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Effect of Hybridization on the Mechanical Properties of Pineapple Leaf Fiber/Kenaf Phenolic Hybrid Composites 被引量:4
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作者 M.Asim M.Jawaid +2 位作者 K.Abdan M.R.Ishak O.Y.Alothman 《Journal of Renewable Materials》 SCIE 2018年第1期38-46,共9页
In this study,pineapple leaf fiber(PALF),kenaf fiber(KF)and PALF/KF/phenolic(PF)composites were fabricated and their mechanical properties were investigated.The mechanical properties(tensile,flexural and impact)of the... In this study,pineapple leaf fiber(PALF),kenaf fiber(KF)and PALF/KF/phenolic(PF)composites were fabricated and their mechanical properties were investigated.The mechanical properties(tensile,flexural and impact)of the PALF/KF/PF hybrid composites were investigated and compared with PALF/KF composites.The 3P7K exhibited enhanced tensile strength(46.96 MPa)and modulus(6.84 GPa),flexural strength(84.21 MPa)and modulus(5.81 GPa),and impact strength(5.39 kJ/m2)when compared with the PALF/PF and KF/PF composites.Scanning electron microscopy(SEM)was used to observe the fracture surfaces of the tensile testing samples.The microstructure of the 7P3K hybrid composite showed good interfacial bonding and the addition of KF improved the interfacial strength.It has been concluded that the 3P7K ratio allowed obtaining materials with better mechanical properties(tensile,flexural and impact strengths)than PALF/PF and KF/PF composites.The results obtained in this study will be used for further comparative study of untreated hybrid composites with treated hybrid composites. 展开更多
关键词 Pineapple leaf fiber kenaf fiber phenolic resin hybrid composites mechanical properties
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The Effect of the Process on Mechanical Properties of Polylactic Acid-Date Palm Leaf Fibers Composite Films Produced By Extrusion Blowing 被引量:1
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作者 Fatma Kharrat Rania Chaari +4 位作者 Mohamed Khlif Loic Hilliou José A.Covas Mohamed Haboussi Hedi Nouriand Chedly Bradai 《Journal of Renewable Materials》 SCIE 2019年第9期891-901,共11页
Biocomposite films prepared with melt compounding and film blowing have become a new trend in plastic research to deliver more eco-friendly packages.Polylactic acid(PLA)was melt compounded with minimally processed dat... Biocomposite films prepared with melt compounding and film blowing have become a new trend in plastic research to deliver more eco-friendly packages.Polylactic acid(PLA)was melt compounded with minimally processed date palm leaf fiber(DPLF)and converted into films by blown film extrusion.The compounding was done in order to enhance the film mechanical properties in one hand,and to decrease the film production cost in the other hand.In this present study,a reference PLA film and films with 1%,2%,and 5%of DPLF(weight%)were produced with different process parameters.The spatial variations in films thickness and lay flat width indicate that the addition of DPLF up to 2%enhances the bubble stability for the tested process parameters.However,the composite with 5%DPLF shows nearly the same processability window as the neat PLA.The structural and mechanical characterizations of films suggest a reinforcing effect of the PLA matrix up to 2%of fiber(with an optimum at 1%).Larger DPLF loading leads to depressed and more anisotropic mechanical properties,related to an increased density of defects at the fiber-PLA fragile interface and to a DPLF-induced enhanced PLA thermal degradation and amorphous phase orientation. 展开更多
关键词 PLA palm leaf fibers BIOCOMPOSITES film blowing
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Bio-Adhesives Combined with Lotus Leaf Fiber to Prepare Bio-Composites for Substituting the Plastic Packaging Materials
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作者 Ke Shi Luyang Wang +1 位作者 Ruige Qi Chunxia He 《Journal of Renewable Materials》 SCIE EI 2022年第5期1257-1268,共12页
This work was aim to prepare a packing material from natural resources to reduce the environment pollution caused by plastics.Four bio-adhesives(guar gum,sodium alginate,agar and chitosan)were combined with lotus leaf... This work was aim to prepare a packing material from natural resources to reduce the environment pollution caused by plastics.Four bio-adhesives(guar gum,sodium alginate,agar and chitosan)were combined with lotus leaf fibers to prepare degradable composites,respectively.The mechanical properties,moisture absorption profiles and the thermal conductivity of the composites were studied and the cross section morphology and the thermal properties of the composites were analyzed.The Fourier-transform infrared spectroscopy(FTIR)results showed that the polar groups such as–OH and–COO^(–)in bio-adhesives can form hydrogen bond with–OH in lotus leaf fibers to connect the two components.The combination of agar and lotus leaf fiber was good,and their composite had the best mechanical properties,with the tensile strength,flexural strength and impact strength of 2.05,5.9 MPa and 4.29 kJ·m_(−2),respectively,and the composite had a low moisture absorption profile,and the equilibrium moisture absorption rate was 32.32%.The lotus leaf fiber/agar composite(LAC)had an excellent comprehensive performance and it was non-toxic,degradable and thermal insulating,which indicated that it had the potential to use in packaging field to substitute plastics. 展开更多
关键词 Bio-adhesive lotus leaf fiber COMPOSITE mechanical properties MORPHOLOGY
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Physical and Thermo-Mechanical Properties of Composite Materials Based on Raw Earth and Crushed Palm Leaf Fibers (Borassus aethiopum)
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作者 Mouhamadou Nabi Kane Mapathe Ndiaye +1 位作者 Pape Moussa Touré Adama Dione 《Materials Sciences and Applications》 2024年第9期358-377,共20页
The objective of this study is to seek solutions to reduce the impact of buildings on climate change and to promote the use of local bio-sourced or geo-sourced materials for sustainable construction. Different samples... The objective of this study is to seek solutions to reduce the impact of buildings on climate change and to promote the use of local bio-sourced or geo-sourced materials for sustainable construction. Different samples of raw earth from 3 sites were taken in the commune of Mlomp. Geotechnical tests showed that the raw earth samples from sites 2 and 3 have more clay fraction while site 1 contains more sand. The fact of integrating fibers from crushed palm leaves (Borassus aethiopum) (2%, 4% and 6%) into the 3 raw earth samples reduced the mechanical resistance to compression and traction of the 3 raw earths. The experimental results of thermal tests on samples of earth mixtures with crushed Palma leaf fibers show a decrease in thermal conductivity as well as thermal effusivity as the percentages increase (2%, 4% and 6%) of fibers in raw earth for the 3 sites. This shows that this renewable composite material can help improve the thermal insulation of building envelopes. 展开更多
关键词 Raw Earth Palma leaf fibers Ecological Composite Materials PHYSICAL Thermo-Mechanical Thermal Conductivity Thermal Effusivity
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Properties and Processing of the Pineapple Leaf Fiber 被引量:1
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作者 Zhang Yuanming(张元明) +1 位作者 Yu Chongwen(郁崇文) 《Journal of Donghua University(English Edition)》 EI CAS 2001年第4期24-26,共3页
The properties and constituent of pineapple fiber were tested, and on the base of that, chemical treatment was used to improve the spinnability of the fiber, and the pure and blended yarn of pineapple fiber were produ... The properties and constituent of pineapple fiber were tested, and on the base of that, chemical treatment was used to improve the spinnability of the fiber, and the pure and blended yarn of pineapple fiber were produced in worsted and cotton spinning system. 展开更多
关键词 PINEAPPLE leaf fiber bast fiber degumming spinning
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Spinning System for Pineapple Leaf Fiber via Cotton Spinning System by Solo and Binary Blending and Identifying Yarn Properties
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作者 Khusniddin Ismoilov Sachin Chauhan +1 位作者 Mingxing Yang Quan Heng 《Journal of Textile Science and Technology》 2019年第4期86-91,共6页
By nature, pineapple fiber (PALF) obtained from pineapple leaf is a smooth, shiny and white natural cellulosic fiber. In current investigation of spinning technique for pineapple leaf fiber based on cotton spinning me... By nature, pineapple fiber (PALF) obtained from pineapple leaf is a smooth, shiny and white natural cellulosic fiber. In current investigation of spinning technique for pineapple leaf fiber based on cotton spinning method comparison of produced yarn properties has been reported. For one of the investigations of this study, the fibers were cut into staple length and various properties of fibers were analyzed. Data and results acquired from this illustrated that there is excellent spinnability on the fiber. Two separate researches were conducted with consideration to produce resultant yarn by spinning of PALF. Yarn derived by solo spinning technique of 100% PALF and PALF blending with polyester and cotton fibers through binary blending technique in equal proportion has been spun, then yarn count, tensile properties, yarn evenness, hairiness have been evaluated and analyzed. The results from numerical simulations analysis indicated that yarn obtained from the Pineapple leaf fiber (PALF) had great potential to be used in apparels. 展开更多
关键词 Cellulose fiber Cotton SPINNING Technique SPINNABILITY Tensile Strength EVENNESS HAIRINESS Pineapple leaf fiber
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Developing Suitable Proportions for the Production of Pineapple Leaf Fibers Reinforced Normal Strength Concrete
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作者 Kayibanda Patrick Richard Ocharo Onchiri Geoffrey N. Mang’uriu 《Open Journal of Civil Engineering》 2019年第3期185-194,共10页
The present work tried to develop suitable proportions for the production of Pineapple Leaf Fibers (PALF) reinforced Normal Strength Concrete (NSC), an experimental analysis with a mix ratio of 1:1.84:3.27 for cement:... The present work tried to develop suitable proportions for the production of Pineapple Leaf Fibers (PALF) reinforced Normal Strength Concrete (NSC), an experimental analysis with a mix ratio of 1:1.84:3.27 for cement: fine aggregates: coarse aggregates with constant water to cement ratio of 0.54. The total volume per mixing batch was calculated of 9 cubes + 9 cylinders + 3 beams in order to know the number of materials to be used in casting per batch, and the PALF percentage was taken based on cement weight whereby it starts from the lowest to the maximum as follow 0%, 0.2%, 0.4%, 0.6%, 0.8%, and 1%. The tests that were done on fresh concrete were compacting factors and workability using the slump test which was carried out on each fresh mix of concrete. The results showed that PALF can be used to improve the Tensile and Flexural properties of Normal Strength Concrete. 展开更多
关键词 PINEAPPLE leaf fibers Tensile STRENGTH COMPRESSIVE STRENGTH FLEXURAL STRENGTH and Water Absorption
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Correlation of Microstructure of Leaf Sheath Epidermis and Nutrient Composition of Palm Plants with the Damage Degree of Red Palm Fiber Elephant 被引量:1
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作者 申晓萍 欧善生 +3 位作者 谢彦洁 王小欣 覃连红 侯亮 《Plant Diseases and Pests》 CAS 2010年第2期58-62,共5页
[ Objective] Correlation of microstructure of leaf sheath epidermis and nutrient composition of palm plants with the damage degree of red palm fiber elephant in four kinds of plants in Nanning were analyzed in order t... [ Objective] Correlation of microstructure of leaf sheath epidermis and nutrient composition of palm plants with the damage degree of red palm fiber elephant in four kinds of plants in Nanning were analyzed in order to control the occurrence and damage of this insect in Nanning. [Method] Taken 4 kinds of Palmae plants in Nanning including Ravenea fivulafis, Washingtonia filifera, Phoenix canafiensis, Roystonea regia (HBK.)O. F. Cook as materials, damage situation of the red palm fiber elephant was investigated, microstructure of leaf sheath epidermis and nutrient composition of palm plants were analyzed and determined. [ Result] The results showed that there was direct correlation between the microstructure of leaf sheath epidermis and nutrient composition with the physical resistance of palm plant against red palm fiber elephant. The extend of damage from red palm fiber elephant had negatively relation with the thickness of corneum and leaf epidermis. The damage degree caused by red palm fiber elephant increased with the content of crude protein, crude ash and nitrogen free extract increasing, also increased with the content of rude fiber decreasing. [Condusion] The damage degree of red palm fiber elephant had a relationship with microstructure of leaf sheath epidermis and nutrient composition of palm plants. 展开更多
关键词 PALM leaf sheath epidermis Micro/structure Nutrition ingredients Red palm fiber elephant
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Structural characterization of coconut tree leaf sheath fiber reinforce-ment 被引量:1
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作者 Obi Reddy K Sivamohan Reddy G +2 位作者 Uma Maheswari C Varada Rajulu A Madhusudhana Rao K 《Journal of Forestry Research》 SCIE CAS CSCD 2010年第1期53-58,I0002,共7页
The coconut palm tree leaf sheath fibers were analyzed by FTIR spectral analysis, Chemical, X-ray and thermo gravimetric methods to assess their suitability as reinforcements in the preparation of green composites. Th... The coconut palm tree leaf sheath fibers were analyzed by FTIR spectral analysis, Chemical, X-ray and thermo gravimetric methods to assess their suitability as reinforcements in the preparation of green composites. The morphology of the untreated and alkali treated fibers was studied by scanning electron microscopic method. The FTIR and chemical analyses indicated lowering of hemi-cellulose content by alkali treatment of the fibers. The X-ray diffraction revealed an increase in crystallinity of the fibers on alkali treatment. The thermal stability of the fibers was found to increase slightly by alkali treatment. The tensile properties of these fibers increased on alkali treatment. The mechanical and other physical properties indicated that these fibers were suitable as reinforcements for making the green composites. 展开更多
关键词 coconut leaf sheath fibers chemical analysis CRYSTALLINITY mechanical properties scanning electron microscopy
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Effect of N fertilization rate on soil alkalihydrolyzable N, subtending leaf N concentration,fiber yield, and quality of cotton 被引量:11
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作者 Binglin Chen Hongkun Yang +4 位作者 Weichao Song Chunyu Liu Jiao Xu Wenqing Zhao Zhiguo Zhou 《The Crop Journal》 SCIE CAS CSCD 2016年第4期323-330,共8页
Soil alkali-hydrolyzable nitrogen, which is sensitive to N fertilization rate, is one of the indicators of soil nitrogen supplying capacity. Two field experiments were conducted in Dongtai(120°19″ E, 32°52... Soil alkali-hydrolyzable nitrogen, which is sensitive to N fertilization rate, is one of the indicators of soil nitrogen supplying capacity. Two field experiments were conducted in Dongtai(120°19″ E, 32°52″ N), Jiangsu, China in 2009 and Dafeng(120°28″ E, 33°12″ N), Jiangsu province, China in 2010. Six nitrogen rates(0, 150, 300, 375, 450, and 600 kg ha^(-1)) were used to study the effect of N fertilization rate on soil alkali-hydrolyzable nitrogen content(SAHNC), subtending leaf nitrogen concentration(SLNC), yield, and fiber quality. In both Dongtai and Dafeng experiment station, the highest yield(1709 kg ha^(-1)), best quality(fiber length 30.6 mm, fiber strength 31.6 c N tex^(-1), micronaire 4.82), and highest N agronomic efficiency(2.03 kg kg^(-1)) were achieved at the nitrogen fertilization rate of 375 kg ha^(-1). The dynamics of SAHNC and SLNC could be simulated with a cubic and an exponential function,respectively. The changes in SAHNC were consistent with the changes in SLNC. Optimal average rate(0.276 mg day^(-1)) and duration(51.8 days) of SAHNC rapid decline were similar to the values obtained at the nitrogen rate of 375 kg ha^(-1)at which cotton showed highest fiber yield, quality, and N agronomic efficiency. Thus, the levels and strategies of nitrogen fertilization can affect SAHNC dynamics. The N fertilization rate that optimizes soil alkali-hydrolyzable nitrogen content would optimize the subtending leaf nitrogen concentration and thereby increase the yield and quality of the cotton fiber. 展开更多
关键词 Cotton(Gossypium hirsutum L) SOIL alkali-hydrolyzable NITROGEN Subtending leaf NITROGEN concentration fiber yield fiber properties NITROGEN use efficiency
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Relationship Between the N Concentration of the Leaf Subtending Boll and the Cotton Fiber Quality
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作者 WANG You-hua ZHAO Xin-hua +2 位作者 CHEN Bing-lin GAO Xiang-bin ZHOU Zhi-guo 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2012年第12期2013-2019,共7页
This experiments were conducted in Nanjing (118~50"E, 32~02"N) and Xuzhou (117~11 "E, 34~15"N), Jiangsu Province, China, to study the response of fiber quality to the N concentration of the leaf subtending bol... This experiments were conducted in Nanjing (118~50"E, 32~02"N) and Xuzhou (117~11 "E, 34~15"N), Jiangsu Province, China, to study the response of fiber quality to the N concentration of the leaf subtending boll in cotton (Gossypium hirsutum L.). Results suggested that the N dilution curve of the leaf subtending boll can accurately indicate the stage- specific plant N status for fiber development. Fiber strength is likely to be the most variable fiber quality index responding to the leaf N variation which is different in cultivars. Fiber length was the most stable index among strength, length, micronaire, and elongation. There existed an optimum leaf N concentration for fiber strength development in each stage. The optimum leaf N regression curve was very close to the N dilution curve in the middle positional fruiting branches under the 240 kg N ha-1 soil N application rate. 展开更多
关键词 COTTON fiber quality leaf N concentration CELLULOSE
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Analysis of Water Absorption of Different Natural Fibers
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作者 Hosne Ara Begum Tanima Rahman Tanni Md Abul Shahid 《Journal of Textile Science and Technology》 2021年第4期152-160,共9页
The demand for natural fibers has always been high due to their unique characteristics like strength, lightweight, availability, bio-degradability, etc. In every phase of life, from clothing to technical textiles, nat... The demand for natural fibers has always been high due to their unique characteristics like strength, lightweight, availability, bio-degradability, etc. In every phase of life, from clothing to technical textiles, natural fibers are used. Water absorption of fibers is considered really important in many aspects, e.g., Sportech, Medtech, Geotech, etc. This work analyses water absorption of raw and alkali-treated cotton, arecas, pineapple leaves, and banana fibers. Fibers were scoured with different concentrations of alkali (2, 4, 6 gm/L NaOH), washed and neutralized with the dilute acetic acid solution, then dried. Later on, the fiber samples were immersed into distilled water, and water absorption percentages of the fibers were determined every 10 minutes within 1 hour in total. It appeared that at untreated conditions, the areca fiber has the highest water absorption capacity compared to the other fibers. Alkali-treated cotton shows the highest water absorption, and areca fibers show approximately 60% water absorption of cotton. 展开更多
关键词 Water Absorption Alkali Treatment Areca Nut Husk fiber Pine Apple leaf fiber Banana fiber
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Properties and Chemical Treatment of Banana Fiber 被引量:5
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作者 陆凯 郁崇文 《Journal of China Textile University(English Edition)》 EI CAS 2000年第1期82-84,共3页
Comparing to some other fibers,the mechanical andsome physical properties of banana fiber,constituent ofbanana fiber have been studied in this paper,mean-while,for improving some characteristics of banana fi-ber,the c... Comparing to some other fibers,the mechanical andsome physical properties of banana fiber,constituent ofbanana fiber have been studied in this paper,mean-while,for improving some characteristics of banana fi-ber,the chemical treatments were used to modify the fi-ber.The results show that the coarse and brittle bananafiber,will be difficult to process in traditional spinningsystem. 展开更多
关键词 BANANA leaf fiber PROPERTIES of fibers chemi-cal treatment.
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Nitrogen Concentration in Subtending Cotton Leaves in Relation to Fiber Strength in Different Fruiting Branches 被引量:2
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作者 ZHAO Wen-qing LI Jian +3 位作者 GAO Xiang-bin WANG You-hua MENG Ya-li ZHOU Zhi-guo 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2013年第10期1757-1770,共14页
Nitrogen(N) fertilizer experiments were conducted to investigate the optimal subtending leaf N concentration for fiber strength,and its relationship with activities of key enzymes(sucrose synthase and β-1,3-glucan... Nitrogen(N) fertilizer experiments were conducted to investigate the optimal subtending leaf N concentration for fiber strength,and its relationship with activities of key enzymes(sucrose synthase and β-1,3-glucanase) and contents of key constituents(sucrose and β-1,3-glucan) involved in fiber strength development in the lower,middle and upper fruiting branches of two cotton cultivars(Kemian 1 and NuCOTN 33B).For each sampling day,we simulated changes in fiber strength,activity of sucrose synthase and β-1,3-glucanase and levels of sucrose and β-1,3-glucan in response to leaf N concentration using quadratic eqs.;the optimal subtending leaf N concentrations were deduced from the eqs.For the same fruiting branch,changes in the optimal leaf N concentration based on fiber development(DPA) could be simulated by power functions.From these functions,the average optimal subtending leaf N concentrations during fiber development for the cultivar,Kemian 1,were 2.84% in the lower fruiting branches,3.15% in the middle fruiting branches and 3.04% in the upper fruiting branches.For the cultivar,NuCOTN 33B,the optimum concentrations were 3.04,3.28 and 3.18% in the lower,middle and upper fruiting branches,respectively.This quantification may be used as a monitoring index for evaluating fiber strength and its related key enzymes and constituents during fiber formation at the lower,middle and upper fruiting branches. 展开更多
关键词 cotton nitrogen subtending leaf nitrogen concentration fiber strength key enzymes and constituents
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菠萝叶纤维机械提取研究现状
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作者 李康 欧忠庆 +3 位作者 葛畅 黄涛 经福林 陈士伟 《林业机械与木工设备》 2025年第1期4-11,共8页
对菠萝叶纤维提取机械的发展现状进行了深入分析。首先介绍了菠萝叶作为潜在资源的重要性和现有种植规模,菠萝叶纤维开发利用现状以及传统手工提取菠萝叶纤维的局限性,系统梳理了国内外菠萝叶纤维提取机械的研究现状,涵盖了不同设计方... 对菠萝叶纤维提取机械的发展现状进行了深入分析。首先介绍了菠萝叶作为潜在资源的重要性和现有种植规模,菠萝叶纤维开发利用现状以及传统手工提取菠萝叶纤维的局限性,系统梳理了国内外菠萝叶纤维提取机械的研究现状,涵盖了不同设计方案和相应性能评价。然后详细讨论了目前机械存在的问题,包括提取效率、纤维质量、自动化程度以及噪声控制等方面的挑战。最后提出了未来研究的重点和方向,包括优化刮麻装置设计、实现全面自动化提取、应用智能传感器技术和深入研究空气动力学等领域。为菠萝叶纤维提取机械的进一步发展提供了思考。 展开更多
关键词 菠萝叶纤维 纤维提取机械 发展现状 研究方向
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大白菜外叶可溶性膳食纤维对小鼠肠道屏障损伤的保护作用
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作者 高泽鹏 周茜 +5 位作者 赵建军 秦鹏 曹煜 张家琦 程鑫颖 赵文 《食品工业科技》 北大核心 2025年第19期408-421,共14页
目的:探究大白菜外叶可溶性膳食纤维对环磷酰胺(Cyclophosphamide,CPA)致小鼠肠道屏障损伤的干预作用,为大白菜资源的高值化利用提供理论依据。方法:将60只雄性ICR小鼠随机分为阴性对照组、模型组和125、250、500 mg/kg·bw大白菜... 目的:探究大白菜外叶可溶性膳食纤维对环磷酰胺(Cyclophosphamide,CPA)致小鼠肠道屏障损伤的干预作用,为大白菜资源的高值化利用提供理论依据。方法:将60只雄性ICR小鼠随机分为阴性对照组、模型组和125、250、500 mg/kg·bw大白菜外叶可溶性膳食纤维(CSF)干预组,通过分析小鼠肠道上皮组织结构,血清和肠道相关生化指标,紧密连接蛋白、短链脂肪酸、肠道菌群等,评估CSF对小鼠肠道屏障损伤的保护作用。结果:CSF能改善肠绒毛的完整性及排列情况,增加小肠绒毛长度及其与隐窝深度的比值;降低小鼠血清LPS、D-LA、DAO水平及肠道通透性;逆转CPA对小鼠小肠组织ZO-1、Claudin-1及Occludin蛋白表达的抑制;增加空肠、回肠杯状细胞和上皮内淋巴细胞数,上调SIgA、β-DF和LZM表达;16S rDNA测序检测小鼠肠道菌群,发现CSF可有效恢复小鼠肠道菌群物种多样性,对肠道菌群的结构和组成具有显著的调控作用。CSF干预组多种短链脂肪酸和总短链脂肪酸含量较模型组均有显著或极显著升高。结论:CSF对CPA致小鼠肠道物理屏障、免疫屏障、生物屏障的损伤均具有保护作用。 展开更多
关键词 大白菜外叶 可溶性膳食纤维 环磷酰胺 肠道屏障 肠道菌群
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菠萝叶纤维皮革在未来服饰产业中的创新融合与实践探索 被引量:1
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作者 孙婧渝 刘睿霓 赵悦彤 《西部皮革》 2025年第19期132-135,共4页
作为一种新型的环保材料,菠萝叶纤维皮革备受服装产业关注,对于推动纺织行业绿色转型、生态环保具有重要的现实意义。文章以菠萝叶纤维皮革为研究对象,探索其与未来服饰产业的深度融合路径。通过梳理其特性、工艺及现状,并结合其在服饰... 作为一种新型的环保材料,菠萝叶纤维皮革备受服装产业关注,对于推动纺织行业绿色转型、生态环保具有重要的现实意义。文章以菠萝叶纤维皮革为研究对象,探索其与未来服饰产业的深度融合路径。通过梳理其特性、工艺及现状,并结合其在服饰品牌中的应用以及面料设计等实践,构建了菠萝叶纤维皮革在服饰领域的创新融合模式,以期为促进纺织服装产业可持续性发展提供参考。 展开更多
关键词 菠萝叶纤维皮革 生物可降解 植物纤维 服饰产业
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菠萝叶纤维混凝土力学性能试验研究
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作者 史文翠 李涛 +1 位作者 田雨蒙 李旭阳 《砖瓦》 2025年第3期38-40,44,共4页
普通混凝土的抗拉强度远低于抗压强度,导致其抗裂性能差,为弥补这一缺陷,提出一种新型混凝土材料--菠萝叶纤维混凝土。通过设计正交试验,开展不同体积分数下菠萝叶纤维混凝土抗压强度和抗折强度试验研究,对比分析素混凝土和菠萝叶纤维... 普通混凝土的抗拉强度远低于抗压强度,导致其抗裂性能差,为弥补这一缺陷,提出一种新型混凝土材料--菠萝叶纤维混凝土。通过设计正交试验,开展不同体积分数下菠萝叶纤维混凝土抗压强度和抗折强度试验研究,对比分析素混凝土和菠萝叶纤维的破坏模式、力学性能变化规律,寻找菠萝叶纤维的最优掺量。结果表明:随着菠萝叶纤维掺量的增加,混凝土抗压强度和抗折强度均呈现先增加后降低的趋势,最优掺量分别为0.3%、0.45%。 展开更多
关键词 菠萝叶纤维混凝土 菠萝叶纤维体积分数 配合比设计 力学性能
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菠萝叶纤维自密实混凝土基本性能研究
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作者 任安琪 《佳木斯大学学报(自然科学版)》 2025年第11期119-122,共4页
为有效地利用菠萝叶纤维,减少菠萝叶纤维对环境的污染,探究菠萝叶纤维制备轻骨料自密实混凝土的可行性。制备了多组菠萝叶纤维自密实混凝土,对其工作性能与抗压强度开展了试验研究。试验结果显示:当菠萝叶纤维替代率为2%时,可以制备和... 为有效地利用菠萝叶纤维,减少菠萝叶纤维对环境的污染,探究菠萝叶纤维制备轻骨料自密实混凝土的可行性。制备了多组菠萝叶纤维自密实混凝土,对其工作性能与抗压强度开展了试验研究。试验结果显示:当菠萝叶纤维替代率为2%时,可以制备和易性良好,强度高的菠萝叶纤维自密实混凝土。从试验结果、经济与环境的综合效益考虑,建议在轻骨料自密实混凝土中菠萝叶纤维掺量宜控制在2%左右。 展开更多
关键词 菠萝叶纤维 自密实混凝土 抗压强度
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高温胁迫对棉花叶铃脱落及纤维特性的影响
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作者 李红英 李悦 +5 位作者 吕美云 杜峰 蹇瑷 张鑫 尹远渊 田苗 《陕西农业科学》 2025年第5期20-26,共7页
为了解决高温热害对棉花生长发育的影响问题,采用控制高温处理试验方法,研究不同高温处理在不同时期对棉花叶片、蕾铃脱落、叶片净光合速率、蕾铃形成率、果枝部位分布、产量构成因素和纤维品质的影响。结果表明:当棉花暴露在高温环境下... 为了解决高温热害对棉花生长发育的影响问题,采用控制高温处理试验方法,研究不同高温处理在不同时期对棉花叶片、蕾铃脱落、叶片净光合速率、蕾铃形成率、果枝部位分布、产量构成因素和纤维品质的影响。结果表明:当棉花暴露在高温环境下时,叶片和棉铃会异常脱落。随着温度的升高和高温持续时间的延长,叶片和棉铃脱落率明显增加。与对照相比,35℃高温9 d落叶率、落蕾铃率分别提高50.7%和33.7%;38℃高温9 d落叶率、落蕾铃率分别提高52.3%和37.5%。叶片的净光合速率显著降低,然而,随着棉花的生长发育,棉花叶片功能会得到一定程度的修复。高温胁迫时间越长,结铃率最多的区域就越接近棉株顶部。高温胁迫明显降低了棉花的产量和质量,9 d高温籽棉产量减产36.2%,导致纤维平均长度、均匀性下降4.50%和0.65%,断裂比强度和马克隆值分别上升了1.49%和2.22%。棉花花铃期高温可造成异常落叶落蕾铃,使纤维品质下降和减产,本研究结果可为开展防御高温灾害研究提供科学依据。 展开更多
关键词 棉花 高温胁迫 叶铃脱落 产量构成因素 纤维特性
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