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Evaluation of Strip-Processed Cotton Stalks as a Raw Material for Structural Panels
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作者 Aadarsha Lamichhane Arun Kuttoor Vasudevan +3 位作者 Ethan Dean Mostafa Mohammadabadi Kevin Ragon Ardeshir Adeli 《Journal of Renewable Materials》 2026年第1期37-52,共16页
This study explores a novel method for processing cotton stalks—an abundant agricultural byproduct—into long strips that serve as sustainable raw material for engineered bio-based panels.To evaluate the effect of ra... This study explores a novel method for processing cotton stalks—an abundant agricultural byproduct—into long strips that serve as sustainable raw material for engineered bio-based panels.To evaluate the effect of raw material morphology on panel’s performance,two types of cotton stalk-based panels were developed:one using long strips,maintaining fiber continuity,and the other using ground particles,representing conventional processing.A wood strand-based panel made from commercial southern yellow pine strands served as the control.All panels were bonded using phenol-formaldehyde resin and hot-pressed to a target thickness of 12.7 mm and density of 640 kg/m^(3).Their mechanical and physical properties were evaluated through internal bond,bending,thickness swelling,and water absorption tests.Both cotton stalk-based panels showed improved bonding performance compared to the control.The internal bond of the strip-based panel was nearly four times higher than that of the control,while the particlebased panel exceeded it by a factor of two.The strip-based panel showed approximately 15% lower bending stiffness than the wood strand-based panel,yet it surpassed it in load-carrying capacity by 5%.In contrast,the particleboard showed significantly lower bending performance than the strip-based and control panels,despite particle processing being a more conventional method.Both cotton stalk-based panels exhibited higher water absorption and thickness swelling than the wood strand panel.Overall,cotton stalk-based panels—particularly those using strip processing—show promisingmechanical properties,suggesting potential applications in sheathing,furniture,and interior paneling.However,improvements in dimensional stability are needed for broader use. 展开更多
关键词 Crop residues bio-based materials cotton stalk experimental testing bending performance internal bond water absorption
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RPSR1,a major quantitative trait locus for Pythium stalk rot resistance in maize 被引量:2
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作者 Shengfeng He Junbin Chen +4 位作者 Chuang Liu Dandan Liu Lei Wang Canxing Duan Wangsheng Zhu 《The Crop Journal》 2025年第1期51-61,共11页
Pythium stalk rot(PSR)is a destructive disease of maize,severely affecting yield and grain quality.The identification of quantitative trait loci(QTL)or genes for resistance to PSR forms the basis of diseaseresistant h... Pythium stalk rot(PSR)is a destructive disease of maize,severely affecting yield and grain quality.The identification of quantitative trait loci(QTL)or genes for resistance to PSR forms the basis of diseaseresistant hybrids breeding.In this study,a major QTL,Resistance to Pythium stalk rot 1(RPSR1),was identified from a set of recombinant inbred lines derived from MS71 and POP.Using a recombinant progeny testing strategy,RPSR1 was fine-mapped in a 472 kb interval.Through candidate gene expression,gene knock-down and knock-out studies,a leucine-rich repeat receptor-like kinase gene,PEP RECEPTOR 2(ZmPEPR2),was assigned as a PSR resistance gene.These results provide insights into the genetic architecture of resistance to PSR in maize,which should facilitate breeding maize for resistance to stalk rot. 展开更多
关键词 MAIZE Pythium stalk rot Quantitative trait loci(QTL) LRR-RLK ZmPEPR2
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Mechanical Mechanism of Maize Resistance to Stalk Rot
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作者 LEI En LI Wen-xue WANG Chao-bo 《Agricultural Science & Technology》 2025年第1期18-30,共13页
To investigate the formation mechanism of stalk mechanical strength,clarify the mechanical mechanisms underlying stalk rot resistance,and establish core mechanical indicators for evaluating stalk strength,this study u... To investigate the formation mechanism of stalk mechanical strength,clarify the mechanical mechanisms underlying stalk rot resistance,and establish core mechanical indicators for evaluating stalk strength,this study utilized six maize varieties with different levels of stalk rot resistance including ZD619,HXD88,XZY801,XY696,LS1,and ZH431 as test materials.The density,moisture content,bending strength,rind puncture strength,and elastic modulus of maize stalks at different growth stages were determined,and their intrinsic relationships with stalk rot resistance were analyzed.Our results indicated that the stalk density,moisture content,bending strength,and rind puncture strength were responsive to stalk rot resistance.However,these indicators were in significant correlations with stalk rot resistance only after the physiological maturity of maize.In particular,stalk rind puncture strength exhibited the closest correlation with stalk rot resistance at the late stage of physiological maturity.Stalk density directly affected bending strength and rind puncture strength,and it indirectly affected the elastic modulus.The elastic modulus encompassing both load and displacement can improve the reliability of stalk strength evaluation,serving as the best indicator of stalk toughness.The attenuation amplitude of the elastic modulus was always the largest whether it was caused by the aggravation of the disease,the growth stage delay,or the internode position rise,which significantly improved the sensitivity of stalk strength evaluation.The elastic modulus of maize stalks was correlated with stalk rot resistance from the silking stage to late physiological maturity stage,which not only effectively improved the accuracy of stalk strength evaluation but also was beneficial to improving the efficiency of maize variety selection.In conclusion,the elastic modulus of maize stalks can be used to evaluate the maize stalk strength truly and accurately.Especially in the region with a high stalk rot incidence,it was beneficial to improving the breeding efficiency of the maize varieties suitable for mechanical harvesting. 展开更多
关键词 Maize stalk stalk rot stalk bending strength stalk rind puncture strength Elastic modulus
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Bio-energy potential of cotton stalks via thermal technologies:a review
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作者 ELSHAREEF Hussien YU Yaohong +5 位作者 FU Yongkun REN Sihao TURSUNOV Obid LI Yu DONG Renjie ZHOU Yuguang 《Journal of Cotton Research》 2025年第4期561-576,共16页
One of the solutions to the global warming risk and other climate issues is to concentrate on research and development of utilizing biomass as a fossil fuel alternative.The current estimate of cotton residue waste in ... One of the solutions to the global warming risk and other climate issues is to concentrate on research and development of utilizing biomass as a fossil fuel alternative.The current estimate of cotton residue waste in the world is about 50 million tons.This massive volume of biomass waste should be turned into clean energy to avert burning the stalks in open fields after cotton harvesting.Therefore,harmful emissions such as CO_(2) will be reduced.This study aims to investigate the published literature to comprehend the bioenergy production from the thermal treatment of cotton stalks,including combustion,pyrolysis,carbonization,torrefaction,liquefaction,and gasification.Furthermore,the future outlook,utilization,and prospective challenges of agricultural biomass for biofuel production are discussed.According to the literature,biochar and bio-oil derived from cotton stalks have high heating values of about 27.5 and 37.2 MJ·kg~(–1),respectively.These values are double those of cotton stalk raw materials,which make it a good candidate for bioenergy production.This article offers valuable insight into cotton stalk utilization via thermochemical treatment and provides a solid reference for researchers,policymakers,and other stakeholders in this field. 展开更多
关键词 Cotton production BIOMASS Cotton stalks Thermal conversion Calorific value
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The ZmPIF4.1-ZmPTI1c-ZmMYB31 module regulates maize immunity to Gibberella stalk rot caused by Fusarium graminearum
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作者 Fugui Xie Liang Ma +4 位作者 Huilan Zhang Onyino Johnmark Okello Junjie Cui Qing Wang Xiquan Gao 《The Crop Journal》 2025年第4期1054-1067,共14页
Gibberella stalk rot(GSR)caused by Fusarium graminearum is one of the most devastating diseases of maize,seriously impacting maize yield and quality,as well as the ability to use technology of mechanical harvesting.En... Gibberella stalk rot(GSR)caused by Fusarium graminearum is one of the most devastating diseases of maize,seriously impacting maize yield and quality,as well as the ability to use technology of mechanical harvesting.Environmental conditions including photoperiod affect crop disease resistance.However,the mechanism underlying photoperiod-regulated maize GSR resistance remains unexplored.We found in this study that GSR resistance is regulated by the ZmPIF4.1(Phytochrome-Interacting Factor4)-ZmPTI1c(Pto-Interacting 1)-ZmMYB31 module coupled with photoperiod.The functional analysis of zmpti1c mutant indicated that ZmPTI1c negatively regulates maize GSR resistance.Short day promoted the disease progression in both zmpti1c and wild-type plants.ZmPTI1c promoter contains multiple predicted cis-acting elements for light responses.Yeast one-hybrid assay(Y1H),Electrophoretic mobility shift analysis(EMSA),and Dual-luciferase(LUC)reporter assays demonstrated that ZmPIF4.1 binds to the G-box in ZmPTI1c promoter and activates its expression.Moreover,expression levels of ZmPIF4 and ZmPTI1c were significantly higher under short day than under long day.ZmPTI1c interacted with and phosphorylated ZmMYB31.GSR resistance in zmmyb31 mutant was significantly increased than in wild type,indicating that ZmMYB31 also negatively regulated GSR resistance.Furthermore,ZmMYB31 suppressed the transcriptional activation of ZmPTI1c by ZmPIF4.1.Overall,ZmPIF4.1-ZmPTI1c-ZmMYB31negatively regulates maize immunity to GSR,which is likely modulated by photoperiod. 展开更多
关键词 Gibberella stalk rot MAIZE PAMP-triggered immunity Photoperiod ZmPIF4.1-ZmPTI1c-ZmMYB31 module
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Design and Application of Quantitative Adjustable Liquid Injection Device for Maize Stalk Center Borehole
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作者 Yan YE 《Asian Agricultural Research》 2025年第2期41-44,共4页
In view of the problems that the drilling depth can not be adjusted and the amount of liquid injection can not be accurately modulated in the local test device of maize variety breeding and disease resistance,combinin... In view of the problems that the drilling depth can not be adjusted and the amount of liquid injection can not be accurately modulated in the local test device of maize variety breeding and disease resistance,combining the test technical requirements of drilling,liquid injection and sealing of the penultimate radial pitch of maize straw from the ground,a quantitative adjustable liquid injection device for maize stalk center borehole was designed.Its structure,working principle,key technical parameters and practical application effect were elaborated in detail.The field experiment demonstrated that the quantitative adjustable liquid injection device for maize stalk center borehole could meet the requirements of the local test of maize stalk rot. 展开更多
关键词 Maize stalk Center borehole Quantitative adjustable liquid injection
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Lotus Stalk-derived Capacitive Carbon for Zinc-ion Hybrid Supercapacitors
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作者 PANG Renze CUI Jingwen +2 位作者 DING Liwen WU Shaowei CHENG Xinhua 《Journal of Wuhan University of Technology(Materials Science)》 2025年第6期1588-1597,共10页
Carbonaceous cathode materials were prepared by a low-cost and facile molten salt carbonization of lotus stalks in molten carbonates at 850℃for aqueous zinc-ion hybrid supercapacitors(ZHSCs).The lotus stalk-derived c... Carbonaceous cathode materials were prepared by a low-cost and facile molten salt carbonization of lotus stalks in molten carbonates at 850℃for aqueous zinc-ion hybrid supercapacitors(ZHSCs).The lotus stalk-derived carbon by carbonization of one hour displayed excellent capacitive performance benefits from the comprehensive effect of hierarchically porous structure with large SSA,more mesopores,good electrical conductivity and high heteroatom doping.Coin-type ZHSCs deliver 164.4 F·g^(-1)at 0.2 A·g^(-1)and 70.0 F·g^(-1)at 20 A·g^(-1)with capacitance retention of 42.6%assembled with carbonic cathode and Zn@Zn_(3)(PO_(4))_(2)anode using 2 M ZnSO4 solution as electrolyte.Moreover,coin-type ZHSCs deliver the maximum energy density of 65.0 Wh·kg^(-1)at 168.7 W·kg^(-1)and the maximum power density of 11.4 kW·kg^(-1)at 12.7 Wh·kg^(-1).Thanks to the multifunctional Zn_(3)(PO_(4))_(2)interphase as Zn^(2+)-transfer ionic conductor and physical barrier.Moreover,coin-type ZHSCs exhibit outstanding recyclability with capacitance retention of 97.5%and coulombic efficiency of 100%after 10000 charge-discharge cycles at 1 A·g^(-1). 展开更多
关键词 lotus stalks molten salt carbonization multifunctional Zn_(3)(PO_(4))_(2) interphase
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2CML-2型大垄宽窄双行木薯种植机设计与试验
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作者 崔振德 邓干然 +3 位作者 黄洁 杨望 廖宇兰 周思理 《中国农机化学报》 北大核心 2026年第4期1-6,46,共7页
为实现木薯大垄双行机械化种植模式,设计一种开沟、施肥、切种、排种、覆土一体化作业的垄作式宽窄双行木薯种植机。对样机关键部件进行设计,确定其施肥装置、对辊式切种机构、滑槽式排种系统工作参数,同时分析木薯切种排种装置作业过程... 为实现木薯大垄双行机械化种植模式,设计一种开沟、施肥、切种、排种、覆土一体化作业的垄作式宽窄双行木薯种植机。对样机关键部件进行设计,确定其施肥装置、对辊式切种机构、滑槽式排种系统工作参数,同时分析木薯切种排种装置作业过程,得到满足木薯种茎覆土厚度的必要作业条件。田间试验结果表明,当作业速度为0.5~0.9 m/s时,种段合格率≥98.3%、漏播率≤0.4%、露种率为0%、肥料覆盖率为100%、施肥量偏差为3.2%、种植深度合格率为97.6%、生产率为0.4~0.56 hm^(2)/h,试验指标均符合行业标准要求,试验结果满足设计和实际作业要求。 展开更多
关键词 木薯种植机 大垄宽窄行 施肥装置 排种装置 切种机构 整秆式
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改性生物炭制备条件优化和氨氮吸附机理研究
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作者 由昆 王晗 +1 位作者 高晨启 范维利 《水处理技术》 北大核心 2026年第2期65-71,共7页
为解决氨氮废水质量浓度超标的问题,以废弃玉米秸秆为对象,采用浸渍法,通过静态试验,分析了改性方式、热解温度和时间、碱液浓度和浸渍比、浸渍时间对生物炭制备的影响,确定生物炭的最佳制备条件,利用SEM、EDS、FTIR和BET等表征分析,并... 为解决氨氮废水质量浓度超标的问题,以废弃玉米秸秆为对象,采用浸渍法,通过静态试验,分析了改性方式、热解温度和时间、碱液浓度和浸渍比、浸渍时间对生物炭制备的影响,确定生物炭的最佳制备条件,利用SEM、EDS、FTIR和BET等表征分析,并通过动力学和热力学模型明确了氨氮吸附机理。不同改性方式的生物炭对氨氮的吸附效果依次为BCNa>BCFeNa>BCMgNa>BC,BCNa对氨氮的吸附量是BC的1.31倍。热解温度和碱液浓度对生物炭制备有明显影响,在热解温度300℃、热解时间2 h制备的生物炭,经1 mol/L的NaOH以1:15的浸渍比浸渍12 h后对氨氮的吸附量、去除率和出水浓度分别达到0.84 mg/g,83.25%和1.88 mg/L,出水质量浓度达到《地表水环境质量标准》(GB 3838-2002)V类标准。BCNa对氨氮的吸附符合准二级动力学和Langmuir等温线模型,理论最大吸附量gem和KF分别为6.418 mg/g和0.4032 g/(mg·min)。碱改性生物炭的过程中清除了生物炭孔径中的灰分和溶解性物质,增加了Na^(+)和-OH、C=O等官能团,促进对氨氮的离子交换,提高了改性生物炭的吸附效果。 展开更多
关键词 氨氮 生物炭 改性方式 吸附机理 玉米秸秆
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Biomechanical Characteristics of Rape Stalks 被引量:6
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作者 吴晓强 闫鹏 +4 位作者 王鑫 曹中华 刘春利 韩彩锐 牛应泽 《Agricultural Science & Technology》 CAS 2012年第5期972-978,共7页
[Objective] To study the correlation between the biomechanical properties of rape stalks and rape stem lodging. [Method] Through axial compression tests to the stalks of 4 different rape varieties, the change rules of... [Objective] To study the correlation between the biomechanical properties of rape stalks and rape stem lodging. [Method] Through axial compression tests to the stalks of 4 different rape varieties, the change rules of maximum stem bearing ca- pacity, maximum compressive strength, elastic modulus and moment of inertia along plant height were analyzed, as well as the effect of different varieties and water contents on the biomechanical property indices of rape stalks. [Result] The maximum loads of rape stalks presented liner decrease trend along with the increase of stem height, and all reached the maximums below the height of 50 cm. The maximum stem compressive strength and elastic modulus of the 4 varieties were increased with ascending height, but in a slow rate with small change, thus the modulus of e- lasticity could be considered as unchanged. The maximum bearing capacity, maxi- mum compressive strength and elastic modulus of dry rape stalks were higher than wet stalks, indicating that the water contents of rape stalks had significant effect on their mechanical properties. According to the actual lodging situations in filed, stalks of variety No. 1 owned the worst biomechanical properties and lodging degree, while the biomechanical properties of No. 6 and F5 were better than No. 1 and No. 9, and they also had stronger lodging-resistance. [Conclusion] The study provides parameters and bases for the design of mechanized production and mechanical deep processing of crops, and can better reveal the physical natures of organisms. The methods used in this study can also be used to screen excellent crop stalks. 展开更多
关键词 Rape stalk LODGING Axial compression Plant height Biomechanical performance
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Effects of Planting Density and Nitrogen Amount on Stalk Lodging-Resistance and Yield of Summer Maize in Sichuan Basin 被引量:6
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作者 陈尚洪 陈红琳 +1 位作者 沈学善 刘定辉 《Agricultural Science & Technology》 CAS 2012年第10期2147-2151,共5页
[Objective] The experiment was conducted to explore the suitable planting density and nitrogen amount for summer maize in Sichuan Basin with the objective to provide technical reservation and scientific basis for high... [Objective] The experiment was conducted to explore the suitable planting density and nitrogen amount for summer maize in Sichuan Basin with the objective to provide technical reservation and scientific basis for high-yielding cultivation technique.[Method] A widely planted maize cultivar 'Chengdan 30' was used as experimental material to study the effects of planting density and nitrogen amount on the stalk agronomic traits,stalk lodging-resistance mechanical characters,stalk breaking percentage and yield of maize.Experiment was arranged in a two-factor split plot design with three replicates.The planting density was the main factor with three density gradients(4.5×10^4,6.0×10^4 and 7.5×10^4 plants/hm^2) and the nitrogen amount was the second factor with two different levels of nitrogen content(300 and 375 kg/hm^2).[Result] The stalk lodging-resistance and yield were affected by planting density significantly.The increase of planting density would result in an increase of internode length and decrease of internode diameter,dry matter weight of per unit stalk length,rind penetration strength and breaking resistance of 3rd and 4th basal internodes.When planting density increased from 6.0×10^4 plants/hm2 to 7.5×10^4 plants/hm^2,the stalk breaking percentage in the whole growing season increased by 17.17%,and the yield reduced by 17.58%.The interaction between planting density and nitrogen amount affected the stalk breaking percentage in the whole growing season and yield significantly.The treatment with planting density of 6.0×104 plants/hm^2 and nitrogen amount of 375 kg/hm^2 of pure N was an optimal combination,which may not only control the stalk breaking percentage of whole growing stage effectively,but also could obtain an optimum grain yield.[Conclusion] In Sichuan Basin,the appropriate planting density and nitrogen amount for summer maize were 6.0×10^4 plants/hm^2 and 375 kg/hm^2. 展开更多
关键词 Summer maize Planting density Nitrogen amount stalk lodging resistance YIELD
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易利用碳源添加促进圣女果秸秆堆肥腐殖化的作用机制
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作者 韩卓雅 李绪燕 +6 位作者 庞宇琦 麦力文 李勤奋 余小兰 王定美 李光义 林嘉聪 《植物营养与肥料学报》 北大核心 2026年第2期421-436,共16页
【目的】圣女果秸秆作为典型难降解碳源类废弃物,木质纤维含量高、直接还田降解缓慢且腐殖化效率低。为突破其资源化利用瓶颈,本研究通过外加易利用碳源调控其腐殖化进程,旨在通过优化外源碳组分结构提升秸秆堆肥腐殖化效能,并解析其作... 【目的】圣女果秸秆作为典型难降解碳源类废弃物,木质纤维含量高、直接还田降解缓慢且腐殖化效率低。为突破其资源化利用瓶颈,本研究通过外加易利用碳源调控其腐殖化进程,旨在通过优化外源碳组分结构提升秸秆堆肥腐殖化效能,并解析其作用原理。【方法】以圣女果秸秆为堆肥原料,设置添加易利用碳源玉米粉(CSM)与未添加对照(SM)处理,调查堆肥过程中的温度变化,测定堆肥理化性状和腐殖化进程。并采用三维荧光光谱(EEM)、二维相关傅里叶变换红外光谱(2D-COS-FTIR)及腐殖前体标志物分析法,解析秸秆堆肥过程中腐殖化物质关键官能团的分子结构演化特征。【结果】SM和CSM处理的高温期分别持续14、22天。与堆肥初始相比,总有机碳分别下降5.40%和31.82%,总氮分别增加28.46%和29.95%。相比于SM处理,堆肥末期CSM处理的总磷和总钾含量分别增加102.42%和8.06%,堆体腐殖化率与腐殖化指数分别提高118.42%与56.26%。腐殖前提成分分析结果表明,在堆肥7~14天期间,CSM处理腐殖酸类组分峰强度较SM上升更快,而后期峰强度变幅小于SM,说明CSM处理加快了堆肥中期腐殖化进程,并保持腐殖质(HS)含量的稳定。相比于SM处理,CSM处理的氨基酸类物质下降更多,富里酸类和腐殖酸类物质含量更高。CSM处理在1600~1645 cm-1处的吸收峰高于SM处理,表明堆体内含C=C、C=O、O-H键的腐殖酸前体组分含量更高。在1100 cm-1附近的吸收峰代表了木质纤维素含量,CSM处理峰值衰减幅度大于SM,说明CSM处理下的秸秆分解更彻底。【结论】添加易利用碳源促进腐殖化的关键在于堆肥前体物质(多糖、多酚和氨基酸)的消耗速度显著加快,其中多糖与多酚类物质反应速度更快。CSM处理组下多糖类物质大量分解,多酚缩合,并与氨基化合物聚合快速形成腐殖酸类物质,芳香物质含量增多,腐殖化程度增加。因此,外源添加易利用碳源是促进圣女果秸秆高效堆肥化利用的有效措施。 展开更多
关键词 圣女果秸秆 堆肥 易利用碳 腐殖化 光谱
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富含麦角甾醇的香菇柄提取物调节大鼠脂质代谢
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作者 隋嘉伟 崔丹丹 +5 位作者 王惺雅 艾孜买提江·艾则孜 朱淑云 朱建华 高晓余 何文森 《现代食品科技》 北大核心 2026年第2期40-49,共10页
为明确富含麦角甾醇的香菇柄提取物对脂质代谢的影响,该文首先采用高效液相色谱法分析了香菇菌盖和菌柄中麦角甾醇的含量,随后在高胆固醇饮食诱导的大鼠模型中进一步考察了菌柄的正己烷提取物(SEHE)和甲醇/二氯甲烷提取物(SEMD)对大鼠... 为明确富含麦角甾醇的香菇柄提取物对脂质代谢的影响,该文首先采用高效液相色谱法分析了香菇菌盖和菌柄中麦角甾醇的含量,随后在高胆固醇饮食诱导的大鼠模型中进一步考察了菌柄的正己烷提取物(SEHE)和甲醇/二氯甲烷提取物(SEMD)对大鼠血脂、肝脏脂质及粪便脂质的调节作用。结果显示,香菇菌盖中的麦角甾醇含量为7.82 mg·g^(-1),显著高于菌柄的5.24 mg·g^(-1)。在两种菌柄提取物中,SEHE的麦角甾醇含量为20.31%(m/m),而SEMD则为6.12%(m/m)。动物实验表明,SEHE和SEMD均能显著降低大鼠血清中的低密度脂蛋白胆固醇(Low-Density Lipoprotein Cholesterol,LDL-C)水平,降幅分别为51.02%(P<0.05)和58.34%(P<0.05),同时有效降低LDL-C/高密度脂蛋白胆固醇(HDL-C)比值,降幅分别为54.61%(P<0.05)和53.04%(P<0.05)。这两种提取物还能减少大鼠肝脏中的胆固醇含量(-19.31%,P<0.05;-23.73%,P<0.05)和甘油三酯含量(-9.82%,P=0.11;-24.83%,P<0.05)。此外,SEMD还能显著降低大鼠血清中的总胆固醇(Total Cholesterol,TC)水平(-13.31%,P<0.05)。上述结果表明,两种菌柄提取物均能有效调节大鼠脂质代谢,具有作为预防心血管疾病的功能性食品成分的潜力。 展开更多
关键词 香菇菌柄提取物 脂质代谢 血脂 麦角甾醇 食用菌
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Effects of Feeding Corn Stalks on Economic Indicators of Tenebrio molitor 被引量:3
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作者 吉志新 温晓蕾 +6 位作者 王长青 余金咏 宋金昌 王哲 齐慧霞 胡振妍 李汉臣 《Agricultural Science & Technology》 CAS 2011年第10期1513-1516,共4页
[Objective] The study aimed at reducing the economic cost in feeding Tenebrio molitor and improving the utilization ratio of corn stalks.[Method] The effects of different proportions of corn stalks on the weigh of Ten... [Objective] The study aimed at reducing the economic cost in feeding Tenebrio molitor and improving the utilization ratio of corn stalks.[Method] The effects of different proportions of corn stalks on the weigh of Tenebrio molitor and the contents of crude protein,crude fat,Ca,P,dry matter and crude ash in the half-dry matter of Tenebrio molitor had been studied in the laboratory.[Result] Compared with the recipes of all wheat bran and pure fine fodder,feeding Tenebrio molitor by applying 30%-60% of corn stalks could significantly improve the content of crude protein in the half-dry materials of Tenebrio molitor,but it was detrimental to the improvement in weight of Tenebrio molitor and the accumulation of crude fat.To be specific,the recipe V(50% of corn stalks + 50% of fine fodder) was beneficial to the accumulation of dry matter and crude ash.The recipe VII(70% of corn stalks + 30% of fine fodder) and the recipe VIII(70% of corn stalks treated with Guangda feed leaven + 30% of fine fodder) were beneficial to the accumulation of crude protein,Ca and P.There were differences among the influences of corn stalks in different treatments on the crude protein and other nutrition indicators of Tenebrio molitor.[Conclusion] Appropriately applying corn stalks can improve the accumulation of the crude protein,crude ash,dry matter,Ca and P of Tenebrio molitor but was detrimental to the growth and development of Tenebrio molitor and the accumulation of crude fat. 展开更多
关键词 Tenebrio molitor larvae Corn stalks Nutrition indicators
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Effects of Dilute Acid-intensified Hydrolysis on Fermentative Biohydrogen Production Capacity of Maize Stalk 被引量:2
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作者 孙学习 李俊峰 +3 位作者 李涛 曾召刚 任保增 樊耀亭 《Agricultural Science & Technology》 CAS 2010年第8期1-3,共3页
[Objective] This study was to explore the effects of dilute acid hydrolysis on fermentative biohydrogen production capacity of maize stalk. [Method] Using maize stalks subjected to mechanical disintegration,steam expl... [Objective] This study was to explore the effects of dilute acid hydrolysis on fermentative biohydrogen production capacity of maize stalk. [Method] Using maize stalks subjected to mechanical disintegration,steam explosion and dilute acid hydrolysis as experimental materials,we measured and analyzed the effects of different treatments and particle size of maize stalk were analyzed. [Result] The optimal fermentative biohydrogen production was found under following parameters:pretreatment of 0.8% dilute H2SO4 following steam explosion,particle size of maize stalk of 0.425-0.850 mm,liquid-solid ratio [0.8% H2SO4 (M):stalk (W)] of 10:1. [Conclusion] Post steam explosion,dilute 0.8% dilute H2SO4 intensified hydrolysis on maize stalk could produce fermentative biohydrogen production capacity. 展开更多
关键词 Maize stalk Dilute acid-intensified hydrolysis Fermentative biohydrogen production
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C-stalk/Cu复合材料的温压成形与表征 被引量:5
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作者 张红 吴庆定 彭博 《中南林业科技大学学报》 CAS CSCD 北大核心 2014年第8期101-105,共5页
应用粉末冶金、木材科学与技术等交叉学科材料成形理论自主开发的木质粉末温压成形新技术,以棉梗粉末为基材,以电解紫铜粉末等为强化因子,在不添加任何可能造成环境污染的胶粘剂的前提下,制备的温压复合材料C-stal/Cu的静曲强度、内结... 应用粉末冶金、木材科学与技术等交叉学科材料成形理论自主开发的木质粉末温压成形新技术,以棉梗粉末为基材,以电解紫铜粉末等为强化因子,在不添加任何可能造成环境污染的胶粘剂的前提下,制备的温压复合材料C-stal/Cu的静曲强度、内结合强度分别高达85.30 MPa、7.13 MPa,磨耗量<0.05 g/100 r、吸水率<0.5%,且具有韧性断裂特征;采用C-stalk/Cu复合材料制备的滑动轴承的压溃强度、表观硬分别高达103.7MPa、53.1 HB,可望替代烧结青铜用于生产轻载滑动轴承,替代天然铁梨木、红木等珍贵木材用于生产高档工艺品,从而在节约有色金属与珍贵木材的同时为农林木质剩余物的高质清洁利用开辟一条新途径。 展开更多
关键词 C-stalk/Cu复合材料 温压成形 滑动轴承 工艺品 特性表征
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芦苇青贮替代玉米秸秆对绵羊体外瘤胃降解、发酵参数及甲烷生成的影响
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作者 员炜圩 刘丽丽 +6 位作者 张延龙 白天天 刘晓倩 李文洁 张秀敏 普宣宣 郭雪峰 《动物营养学报》 北大核心 2026年第2期1469-1479,共11页
本试验旨在通过全自动体外模拟瘤胃发酵技术探究芦苇青贮替代玉米秸秆对绵羊瘤胃降解、发酵参数和甲烷(CH_(4))生成的影响。试验选用抽穗期芦苇进行青贮,分别于青贮后7、14、30和60 d开封取样,进行发酵品质评定和常规养分测定。另取青贮... 本试验旨在通过全自动体外模拟瘤胃发酵技术探究芦苇青贮替代玉米秸秆对绵羊瘤胃降解、发酵参数和甲烷(CH_(4))生成的影响。试验选用抽穗期芦苇进行青贮,分别于青贮后7、14、30和60 d开封取样,进行发酵品质评定和常规养分测定。另取青贮30 d后的芦苇青贮分别以0(对照)、25%、50%、75%及100%比例替代玉米秸秆后,利用全自动体外模拟瘤胃发酵系统进行发酵试验。结果表明:1)芦苇青贮后干物质、有机物、粗蛋白质、中性洗涤纤维和酸性洗涤纤维含量与青贮前相比数值上无太大变化,各青贮时间点间差异不显著(P>0.05)。2)与对照组相比,50%、75%和100%组体外瘤胃干物质(DM)降解率、总产气量和CH_(4)产量显著降低(P<0.05),25%组体外瘤胃DM降解率无显著差异(P>0.05),但CH_(4)产量显著降低(P<0.05)。3)与对照组相比,50%、75%和100%组体外瘤胃总挥发性脂肪酸浓度显著降低(P<0.05),其中乙酸摩尔比例显著增加(P<0.05),25%组的丙酸摩尔比例显著增加(P<0.05)。综上所述,芦苇青贮替代玉米秸秆比例为25%时,可促进瘤胃发酵向丙酸型转变,降低CH_(4)产量,并未对瘤胃底物降解产生负面影响。 展开更多
关键词 芦苇青贮 玉米秸秆 体外瘤胃发酵 甲烷产量
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Research upon the Structure and Pyrolysis of Cotton Stalk 被引量:1
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作者 冯雪 华坚 +2 位作者 毛炜坤 吴莉丽 尹华强 《Agricultural Science & Technology》 CAS 2011年第2期175-178,182,共5页
[Purpose]To research upon the structure and pyrolysis of cotton stalk.[Method] In this paper thermogravimetric analysis is adopted to study pyrolysis characteristics on the longitudinal direction of cotton stalk(the ... [Purpose]To research upon the structure and pyrolysis of cotton stalk.[Method] In this paper thermogravimetric analysis is adopted to study pyrolysis characteristics on the longitudinal direction of cotton stalk(the stick and the root)and on the traverse direction(the cuticle,cortex and medulla).[Result] Cotton stalk is a material of uneven and irregular texture,and there are great differences in the structure of all these parts on the longitudinal and traverse directions,especially in the contents of different components in each layer.The reaction in the stick and root becomes violent along with the increase in the rising rate of temperature,and carbon yield rate decreases in turn.Besides with the same rising rate of temperature,carbon yield rate of cotton stick is higher than the one of cotton root.Carbon yield rates of cuticle,cortex and medulla decrease in turn while the violence of the reaction in cuticle is less severe than in cortex and medulla.[Conclusion] It has provided theoretical basis for obtaining activated carbon technology of cotton stick. 展开更多
关键词 Cotton stalk Cotton root STRUCTURE PYROLYSIS
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温压成形法制备C-stalk/Cu复合材料的结构与性能 被引量:3
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作者 张红 彭博 吴庆定 《粉末冶金材料科学与工程》 EI 北大核心 2014年第4期665-670,共6页
以棉梗粉末(C-stalk)为基材、电解紫铜粉末为强化因子,添加聚乙烯(PE)作为分散剂,采用温压成形法制备C-stalk/Cu复合材料标准试件和滑动轴承,测定该复合材料的静曲强度、内结合强度、吸水率、表面耐磨性、以及轴承的压溃强度与表观硬度... 以棉梗粉末(C-stalk)为基材、电解紫铜粉末为强化因子,添加聚乙烯(PE)作为分散剂,采用温压成形法制备C-stalk/Cu复合材料标准试件和滑动轴承,测定该复合材料的静曲强度、内结合强度、吸水率、表面耐磨性、以及轴承的压溃强度与表观硬度,并观察试件的断口形貌。结果表明:C-stalk/Cu复合材料塑化充分、吸水率低,其静曲强度、内结合强度分别高达92.67 MPa和7.55 MPa,磨耗量仅为优等实木地板漆膜的1/2(<0.05 g/100 r),优于相对密度为80%的6-6-3青铜烧结材料;C-stalk/Cu复合材料制备的滑动轴承,其压溃强度、表观硬度分别高达105.2 MPa和55 HB,可望用来替代烧结青铜生产轻载滑动轴承。 展开更多
关键词 C-stalk CU复合材料 温压成形 滑动轴承 特性表征
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不同生物质焦-高铁赤泥复合球团热还原对比研究
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作者 苏思羽 刘燕 +3 位作者 刘珈维 蔡震雷 张海明 张廷安 《中国有色冶金》 北大核心 2026年第1期155-161,共7页
基于生物炭相较于传统煤炭能源具有含氢量多、含碳量少、含氧量多、含硫量低等特点,本文研究了三种生物质焦-高铁赤泥复合球团的热还原机理,对比了三种生物质焦对球团金属化率、物相结构、微观形貌以及孔径的影响,得出以下结论。麦麸焦... 基于生物炭相较于传统煤炭能源具有含氢量多、含碳量少、含氧量多、含硫量低等特点,本文研究了三种生物质焦-高铁赤泥复合球团的热还原机理,对比了三种生物质焦对球团金属化率、物相结构、微观形貌以及孔径的影响,得出以下结论。麦麸焦在复合球团金属化率、物相结构方面比其他两种生物质焦复合球团均有一定的优势,在1100℃下热还原2 h,金属化率达到86.5%,比冶金焦提高5.2%,远高于相同条件下松木焦复合球团与玉米焦复合球团;麦麸焦-高铁赤泥复合球团主要物相组成为金属铁(44.3%)、碳(10.6%)、钙铝黄长石(Ca_(2)Al_(2)SiO_(7))以及霞石(NaAlSiO_(4)),适用于涡流熔融还原炼铁工艺;麦麸焦-高铁赤泥复合球团气孔结构更为均匀,孔径约为2~4 nm,比表面积较大,整体结构较好,表面金属化程度更高,残余杂质较少。该研究结果对实现生物质资源高效利用具有重要的参考价值。 展开更多
关键词 高铁赤泥 麦麸焦 玉米秸秆焦 松木焦 复合球团 金属化率 气孔分布
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