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The Impacts of Supplemental Irrigation Based on Soil Moisture Measurement and Nitrogen Use on Winter Wheat Yield and Nitrogen Absorption and Distribution 被引量:4
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作者 Xiukuan JIN Maoting MA +1 位作者 Tongke ZHAO Lingling JIANG 《Asian Agricultural Research》 2017年第8期47-54,共8页
Based on split plot design method of field test,the impacts of supplemental irrigation based on soil moisture measurement and nitrogen use on winter wheat yield and nitrogen absorption and distribution were studied.Su... Based on split plot design method of field test,the impacts of supplemental irrigation based on soil moisture measurement and nitrogen use on winter wheat yield and nitrogen absorption and distribution were studied.Supplemental irrigation had three levels: 60%(W_1),70%(W_2) and 80%(W3) of the targeted relative water content at 0-40 cm of soil layer during jointing period of winter wheat.Nitrogen fertilization had three levels: not using nitrogen(N_0),using pure nitrogen of 195 kg/hm^2(N_(195)) and 255 kg/hm^2(N_(255)).Results showed that:(i)different supplemental irrigation and nitrogen fertilization significantly affected plant height and leaf area of winter wheat during key growth period.Under the same supplemental irrigation treatment,both plant height and leaf area of winter wheat showed as N_(255)> N_(195)> N_0(P <0.05).Plant height in N_(195) and N_(255)treatments was significantly higher than that in N_0 treatment,but there was not significant difference between N_(195) and N_(255)(P >0.05).Under the same nitrogen fertilization,plant height in W_2(569.4 m^3/hm^2) and W3(873.45 m^3/hm^2) treatments was significant higher than that in W_1(265.2 m^3/hm^2),but there was not significant difference between W_2 and W3(P >0.05).It illustrated that excessive nitrogen fertilization and supplemental irrigation did not significantly affect plant height and leaf area of winter wheat.(ii) Under the same nitrogen fertilization level,yield increase effect of winter wheat by supplemental irrigation showed a declining trend with nitrogen application amount increased.It illustrated that nitrogen fertilization and supplemental irrigation had certain critical values on the yield of winter wheat.When surpassing the critical value,the yield declined.When nitrogen fertilization amount was 195 kg/hm^2,and supplemental irrigation amount was 70% of field moisture capacity(569.4 m^3/hm^2),the highest yield 8500 kg/hm^2 could be obtained.(iii) During mature period of winter wheat,nitrogen accumulation amount of plant treated by nitrogen was significantly higher than that not treated by nitrogen(P <0.05).But under the treatments of W_2 and W3,nitrogen accumulation amount in N_(255) significantly declined when compared with N_(195)(P <0.05).Especially under W3(873.45 m^3/hm^2) level,nitrogen accumulation amount in N_(255) was even lower than N_0.Under the treatments of N_0 and N_(195),nitrogen accumulation amount of plant significantly increased with supplemental irrigation increased(P < 0.05).But under N_(255) treatment,there was not significant difference(P > 0.05).It illustrated that moderate supplemental irrigation and nitrogen fertilization could improve nitrogen absorption ability of winter wheat,but excessive supplemental irrigation and nitrogen fertilization were not favorable for plant's nitrogen absorption.(iv) Although the increase of supplemental irrigation during jointing period improved nitrogen absorption ability of winter wheat and promoted winter wheat absorbing more nitrogen,it inhibited nitrogen transferring and distributing to seed.Comprehensively considering growth condition of winter wheat and nitrogen risk condition,it is suggested that nitrogen application amount was 195 kg/hm^2,and supplemental irrigation reached 70% of field moisture capacity(569.4 m^3/hm^2),which could be as the suitable water and fertilizer use amounts in the region. 展开更多
关键词 Winter wheat Supplemental irrigation based on soil moisture measurement Nitrogen application amount YIELD Nitrogen absorption and distribution
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Moisture Absorption and Desorption in an Ionomer-Based Encapsulant:A Type of Self-Breathing Encapsulant for CIGS Thin-Film PV Modules 被引量:2
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作者 Miao Yang Raymund Schäffler +1 位作者 Tobias Repmann Kay Orgassa 《Engineering》 SCIE EI 2020年第12期1403-1407,共5页
As an alternative to conventional encapsulation concepts for a double glass photovoltaic(PV)module,we introduce an innovative ionomer-based multi-layer encapsulant,by which the application of additional edge sealing t... As an alternative to conventional encapsulation concepts for a double glass photovoltaic(PV)module,we introduce an innovative ionomer-based multi-layer encapsulant,by which the application of additional edge sealing to prevent moisture penetration is not required.The spontaneous moisture absorption and desorption of this encapsulant and its raw materials,poly(ethylene-co-acrylic acid)and an ionomer,are analyzed under different climatic conditions in this work.The relative air humidity is thermodynamically the driving force for these inverse processes and determines the corresponding equilibrium moisture content(EMC).Higher air humidity results in a larger EMC.The homogenization of the absorbed water molecules is a diffusion-controlled process,in which temperature plays a dominant role.Nevertheless,the diffusion coefficient at a higher temperature is still relatively low.Hence,under normal climatic conditions for the application of PV modules,we believe that the investigated ionomer-based encapsulant can“breathe”the humidity:During the day,when there is higher relative humidity,it“inhales”(absorbs)moisture and restrains it within the outer edge of the module;then at night,when there is a lower relative humidity,it“exhales”(desorbs)the moisture.In this way,the encapsulant protects the cell from moisture ingress. 展开更多
关键词 IONOMER ENCAPSULANT moisture absorption and desorption Cu(In Ga)Se2 photovoltaic module
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Water Absorption Capcapability and Moisture Content Seasonal Changing of Salt-Crust in Lop Nur Dry Lake
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作者 KONG Deyong LI Baoguo +3 位作者 MA Lichun JIANG Ping'an WU Hongqi LIU Hongpeng 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2014年第S1期183-184,共2页
The Lop Nur dry salt lake,Xinjiang province,is charactered by typical physiognomy salt-crust,located in39.6-41.3N.latitude and 89.6-91.4E.longitude.The thickness of salt-crust is about from 20 cm to 100 cm,and
关键词 Lop Nur Dry Lake Salt-Crust moisture Content Water absorption Capcapability
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Moisture Absorption, Mass Loss and Evaporative Resistance of Clothing in Transient Condition
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作者 Chuansi Gao Ingvar Holmr 《Journal of Donghua University(English Edition)》 EI CAS 2006年第5期54-58,共5页
The water vapour resistance of clothing ensembles is not as commonly determined as dry thermal insulation. The measurement techniques are more complicated and the measurement values differ among laboratories. Due to c... The water vapour resistance of clothing ensembles is not as commonly determined as dry thermal insulation. The measurement techniques are more complicated and the measurement values differ among laboratories. Due to complicated moisture transfer process through clothing ensemble, the moisture absorbed and evaporated varies in transient and steady state phases depending on properties, thickness of clothing, and environmental conditions. The purpose of this study was to measure moisture gain inside hygroscopic underwear, and hydrophobic and permeable outer wear as a function of time, to investigate mass loss from "skin" as well as from the manikin, to quantify evaporative heat loss and total heat loss from the manikin, and to determine water vaponr resistance of clothing. Manikin Tore was used by wearing wet "skin" to simulate sweating condition. Moisture content in the inner garment gain shows an exponential relation against time. Moisture in the outer permeable layer shows little gain. On the contrary, mass loss directly from the wet skin decreases exponentially. The mass loss from the manikin is relatively stable throughout three test phases. The evaporative heat loss is about 2/3 of the total heat loss from the sweating manikin. While measuring the evaporative resistance of clothing ensembles with hygroscopic inner garment and permeable outer garment, unlike to measure ensembles with impermeable outer layer, one hour measurement time is enough to get relatively stable results. The variation between the 1^rt hour and the 3^nd hour is less than 5%. The length of transient period and measurement time is dependent on the permeability, thickness of clothing ensembles and environmental conditions. 展开更多
关键词 moisture absorption mass loss evaporative resistance transient condition clothing ensemble.
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Analysis of the Porosity Changing after Moisture Absorption in Functional Knitted Fabrics
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作者 杜燕峰 沈为 冯勋伟 《Journal of Donghua University(English Edition)》 EI CAS 2007年第6期740-743,共4页
The paper analyses the effect of stitch geometrical modality changing after moisture absorption on the porosity of knitted fabrics,and educes the formulas between porosity and stitch parameters.Regarding as the cell s... The paper analyses the effect of stitch geometrical modality changing after moisture absorption on the porosity of knitted fabrics,and educes the formulas between porosity and stitch parameters.Regarding as the cell stitch,the increasing of yarn diameter brings the porosity decreasing and the fabric shrinking in the wale direction.While the diameter keeps invariability,the yarn elongating brings the fabric humping up as well as the increasing porosity.The air-permeability experiments have been conducted to validate the theoretical analysis,and there is reasonable agreement between the theories and experiments. 展开更多
关键词 knitted fabric porosity geometrical modality moisture absorption air permeability
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An Anionic Polymer Incorporating Low Amounts of Hydrophobic Residues Is a Multifunctional Surfactant. Part 1: Emulsifying, Thickening,Moisture-Absorption and Moisture-Retention Abilities of a FattyAcid-Containing Anionic Polysaccharide
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作者 Makoto Urai Tomoko Aizawa +1 位作者 Mutsuyasu Nakajima Michio Sunairi 《Advances in Chemical Engineering and Science》 2015年第2期173-180,共8页
We have been studying the function and structure of fatty acid-containing extracellular polysaccharides (FACEPS) produced by bacteria belonging to the genus Rhodococcus. In this study, we examined the relationships be... We have been studying the function and structure of fatty acid-containing extracellular polysaccharides (FACEPS) produced by bacteria belonging to the genus Rhodococcus. In this study, we examined the relationships between the structure and emulsifying, thickening, moisture-absorption, and moisture-retention capabilities of rhodococcal FACEPS using S-2 EPS produced by R. rhodochrous strain S-2. We prepared chemically deacylated S-2 EPS (DeAcyl S-2 EPS) and palmitoylated DeAcyl S-2 EPS (ReAcyl S-2 EPS), and compared them with native S-2 EPS. All of the properties were attenuated and recovered by deacylation and reacylation of S-2 EPS, respectively. These results suggest that the fatty acid moiety of rhodococcal FACEPS is involved in such functional properties. We also showed that palmitoylation improved the emulsifying, moisture-ab-sorption, and moisture-retention abilities of other acidic polysaccharides that are commercially available. These results suggest that the acidity of the polysaccharide backbone is at least partly responsible for the observed functionality of fatty acid-containing polysaccharides. To our knowledge, this is the first report on multifunctional property of an anionic polymer incorporating low amounts of hydrophobic residues. The present findings could be useful for the creation of new multifunctional surfactants from renewable raw materials for use in various industries, e.g., in cosmetics. 展开更多
关键词 Rhodococcus Fatty Acid-Containing Extracellular POLYSACCHARIDE (FACEPS) Emulsification THICKENING moisture absorption moisture RETENTION
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An Anionic Polymer Incorporating Low Amounts of Hydrophobic Residues Is a Multifunctional Surfactant. Part 2: Emulsification, Moisture Absorption, and Moisture Retention of Alkyl Esterified Poly-γ-Glutamic Acid
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作者 Makoto Urai Tomoko Aizawa +1 位作者 Mutsuyasu Nakajima Michio Sunairi 《Advances in Chemical Engineering and Science》 2015年第2期181-191,共11页
In the accompanying paper (Part 1), we showed that the fatty acid moiety and the acidity of the polysaccharide-backbone of a fatty acid-containing polysaccharide might be involved in its emul-sification, moisture abso... In the accompanying paper (Part 1), we showed that the fatty acid moiety and the acidity of the polysaccharide-backbone of a fatty acid-containing polysaccharide might be involved in its emul-sification, moisture absorption, and moisture retention abilities. In this study, we synthesized alkyl esterified poly-γ-glutamic acid (PGA) with various chain lengths and degrees of substitution of the alkyl moieties to examine how hydrophobic groups incorporated in the anionic polymer contribute to enhanced emulsification, moisture absorption, and moisture retention. With a low degree of alkylation of PGA, these abilities were drastically improved. To improve the moisture absorption of PGA, alkylation with a short chain length is effective in forming interspaces between PGA chains to trap water molecules. Hydrophobic-hydrophilic balance may also be important to improve the emulsification and moisture retention abilities of PGA alkylates. To the best of our knowledge, this is the first report of the relationship between the structure and the multifunctional abilities of an anionic polymer incorporated with a small amount of hydrophobic residue. PGA alkylates, as well as fatty acid-containing polysaccharides, have potential use as multifunctional surfactants throughout various industries. 展开更多
关键词 Poly-γ-Glutamic Acid (PGA) ALKYL ESTER EMULSIFICATION moisture absorption moisture Retention
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Water Transport Models of Moisture Absorption and Sweat Discharge Yarns
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作者 王发明 周小红 王善元 《Journal of Donghua University(English Edition)》 EI CAS 2008年第5期594-596,共3页
An important property of moisture absorption and sweat discharge yarns is their water transport property. In the paper, two water transport models of moisture absorption and sweat discharge yarns were developed to inv... An important property of moisture absorption and sweat discharge yarns is their water transport property. In the paper, two water transport models of moisture absorption and sweat discharge yarns were developed to investigate the influence factors on their wicking rate. In parallel Column Pores Model, wicking rate is determined by the equivalent capillary radius R and length of the capillary tube L. In Pellets Accumulation Model, wicking rate is decided by the capillary radius r and length of the fiber unit assemble L0. 展开更多
关键词 water transport capillary action parallel column pores model pellets accumulation model moisture absorption sweat discharge yarn
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Moisture Absorption and Diffusion of a Carbon Composite Structure
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作者 Bing Wang 《Sustainable Marine Structures》 2019年第2期12-18,共7页
Composite materials are lightweight structures and have been wildly used in marine applications.A carbon composite structure usually absorbs moisture while in-service,which can significantly affect its properties,and ... Composite materials are lightweight structures and have been wildly used in marine applications.A carbon composite structure usually absorbs moisture while in-service,which can significantly affect its properties,and detriments the overall performance.We perform a detailed study on moisture absorption and diffusion of a carbon fibre reinforced vinyl ester resin composite system.Composite samples are immersed directly in four different solutions at a temperature of 37±0.5℃for 1444h.The moisture diffusion is analysed through the Fickian diffusion model;the diffusion parameters are subsequently determined from the gravimetric data.The moisture absorption and interaction with the composite constituents are then discussed.These indicate the fundamentals of the moisture absorption and diffusion within the carbon composite structure. 展开更多
关键词 COMPOSITE moisture absorption DEGRADATION Fickian diffusion
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Effects of Supplemental Irrigation Based on Testing Soil Moisture and Nitrogen Fertilization Amount on the Yield and Nitrogen Uptake of Winter Wheat 被引量:4
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作者 潘飞飞 李慧 +3 位作者 李培培 雷巧 谭金芳 韩燕来 《Agricultural Science & Technology》 CAS 2014年第5期817-820,823,共5页
[Objective] This study aimed to determine the effects of supplemental irrigation on yield and nitrogen uptake in winter wheat. [Method] Three supplemental irrigation levels were set based on the target soil contents ... [Objective] This study aimed to determine the effects of supplemental irrigation on yield and nitrogen uptake in winter wheat. [Method] Three supplemental irrigation levels were set based on the target soil contents of 60%, 70% and 80%) at jointing stage of wheat. Moreover, three nitrogen levels (0, 195 and 255 kg/hm^2) were designed. The experimental plots were arranged fol owing a split-plot design. Zhoumai 18 was selected as the experimental material. [Result] Supplemental irrigation and nitrogen application in combination had significant or extremely significant effects on yield, yield components and nitrogen uptake in winter wheat. The interaction between irrigation and nitrogen fertilization had significant or extremely significant influence on the number of ears, number of grains per ear, 1 000-grain weight, grain yield and nitrogen accumulation in winter wheat. Under different combinations of supplemental irrigation and nitrogen application, the maximum yield of winter wheat was obtained at W2 N195, while the minimum at W1 N255. [Conclusion] With the increase of irrigation, negative effect of nitrogen on number of ears, number of grains per ear, 1 000-grain weight, grain yield and nitrogen accumulation decrease under lower nitrogen application rate. 展开更多
关键词 Supplemental irrigation based on soil moisture Nitrogen application rate YIELD Nitrogen absorption
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Water Absorption Capacity and Coating Adhesion on Thermally Modified and Not-Modified Spruce Wood(Blue Stained or Free of Blue Stained)
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作者 Demiao Chu Redžo Hasanagić +2 位作者 Leila Fathi Mohsen Bahmani Miha Humar 《Journal of Renewable Materials》 EI 2023年第12期4061-4078,共18页
This study aimed to investigate the water absorption capacity of thermally modified and non-modified spruce and blue-stained spruce wood.The wettability of wood depends on various factors,including its type,density,po... This study aimed to investigate the water absorption capacity of thermally modified and non-modified spruce and blue-stained spruce wood.The wettability of wood depends on various factors,including its type,density,porosity,and surface treatment.Wood can swell and become distorted when exposed to water or humidity,impacting its structural integrity.Hence,it is crucial to consider the water and water vapour uptake in the wood when choosing materials for applications that are likely to be exposed to moisture.Various moisture absorption tests were conducted to assess water absorption capacity,including short-term and long-term water absorption and water vapour absorption.The results showed a significant difference in the long-term exposure to water,which was related to the density of the wood.The study examined the influence of thermal treatment on the physical properties of wood and observed significant variations in mass change due to coating,indicating differences in adhesion among different wood types.Vacuum-treated blue-stained Norway spruce demonstrated higher adhesion(5%–15%)compared to air-treated samples.Furthermore,cohesion tests revealed lower cohesion force in blue-stained Norway spruce(approximately 20%–30%)compared to Norway spruce.The study also used industry-standard tests to investigate the adhesion and cohesion of nano-coatings on wood surfaces.The results provided valuable information on the properties of coatings applied to wood,which is vital in protecting and decorating wood while also providing preventive protection against wood pests,weathering,and mechanical influences.Wood modification in vacuum involves subjecting the wood to a low-pressure environment to remove air and moisture,allowing for deeper and more uniform penetration of treatment chemicals.In contrast,wood modification in air relies on the natural circulation of air to facilitate the absorption of chemical treatments,without the need for a vacuum chamber. 展开更多
关键词 Wood durability long-term exposure moisture absorption WETTABILITY absorption
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基于双指数模型的中药吸湿动力学表征及应用研究进展
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作者 余艳婷 熊磊 +6 位作者 何雁 刘微 杨婧 张尧 陈佳莉 罗晓健 饶小勇 《中国实验方剂学杂志》 北大核心 2026年第5期340-346,共7页
吸湿研究一直以来都是中药关注的重点和热点,吸湿机制的阐明对于制剂处方、工艺优化及贮藏条件选择等具有重要作用。吸湿模型是表征中药吸湿机制重要手段,种类较多。双指数模型是基于物质能量守恒定律和费克扩散第一定律对中药提取物物... 吸湿研究一直以来都是中药关注的重点和热点,吸湿机制的阐明对于制剂处方、工艺优化及贮藏条件选择等具有重要作用。吸湿模型是表征中药吸湿机制重要手段,种类较多。双指数模型是基于物质能量守恒定律和费克扩散第一定律对中药提取物物性特点构建的动力学数学模型。近年来,该模型广泛应用于模拟中药提取物和固体制剂在不同湿度环境下的动态吸湿行为,揭示了中药吸湿动力学参数与物料特性的关联规律,为中药吸湿行为表征提供了新视角。该文系统综述此模型在中药领域的应用进展,并分析该模型在中药领域应用优缺点及面临的挑战,展望了该模型在其他领域应用趋势,旨在为中药吸湿机制阐明和中药防潮技术研究提供参考,也为其在食品和高分子材料等方面推广应用提供借鉴。 展开更多
关键词 双指数模型 中药 吸湿 动力学模型 提取物 固体制剂
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间位芳纶/吸湿排汗涤纶/阻燃Lyocell纤维混纺织物的制备及其性能
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作者 康青青 尉霞 +1 位作者 吴磊 宋红 《毛纺科技》 北大核心 2026年第1期15-22,共8页
为改善含间位芳纶织物的吸湿速干性和服用性,通过混纺设计,以间位芳纶、吸湿排汗涤纶以及阻燃Lyocell纤维为原料,制备不同混纺比的纱线及其织物,并对其综合性能进行测试评估。结果表明:间位芳纶/吸湿排汗涤纶/阻燃Lyocell纤维混纺比为90... 为改善含间位芳纶织物的吸湿速干性和服用性,通过混纺设计,以间位芳纶、吸湿排汗涤纶以及阻燃Lyocell纤维为原料,制备不同混纺比的纱线及其织物,并对其综合性能进行测试评估。结果表明:间位芳纶/吸湿排汗涤纶/阻燃Lyocell纤维混纺比为90/5/5、75/15/10、60/25/15的织物具有阻燃性能,混纺比为45/35/20、30/45/25的织物不具有阻燃性能;除渗透面吸水速率外,混纺比为90/5/5、75/15/10、60/25/15的3种阻燃织物吸湿速干性的浸水面和渗透面浸湿时间、浸水面吸水速率、渗透面最大浸湿半径、渗透面液态水扩散速度均≥3级;在3种阻燃织物中,混纺比为75/15/10织物的透气率、抗弯刚度、芯吸高度和透湿率分别为2602.4 mm/s、0.776 mN·cm、220.0 mm、3930.86 g/(d·m^(2)),明显高于另外2种混纺比例下的织物,混纺比为75/15/10织物的回潮率为6.25%,起毛起球等级为3,综合服用性能最好;与经面缎纹、经重平2种变化组织相比,经山形组织织物浸水面、渗透面吸水速率为38.38%、24.84%,渗透面最大浸湿半径为25 mm,渗透面液态水扩散速度为7.65 mm/s,各项性能指标均达到3级标准,吸湿速干性能最佳。综上,当间位芳纶/吸湿排汗涤纶/阻燃Lyocell纤维混纺比为75/15/10、经山形组织织物的吸湿速干性和服用性最佳,且具有良好的阻燃性。 展开更多
关键词 间位芳纶 吸湿排汗涤纶 阻燃Lyocell纤维 阻燃性 吸湿速干性 服用性
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不同施肥方式对坡耕地土壤水氮运移及玉米生长的影响
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作者 林方优 谢梅香 +5 位作者 王策 齐伟 吴芳 金秋 耿韧 时元智 《中国生态农业学报(中英文)》 北大核心 2026年第3期596-607,共12页
为探究在坡耕地采用不同施肥方式对土壤水氮运移和玉米生长的作用,通过在径流小区中布设土壤水分传感器和土壤水样采集装置,研究坡耕地在裸地对照(CK)、玉米地均匀施肥(UF)和玉米地非均匀施肥(NUF)处理下不同坡位处土壤水氮运移特征及... 为探究在坡耕地采用不同施肥方式对土壤水氮运移和玉米生长的作用,通过在径流小区中布设土壤水分传感器和土壤水样采集装置,研究坡耕地在裸地对照(CK)、玉米地均匀施肥(UF)和玉米地非均匀施肥(NUF)处理下不同坡位处土壤水氮运移特征及玉米对氮素的吸收利用情况。结果表明:1)相同处理相同土层深度下坡脚处土壤含水量均值最低(CK处理40 cm土层深度除外),在降雨补给和蒸发的共同作用下坡脚20 cm土层深度处水分波动程度最大,相较于UF处理,相同坡位相同土层深度NUF处理观测点(坡中40 cm土层深度除外)土壤水分含量的变异系数较小;2)相同坡位施氮(UF和UNF)处理距地表20 cm深度处氮素浓度高于40 cm深度处;CK处理各观测点硝态氮浓度均值低于UF和NUF处理,总氮浓度表现出相同趋势,但氨态氮浓度最高,氮素整体变化幅度最小;相同土层深度处UF处理下总氮浓度从坡顶向坡脚递增,NUF处理坡顶、坡中和坡脚总氮浓度在40 cm深度处的差异较小;3)UF处理下玉米产量、氮肥偏生产力和氮素吸收率均呈现由坡顶向坡脚递增的趋势,NUF处理下坡中玉米植株总氮累积量达31.51 kg·hm^(-2),高于坡脚和坡顶,玉米产量也表现出坡中最高,氮肥偏生产力和氮素吸收率由坡顶向坡脚大幅递增,尤其第1个玉米季坡脚处氮肥偏生产力和氮素吸收率较坡顶提高3倍以上;4)与UF处理相比,NUF处理在减少28.6%施肥量的基础上,保证了作物产量,大幅提升了氮肥偏生产力和氮素吸收率(65.0%~69.0%和43.8%~104.2%)。坡耕地非均匀施肥通过利用氮素的顺坡迁移特性,改善作物对氮肥的吸收情况,在保证产量的同时减少了施肥量,为坡耕地科学制定施肥制度、有效控制养分流失提供了科学依据。 展开更多
关键词 非均匀施肥 土壤水分 土壤氮素 玉米产量 氮素吸收
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脱木质素处理对杨木、巴沙木和泡桐吸湿性能的影响
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作者 李哲宇 刘文静 +1 位作者 赵芝弘 张明辉 《材料导报》 北大核心 2026年第6期248-256,共9页
随着全球水资源的日益紧张,开发新型高效的空气取水材料成为解决水源短缺问题的关键。木材作为一种环境友好型材料,因其天然的多孔结构和良好的吸湿性能,被认为是制备空气取水材料的理想基材。本研究旨在通过脱木质素处理,提高木材的吸... 随着全球水资源的日益紧张,开发新型高效的空气取水材料成为解决水源短缺问题的关键。木材作为一种环境友好型材料,因其天然的多孔结构和良好的吸湿性能,被认为是制备空气取水材料的理想基材。本研究旨在通过脱木质素处理,提高木材的吸湿性能,以筛选出最适合作为空气取水材料的基材,并对木基空气取水材料的基材进行扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)和X射线光电子能谱(XPS)等综合分析。研究表明:(1)脱木质素巴沙木(DWB18h)试件的吸湿量最大,达到1.25 g/g,与脱木质素泡桐(DWP12h)试件吸湿量相差不大。但是DWP12h试件的吸湿容量最高,为1.89 g/g,明显高于其他材料。这表明泡桐在吸湿性能上具有优势,适合作为空气取水材料的基材。(2)通过脱木质素处理,泡桐的细胞壁厚度显著减小,孔径、孔体积和比表面积显著增加,为空气取水材料提供了更多的结合位点。同时,脱木质素处理有效地去除了部分半纤维素和木质素,保留了纤维素的基本结构,使得纤维素中的羟基(-OH)更多地暴露,提供了更多的亲水基团。本研究的发现为开发高吸湿性的木基材料提供了理论基础,并为空气取水材料的基材选择提供了科学依据。 展开更多
关键词 杨木 泡桐 巴沙木 脱木质素处理 吸湿处理 空气取水
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基于离散元的膨胀土湿胀裂隙演化细观机制研究
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作者 程学磊 邢晓凡 +4 位作者 海然 张春丽 惠存 郭硕硕 李琪琪 《中原工学院学报》 2026年第1期81-87,94,共8页
为研究降雨条件下膨胀土由湿胀引起的裂隙演变规律,在热传导理论框架基础上,推导出了与热传导方程对应的水分迁移方程。基于颗粒流程序(Particle Flow Code,PFC)建立了湿度-应力耦合作用的膨胀土湿胀变形离散元数值计算模型,同时以南阳... 为研究降雨条件下膨胀土由湿胀引起的裂隙演变规律,在热传导理论框架基础上,推导出了与热传导方程对应的水分迁移方程。基于颗粒流程序(Particle Flow Code,PFC)建立了湿度-应力耦合作用的膨胀土湿胀变形离散元数值计算模型,同时以南阳弱膨胀土为例,基于三轴试验验证了该离散元模型的可靠性,并进一步研究了膨胀土地基降雨条件下的湿胀裂隙演化细观机理。研究结果表明:在降雨初期,雨水入渗地表后,浅层地表土层出现轻微湿胀变形,有轻微裂缝和隆起;随着降雨持续,湿胀变形由地表向深层土体扩展,但由于受土体自重的影响,深部土层湿胀变形相对较小;在降雨后期,膨胀土土体出现多条贯通裂缝,地表土体隆起显著。 展开更多
关键词 膨胀土 吸湿膨胀 裂隙演化 细观机制 离散元模拟
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脱-吸湿路径对粉质黏土电阻率影响试验研究
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作者 李科 樊恒辉 +2 位作者 李雪梅 梁美洁 周丽娜 《土工基础》 2026年第1期149-153,167,共6页
土体电阻率表征土的电阻特性,是评价土体的基本物理指标之一,与土体结构、矿物成分和含水率等因素有关。通过室内试验对不同压实度及脱-吸湿路径下的粉质黏土进行了电阻率测试,探究了压实度和脱吸-湿路径对粉质黏土电阻率变化的影响及... 土体电阻率表征土的电阻特性,是评价土体的基本物理指标之一,与土体结构、矿物成分和含水率等因素有关。通过室内试验对不同压实度及脱-吸湿路径下的粉质黏土进行了电阻率测试,探究了压实度和脱吸-湿路径对粉质黏土电阻率变化的影响及其影响机制,利用Gunzel、Waxman模型对试验结果进行对比分析,找出最适用于该粉质黏土在脱-吸湿路径下的电阻率结构模型。结果表明:在低压实度条件下,随着体积含水率的升高,电阻率的下降速率更大;在相同含水率下,土样在脱湿路径上具有更大的电阻率;拟合结果表明Gunzel、Waxman模型在吸湿路径下拟合精度更高。 展开更多
关键词 非饱和土 电阻率 压实度 脱-吸湿路径
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LED器件吸湿失效分析及改善
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作者 钱帆 黎鑫玲 +2 位作者 梁乐成 张文彬 曾幸荣 《中国照明电器》 2026年第1期16-21,共6页
表面贴装发光二极管(SMD LED)作为当前主流的LED封装形式,已广泛应用于商业照明、家用照明及背光显示等领域。其与表面贴装技术(SMT)的结合,不仅实现了电子产品的小型化和轻量化,更显著提升了产品的可靠性和生产效率,但SMT焊接过程中的... 表面贴装发光二极管(SMD LED)作为当前主流的LED封装形式,已广泛应用于商业照明、家用照明及背光显示等领域。其与表面贴装技术(SMT)的结合,不仅实现了电子产品的小型化和轻量化,更显著提升了产品的可靠性和生产效率,但SMT焊接过程中的“爆米花效应”困扰着LED器件的应用。本文通过模拟实验探究了吸湿率与“爆米花效应”失效率的关系,考察了封装材料与支架对LED器件吸湿性的影响。结果表明,LED器件在吸湿率超过1 wt.‰后会出现“爆米花效应”。支架材料及结构界面吸附的水分为LED器件吸湿的主要途径,其水分含量占总吸湿量的85.68%~97.82%。基于建立吸湿率-失效率模型,以商品化封装材料为基础,考察了无机填料和润湿剂对“爆米花效应”的影响。LED器件的吸湿率和失效率随封装材料中无机填料KMP590的增加而降低,吸湿率与失效率分别实现了35%和64%的显著降低。通过添加KYC643润湿剂使失效率从79.17%降至52.08%,流平时间从9.8分钟缩短至3.5分钟。本文为封装材料的性能提升提供改善方向,同时LED器件吸湿性研究,也为“爆米花效应”的失效分析提供理论依据。 展开更多
关键词 LED器件 封装材料 吸湿性 爆米花效应 表面贴装技术
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柞蚕丝针织汗布水分管理性能评价
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作者 黎麟玉 孙清逸 +1 位作者 于文福 徐广标 《纺织科学与工程学报》 2026年第1期10-15,共6页
柞蚕丝纤维是一种扁平带状的天然蚕丝蛋白纤维,横截面存在不均匀分布微孔,纵向表面有微细沟槽,该种特征结构使柞蚕丝表现出优良的吸湿导湿特性,在水分管理方面具备应用潜力。选取91/9柞蚕丝/氨纶平针针织汗布为研究对象,选取纺织品在吸... 柞蚕丝纤维是一种扁平带状的天然蚕丝蛋白纤维,横截面存在不均匀分布微孔,纵向表面有微细沟槽,该种特征结构使柞蚕丝表现出优良的吸湿导湿特性,在水分管理方面具备应用潜力。选取91/9柞蚕丝/氨纶平针针织汗布为研究对象,选取纺织品在吸湿、导湿、放湿阶段的多项性能评价指标,结合其表面界面性能进行综合评估,结果表明:柞蚕丝针织汗布的吸水率高达360%,回潮率为8.9%;经向和纬向芯吸高度分别为4.43 cm和6.40 cm,表现出各向异性;平均滴水铺展时间为28.2 s,变异系数为35.6%,受织物表面形貌差异影响较大;水分蒸发速率仅为0.0641 g/h。虽无法满足速干要求,但具备良好的吸湿导湿特性。 展开更多
关键词 柞蚕丝织物 吸湿导湿性 表面界面性能 速干性
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玫瑰花多糖提取工艺优化及其活性研究
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作者 于梦瑶 张春旭 +3 位作者 王宣 钟日隆 王兴毅 刘佳维 《粮食与油脂》 北大核心 2026年第1期147-152,162,共7页
采用Box-Behnken法优化纤维素酶法提取玫瑰花多糖工艺,探讨料液比、纤维素酶添加量、酶解时间、酶解pH对玫瑰花多糖得率的影响,并研究其抗氧化、吸湿和保湿性能。结果表明:最优提取工艺为酶解时间1.9 h、料液比1∶31(g/mL)、纤维素酶添... 采用Box-Behnken法优化纤维素酶法提取玫瑰花多糖工艺,探讨料液比、纤维素酶添加量、酶解时间、酶解pH对玫瑰花多糖得率的影响,并研究其抗氧化、吸湿和保湿性能。结果表明:最优提取工艺为酶解时间1.9 h、料液比1∶31(g/mL)、纤维素酶添加量(以玫瑰花干粉质量计)2.6%、酶解pH 5.1,在此条件下玫瑰花多糖得率为(14.42±0.01)%。抗氧化试验结果表明,玫瑰花多糖具有良好的体外抗氧化活性,当质量浓度为5 mg/mL时,其对DPPH自由基、羟基自由基、ABTS自由基的清除率分别为(84.87±1.35)%、(67.98±1.62)%、(79.06±1.11)%。吸湿、保湿试验结果表明,玫瑰花多糖具备一定的吸湿性和保湿性。在相对湿度为80%和44%的环境中,放置48 h时玫瑰花多糖的吸湿率分别达到(30.60±2.46)%和(20.48±3.43)%;在干燥硅胶环境中放置48 h,玫瑰花多糖的保湿率为(21.38±0.71)%。 展开更多
关键词 玫瑰花多糖 提取工艺 Box-Behnken法 抗氧化活性 吸湿 保湿
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