that of HTS. 展开更多
关键词 Superoxide Decomposition of heat transfer salt High temperature UV-visible Electron paramagnetic resonance
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Determination of Salt Impurities in MDEA Solution Used in Desulfurization of Highly Sulphurous Natural Gas
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作者 Liu Yucheng Zhang Bo +2 位作者 Chen Mingyan Wu Danni Zhou Zheng 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2015年第3期25-31,共7页
The foaming phenomenon of N-methyldiethanolamine(MDEA) solution used in desulfurization process occurs frequently in the natural-gas purification plant. The foaming phenomenon has a strong impact on operation of the p... The foaming phenomenon of N-methyldiethanolamine(MDEA) solution used in desulfurization process occurs frequently in the natural-gas purification plant. The foaming phenomenon has a strong impact on operation of the process unit. The salt impurities are the main reason for causing the foaming of MDEA solution, so the full analysis of salt impurities is necessary. A method for comprehensive analysis of salt impurities in MDEA solution used in desulfurization process was established. Anions and non-metallic cations of MDEA solution were determined by different conditions of ion chromatograph, respectively. Metallic cations of the solution were detected by atomic absorption spectrophotometer with the N2O-C2H2 flame absorption. The analytical results of salt impurities in the desulfurization solution can provide a theoretical basis for an accurate analysis of the factors affecting the foaming of MDEA to unveil further control measures. 展开更多
关键词 natural-gas purification plant MDEA solution salt impurities full analysis ion chromatograph
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