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Research progress on classification,source,application of phytosterol esters,and their thermal oxidation stability
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作者 Dami Li Shangde Sun Jingnan Chen 《Grain & Oil Science and Technology》 CAS 2024年第1期1-11,共11页
Phytosterol esters can effectively decrease serum cholesterol concentration in the human body and prevent cardio-cerebrovascular diseases.It was found that phytosterol esters exhibited better solubility and bioavailab... Phytosterol esters can effectively decrease serum cholesterol concentration in the human body and prevent cardio-cerebrovascular diseases.It was found that phytosterol esters exhibited better solubility and bioavailability than free phytosterols.In recent years,phytosterol esters have attracted increasing attention.However,during food processing,phytosterol esters are susceptible to degradation at high temperatures,resulting in certain losses and formation of potentially harmful substances for humans.This paper reviews the relevant literatures and updates on the thermal oxidation stability of phytosterol esters in recent years from the following aspects:(i)Sources,physiological activities,and applications of phytosterol esters;(ii)Oxidation mechanism of phytosterol esters;(iii)Effects of phytosterols species,the volume of addition,food matrix,heating temperature and time,and antioxidants on the thermal loss and oxidation stability of phytosterol esters.The research progress on the safety of phytosterol esters is also discussed in detail.Additionally,the prospects for future research are highlighted. 展开更多
关键词 Thermal stability Loss rate oxidation mechanism phytosterol esters
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The effect of protein oxidation on the formation of advanced glycation end products after chicken myofibrillar protein glycation 被引量:1
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作者 Zongshuai Zhu Anthony Pius Bassey +1 位作者 Ming Huang Iftikhar Ali Khan 《Food Science and Human Wellness》 SCIE CSCD 2023年第5期1571-1579,共9页
Investigation that protein oxidation to the formation of advanced glycation end products(AGEs)after chicken myofibrillar protein glycation is limited.Models of protein oxidation induced by different concentrations of ... Investigation that protein oxidation to the formation of advanced glycation end products(AGEs)after chicken myofibrillar protein glycation is limited.Models of protein oxidation induced by different concentrations of hydroxyl radicals(·OH)were developed after the chicken myofibrillar protein mild glycation(MPG).Results exhibited that levels of AGEs and surface hydrophobicity(H_(0))steadily increased with the a ddition of h ydrogen peroxide(H_(2)O_(2))concentration.However,levels of s ulfhydryl group,free amino group,and particle size gradually decreased with the H_(2)O_(2)concentration.The protein carbonyl value increased in H_(2)O_(2)concentration until 10 mmol/L.Pearson's correlation indicated that MPG structure modification(unfolding and degradation)induced by protein oxidation were significantly positively correlated with AGEs concentration(P<0.05).Finally,a mechanism was proposed to hypothesize t he effect of protein oxidation on the formation of AGEs under MPG conditions. 展开更多
关键词 Protein oxidation Glycated myofibrillar protein Structure changes Advanced glycation end products
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Targeting oxidative stress with natural products: A novel strategy for esophageal cancer therapy
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作者 Fang Cao Han-Ling Zhang +2 位作者 Cui Guo Xue-Liang Xu Qiang Yuan 《World Journal of Gastrointestinal Oncology》 SCIE 2024年第2期287-299,共13页
Esophageal cancer(ESC)is a malignant tumor that originates from the mucosal epithelium of the esophagus and is part of the digestive tract.Although the exact pathogenesis of ESC has not been fully elucidated,excessive... Esophageal cancer(ESC)is a malignant tumor that originates from the mucosal epithelium of the esophagus and is part of the digestive tract.Although the exact pathogenesis of ESC has not been fully elucidated,excessive oxidative stress is an important characteristic that leads to the development of many cancers.Abnormal expression of several proteins and transcription factors contributes to oxidative stress in ESCs,which alters the growth and proliferation of ESCs and promotes their metastasis.Natural compounds,including alkaloids,terpenes,polyphenols,and xanthine compounds,can inhibit reactive oxygen species production in ESCs.These compounds reduce oxidative stress levels and subsequently inhibit the oc-currence and progression of ESC through the regulation of targets and pathways such as the cytokine interleukins 6 and 10,superoxide dismutase,the NF-+ACY-kappa+ADs-B/MAPK pathway,and the mammalian Nrf2/ARE target pathway.Thus,targeting tumor oxidative stress has become a key focus in anti-ESC therapy.This review discusses the potential of Natural products(NPs)for treating ESCs and summarizes the application prospects of oxidative stress as a new target for ESC treatment.The findings of this review provide a reference for drug development targeting ESCs.Nonetheless,further high-quality studies will be necessary to determine the clinical efficacy of these various NPs. 展开更多
关键词 Oxidative stress Natural products Esophageal cancer Reactive oxygen species
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Effect of Italian Sour Cherry (<i>Prunus cerasus</i>L.) on the Formation of Advanced Glycation End Products and Lipid Peroxidation 被引量:2
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作者 Gianna Ferretti Davide Neri Tiziana Bacchetti 《Food and Nutrition Sciences》 2014年第16期1568-1576,共9页
Sweet and sour cherries contain several polyphenols that possess antioxidant and anti-inflammatory properties. Aim of this study was to investigate the effect of the maturity stage on phenol content and biological pro... Sweet and sour cherries contain several polyphenols that possess antioxidant and anti-inflammatory properties. Aim of this study was to investigate the effect of the maturity stage on phenol content and biological properties of extract of a local Morello-type of sour cherry (Prunus cerasus?L.), “visciola”. The study of total phenol content and total antioxidant potential was associated with the evaluation of the antioxidant property of extracts using a copper catalyzed human low density lipoproteins (LDL) oxidation as experimental model. Moreover, using albumin glycated by methylglyoxal, we evaluated the anti-glycation effect of fruit extract. The results demonstrated that fully ripened fruits exert higher antioxidant and anti-glycation properties when compared with partially ripened fruits. Information about the health-promoting components of “visciola” could lead to a better understanding and an increased consumption of these, including its use as functional food. 展开更多
关键词 SOUR CHERRY “Visciola” Antioxidants Fruit Maturation LDL oxidation Glycation METHYLGLYOXAL Advanced Glycation End products POLYPHENOLS
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Glyoxal induced advanced glycation end products formation in chicken meat emulsion instead of oxidation
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作者 Rui Fang Zongshuai Zhu +2 位作者 Anthony Pius Bassey Iftikhar Ali Khan Ming Huang 《Food Science and Human Wellness》 SCIE 2022年第4期828-836,共9页
Advanced glycation end products(AGE) are potential harmful substances formed in the advanced Maillard reaction and increasingly investigated in muscle foods. However, the contribution of oxidation to the AGE formation... Advanced glycation end products(AGE) are potential harmful substances formed in the advanced Maillard reaction and increasingly investigated in muscle foods. However, the contribution of oxidation to the AGE formation is controversial. Moreover, reports on glyoxal(GO) induced AGE formation in chicken meat emulsion(CME) are limited. Thus, the effects of GO on emulsifying properties, rheological behavior and AGE formation in CME were investigated. Our findings exhibited that levels of Nε-carboxymethyllysine(CML) and Nε-carboxyethyllysine(CEL) were associated with lipid oxidation but not significantly(P > 0.05). Levels of AGE peaked when GO concentration ranged from 5 mmol/L(CML) to 10 mmol/L(CEL). The droplets’ aggregation associated with the disulfide bond when the concentration of GO was at 0.5–30 mmol/L while non-disulfide bond association occurred at 30–50 mmol/L GO concentration. In conclusion, compared to the effect of oxidation, GO exhibited the main role in the AGE formation of CME. This study will provide theoretical significance for further understanding and controlling the formation of AGE in CME. 展开更多
关键词 GLYOXAL EMULSION oxidation Advanced glycation end products Chicken meat
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Synthesis of Novel 1-(2'-Alkylthioethoxy)methyl-5-flourouracil and Its Oxidation Products
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《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 1999年第S1期32-32,共1页
关键词 Alkylthioethoxy)methyl-5-flourouracil and Its oxidation products Synthesis of Novel 1
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Efficient solar fuel production enabled by an iodide oxidation reaction on atomic layer deposited MoS_(2)
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作者 Young Sun Park Gyumin Jang +12 位作者 Inkyu Sohn Hyungsoo Lee Jeiwan Tan Juwon Yun Sunihl Ma Jeongyoub Lee Chan Uk Lee Subin Moon Hayoung Im Seung-Min Chung Seungho Yu Hyungjun Kim Jooho Moon 《Carbon Energy》 SCIE EI CAS CSCD 2023年第12期200-214,共15页
Oxygen evolution reaction(OER)as a half-anodic reaction of water splitting hinders the overall reaction efficiency owing to its thermodynamic and kinetic limitations.Iodide oxidation reaction(IOR)with low thermodynami... Oxygen evolution reaction(OER)as a half-anodic reaction of water splitting hinders the overall reaction efficiency owing to its thermodynamic and kinetic limitations.Iodide oxidation reaction(IOR)with low thermodynamic barrier and rapid reaction kinetics is a promising alternative to the OER.Herein,we present a molybdenum disulfide(MoS_(2))electrocatalyst for a high-efficiency and remarkably durable anode enabling IOR.MoS_(2)nanosheets deposited on a porous carbon paper via atomic layer deposition show an IOR current density of 10 mA cm^(–2)at an anodic potential of 0.63 V with respect to the reversible hydrogen electrode owing to the porous substrate as well as the intrinsic iodide oxidation capability of MoS_(2)as confirmed by theoretical calculations.The lower positive potential applied to the MoS_(2)-based heterostructure during IOR electrocatalysis prevents deterioration of the active sites on MoS_(2),resulting in exceptional durability of 200 h.Subsequently,we fabricate a two-electrode system comprising a MoS_(2)anode for IOR combined with a commercial Pt@C catalyst cathode for hydrogen evolution reaction.Moreover,the photovoltaic–electrochemical hydrogen production device comprising this electrolyzer and a single perovskite photovoltaic cell shows a record-high current density of 21 mA cm^(–2)at 1 sun under unbiased conditions. 展开更多
关键词 iodide oxidation reaction molybdenum sulfide photovoltaic-electrochemical hydrogen production solar hydrogen
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Promoting and controlling electron transfer of furfural oxidation efficiently harvest electricity,furoic acid,hydrogen gas and hydrogen peroxide
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作者 Denghao Ouyang Daihong Gao +2 位作者 Jinpeng Hong Zhao Jiang Xuebing Zhao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第4期135-147,共13页
Conventional chemical oxidation of aldehydes such as furfural to corresponding acids by molecular oxygen usually needs high pressure to increase the solubility of oxygen in aqueous phase,while electrochemical oxidatio... Conventional chemical oxidation of aldehydes such as furfural to corresponding acids by molecular oxygen usually needs high pressure to increase the solubility of oxygen in aqueous phase,while electrochemical oxidation needs input of external electric energy.Herein,we developed a liquid flow fuel cell(LFFC)system to achieve oxidation of furfural in anode for furoic acid production with co-production of hydrogen gas.By controlling the electron transfer in cathode for reduction of oxygen,efficient generation of electricity or production of H_(2)O_(2)were achieved.Metal oxides especially Ag_(2)O have been screened as the efficient catalyst to promote the oxidation of aldehydes,while liquid redox couples were used for promoting the kinetics of oxygen reduction.A novel alkaline-acidic asymmetric design was also used for anolyte and catholyte,respectively,to promote the efficiency of electron transfer.Such an LFFC system achieves efficient conversion of chemical energy of aldehyde oxidation to electric energy and makes full use the transferred electrons for high-value added products without input of external energy.With(VO_(2))_(2)SO_(4)as the electron carrier in catholyte for four-electron reduction of oxygen,the peak output power density(Pmax)at room temperature reached 261 mW/cm^(2)with furoic acid and H_(2)yields of 90%and 0.10 mol/mol furfural,respectively.With anthraquinone-2-sulfonate(AQS)as the cathodic electron carrier,Pmaxof 60 mW/cm^(2)and furoic acid,H_(2)and H_(2)O_(2)yields of 0.88,0.15 and 0.41 mol/mol furfural were achieved,respectively.A new reaction mechanism on furfural oxidation on Ag_(2)O anode was proposed,referring to one-electron and two-electron reaction pathways depending on the fate of adsorbed hydrogen atom transferred from furfural aldehyde group. 展开更多
关键词 oxidation of furfural Liquid flow fuel cell Electricity generation Hydrogen production Electron transfer
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XPS,Chemical Trapping, and DRFTIR Study on Mechanism of By-Products Formation in Selective (AMM)Oxidation of Propylene on MoO_3 and γ-Bi_2MoO_6
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作者 Weng Weizheng, Yan Jiyang, Cai Junxiu, Dai Shenjun,Cao Shoujing, Chen Lingling and Wan Huilin (Department of Chemistry, Xiamen University, Ximen) 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 1990年第4期346-353,共8页
XPS and chemical trapping experments with H2, NH3, and CH3I as trapping agents were carried out for studying the adsorption of propylene over MoO3 or r-Bi2MoO6. The results show that the fragmentation of carbon chain ... XPS and chemical trapping experments with H2, NH3, and CH3I as trapping agents were carried out for studying the adsorption of propylene over MoO3 or r-Bi2MoO6. The results show that the fragmentation of carbon chain takes place during the adsorption of propylene through breaking C -C double bond and C-C bond on Mo2+ and the adjacent lattice oxygen, leading to formation of the oxygen- or nitrogen-containing by-products of C1 and C2 species. Diffuse-Reflection Fourier Transform Infrared (DRFTIR) Spectroscopy was used to study the surface species formed during the chemisorption and reaction of propylene over y-Bi2MoO6 at a lower temperature. The results that C1, C2 adspecies were detected by DRFTIR at 175℃ are consistent with the results of XPS and chemical trapping experiments, whlle the results at 50℃ Grasselli et al. 展开更多
关键词 SELECTIVE (amm)oxidation of PROPYLENE Mechanism of by-products FORMATION CHEMICAL TRAPPING DRFTIR
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Advanced glycation end products:Key mediator and therapeutic target of cardiovascular complications in diabetes
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作者 Savita Bansal Archana Burman Asok Kumar Tripathi 《World Journal of Diabetes》 SCIE 2023年第8期1146-1162,共17页
The incidence of type 2 diabetes mellitus is growing in epidemic proportions and has become one of the most critical public health concerns.Cardiovascular complications associated with diabetes are the leading cause o... The incidence of type 2 diabetes mellitus is growing in epidemic proportions and has become one of the most critical public health concerns.Cardiovascular complications associated with diabetes are the leading cause of morbidity and mortality.The cardiovascular diseases that accompany diabetes include angina,myocardial infarction,stroke,peripheral artery disease,and congestive heart failure.Among the various risk factors generated secondary to hyperglycemic situations,advanced glycation end products(AGEs)are one of the important targets for future diagnosis and prevention of diabetes.In the last decade,AGEs have drawn a lot of attention due to their involvement in diabetic pathophysiology.AGEs can be derived exogenously and endogenously through various pathways.These are a nonhomogeneous,chemically diverse group of compounds formed nonenzymatically by condensation between carbonyl groups of reducing sugars and free amino groups of protein,lipids,and nucleic acid.AGEs mediate their pathological effects at the cellular and extracellular levels by multiple pathways.At the cellular level,they activate signaling cascades via the receptor for AGEs and initiate a complex series of intracellular signaling resulting in reactive oxygen species generation,inflammation,cellular proliferation,and fibrosis that may possibly exacerbate the damaging effects on cardiac functions in diabetics.AGEs also cause covalent modifications and cross-linking of serum and extracellular matrix proteins;altering their structure,stability,and functions.Early diagnosis of diabetes may prevent its progression to complications and decrease its associated comorbidities.In the present review,we recapitulate the role of AGEs as a crucial mediator of hyperglycemia-mediated detrimental effects in diabetes-associated complications.Furthermore,this review presents an overview of future perspectives for new therapeutic interventions to ameliorate cardiovascular complications in diabetes. 展开更多
关键词 Type 2 diabetes mellitus Cardiovascular complications HYPERGLYCEMIA Advanced glycation end products Reactive oxygen species Oxidative stress Endothelial cells Receptor of advanced glycation end products Anti-advanced glycation end products strategies
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Cu-Zn-based alloy/oxide interfaces for enhanced electroreduction of CO_(2) to C_(2+) products
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作者 Zi-Yang Zhang Hao Tian +3 位作者 Lei Bian Shi-Ze Liu Yuan Liu Zhong-Li Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第8期90-97,I0004,共9页
The electrochemical CO_(2)reduction reaction to produce multi-carbon(C_(2+)) hydrocarbons or oxygenate compounds is a promising route to obtain a renewable fuel of high energy density.However,producing C_(2+)at high c... The electrochemical CO_(2)reduction reaction to produce multi-carbon(C_(2+)) hydrocarbons or oxygenate compounds is a promising route to obtain a renewable fuel of high energy density.However,producing C_(2+)at high current densities is still a challenge.Herein,we develop a Cu-Zn alloy/Cu-Zn aluminate oxide composite electrocatalytic system for enhanced conversion of CO_(2)to C_(2+)products.The Cu-Zn-Al-Layered Double Hydroxide(LDH) is used as a precursor to decompose into uniform Cu-Zn oxide/Cu-Zn aluminate pre-catalyst.Under electrochemical reduction,Cu-Zn oxide generates Cu-Zn alloy while Cu-Zn aluminate oxide remains unchanged.The alloy and oxide are closely stacked and arranged alternately,and the aluminate oxide induces the strong electron interaction of Cu,Zn and Al,creating a large number of highly active reaction interfaces composed of 0 to+3 valence metal sites.With the help of the interface effect,the optimized Cu_(9)Zn_(1)/Cu_(0.8)Zn_(0.2)Al_(2)O_(4)catalyst achieves a Faradaic efficiency of 88.5% for C_(2+)products at a current density of 400 mA cm^(-2)at-1.15 V versus reversible hydrogen electrode.The in-situ Raman and attenuate total reflectance-infrared absorption spectroscopy(ATR-IRAS) spectra show that the aluminate oxide at the interface significantly enhances the adsorption and activation of CO_(2)and the dissociation of H2O and strengthens the adsorption of CO intermediates,and the alloy promotes the C-C coupling to produce C_(2+)products.This work provides an efficient strategy to construct highly active reaction interfaces for industrial-scale electrochemical CO_(2)RR. 展开更多
关键词 Electrochemical CO_(2)reduction reaction C_(2+)products Cu-Zn alloy Cu-Zn aluminate oxide Interface
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Photoelectrocatalytic Oxidation of Ethinylestradiol on a Ti/TiO<sub>2</sub>Electrode: Degradation Efficiency and Search for By-Products
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作者 Karla Moreira Vieira Fabiana Maria Monteiro Paschoal +2 位作者 Maria Valnice Boldrin Zanoni Clésia Cristina Nascentes Rodinei Augusti 《Green and Sustainable Chemistry》 2014年第3期151-161,共11页
The degradation of ethinylestradiol (EE, an orally bio-active estrogen) in an aqueous-methanolic solution using a Ti/TiO2 thin-film electrode and UV radiation (a photoelectrocatalytic system) was evaluated. Hence, HPL... The degradation of ethinylestradiol (EE, an orally bio-active estrogen) in an aqueous-methanolic solution using a Ti/TiO2 thin-film electrode and UV radiation (a photoelectrocatalytic system) was evaluated. Hence, HPLC/UV analysis shows that EE (at 0.34 mmol) is totally consumed after 30 minutes of exposure to the photoelectrocatalytic system in the presence of Na2SO4 (0.1 mol·L-1) and with an applied bias potential of +1.0 V versus the Ag/AgCl reference electrode. Moreover, monitoring by direct infusion electrospray ionization mass spectrometry (ESI-MS) and SPME-GC/ MS (solid phase microextraction coupled with gas chromatography-mass spectrometry) reveals that apparently no degradation products are formed under these conditions. Hence, this study demonstrates that the photoelectrocatalytic system can be efficiently used to promote the complete degradation (and likely mineralization) of this hormone under these conditions. 展开更多
关键词 PHOTOELECTROCATALYTIC oxidation ETHINYLESTRADIOL Ti/TiO2 Thin-Film ELECTRODE Degradation Efficiency SEARCH for By-products
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湿地甲烷代谢对氮输入响应的复杂性及其机制分析
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作者 仝川 罗敏 谭季 《生态学报》 CAS CSCD 2024年第4期1324-1335,共12页
氮素是影响湿地甲烷代谢过程的重要因素之一。氮输入是否影响湿地甲烷排放,增加全球气候变暖的风险,一直受到科学界的高度关注。目前关于氮输入对湿地甲烷排放影响的几篇meta-analysis文章的主要结论均为氮输入促进湿地甲烷排放,但是多... 氮素是影响湿地甲烷代谢过程的重要因素之一。氮输入是否影响湿地甲烷排放,增加全球气候变暖的风险,一直受到科学界的高度关注。目前关于氮输入对湿地甲烷排放影响的几篇meta-analysis文章的主要结论均为氮输入促进湿地甲烷排放,但是多篇研究性论文的结果为氮输入抑制或不影响湿地甲烷排放,由此可见氮输入对湿地甲烷排放的影响十分复杂。湿地甲烷代谢包括湿地甲烷产生、氧化和传输过程以及最终的甲烷排放,综述不同形态氮输入对水稻田、内陆湿地和滨海湿地甲烷排放通量影响的复杂性;分析湿地甲烷产生速率和途径、甲烷好氧氧化和硝酸盐/亚硝酸盐型厌氧甲烷氧化对不同形态氮输入的响应及机制。硝态氮输入对湿地甲烷产生具有抑制作用已成共识,然而其它形态氮输入对湿地土壤甲烷产生的影响具有较大的不确定性,氮输入影响湿地甲烷产生的机制主要包括电子受体-底物竞争机制、离子毒性机制、促进植物生长-碳底物供给增加机制以及pH调控机制等。氮输入对湿地好氧甲烷氧化影响的研究多集中在水稻田和泥炭湿地,影响的结果包括促进、抑制或影响不显著;氮输入促进湿地土壤硝酸盐/亚硝酸盐型厌氧甲烷氧化。着重分析氮输入对湿地甲烷代谢影响不确定性的成因,指出湿地甲烷代谢对氮输入的响应是一个生态系统层面的生物地球化学过程,并提出氮输入是最具争议效应的驱动因素之一,其对甲烷代谢的影响很难得出明确的模式,可能需要考虑湿地土壤特征(本底氮含量、有机碳含量、土壤C:N值等)以及植物群落类型和特征,最后提出今后在氮输入对湿地甲烷代谢影响方面应加强的研究领域。 展开更多
关键词 氮输入 甲烷通量 甲烷产生和氧化 不确定性 生态系统特征 湿地
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固体氧化物电解槽辅助煤电机组深度调峰技术可行性研究
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作者 王林 刘晓莎 +3 位作者 胡平 李治宽 李昭 张鹏 《热力发电》 CAS CSCD 2024年第2期133-141,共9页
常规的煤电机组灵活性改造方案,难以消除频繁快速变负荷对热力系统造成的潜在寿命折损与设备安全风险。为提高煤电机组参与深度调峰的长期安全性与经济性,以某国产超超临界二次再热1000 MW燃煤机组为应用对象,提出了基于氢储能系统的煤... 常规的煤电机组灵活性改造方案,难以消除频繁快速变负荷对热力系统造成的潜在寿命折损与设备安全风险。为提高煤电机组参与深度调峰的长期安全性与经济性,以某国产超超临界二次再热1000 MW燃煤机组为应用对象,提出了基于氢储能系统的煤电机组“健康调峰”技术路线,并论证了调峰煤电制氢的间接碳减排意义。在此基础上,分析比较了不同制氢工艺与煤电厂生产条件的匹配程度,认为固体氧化物电解槽(SOEC)制氢为综合最优方案,据此给出了SOEC耦合煤电调峰的原理性设计方案,最后以年度负荷曲线对新方案进行了财务分析。计算结果表明,示例机组自第6年起每年可获得1.07亿元/年的净利润,每年减少碳排放281.92 t,同时获得设备延寿、降耗减碳等其他收益。相关结论对于指导调峰煤电机组的健康安全运行具有参考意义。 展开更多
关键词 电解制氢 固体氧化物电解槽 煤电机组 可行性 财务分析
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抗氧化剂在动物生产中的应用
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作者 董滢 周庆安 +1 位作者 任建存 乔雨 《现代畜牧科技》 2024年第1期77-80,共4页
氧化应激是现代畜牧业面临的重要挑战之一。随着世界畜牧业的技术不断提升和需求不断增长,如何保障家畜健康和生产效益已成为研究的热点之一。抗氧化剂作为一种能够清除自由基、延缓氧化应激的重要物质,在畜牧业生产中应用广泛。该文从... 氧化应激是现代畜牧业面临的重要挑战之一。随着世界畜牧业的技术不断提升和需求不断增长,如何保障家畜健康和生产效益已成为研究的热点之一。抗氧化剂作为一种能够清除自由基、延缓氧化应激的重要物质,在畜牧业生产中应用广泛。该文从抗氧化剂的分类入手,综述天然抗氧化剂和合成抗氧化剂在生物体内的作用。在此基础上,进一步阐述抗氧化剂在饲料生产中的应用,及其对动物生产的影响。结合抗氧化剂在动物生产中的应用案例,分析抗氧化剂在当前动物生产中的存在问题及其具有的潜在发展前景。 展开更多
关键词 抗氧化剂 动物生产 氧化应激 生产性能 动物健康
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双碳目标下的氨燃料航空动力研究进展及展望
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作者 秦江 方垍洧 +3 位作者 王聪 颜培刚 哈婵 李成杰 《推进技术》 EI CAS CSCD 2024年第3期1-20,共20页
为了获得氨燃料航空动力应用潜力评价,本文综述了氨燃料的绿色制取方法、氨燃料燃烧特性的研究成果以及氨航空发动机设计过程中可能存在的技术问题和相应的解决方案。综合已有研究成果,本文认为氨燃料航空发动机具有非常广阔的应用前景... 为了获得氨燃料航空动力应用潜力评价,本文综述了氨燃料的绿色制取方法、氨燃料燃烧特性的研究成果以及氨航空发动机设计过程中可能存在的技术问题和相应的解决方案。综合已有研究成果,本文认为氨燃料航空发动机具有非常广阔的应用前景,采用氨氢混合燃烧在未来有望成为氨燃料航空动力系统的优选方案。 展开更多
关键词 碳中和 氨的绿色制取 氨燃料航空发动机 氢氨混合燃烧 氮氧化物排放 综述
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过氧化氢预处理强化木质纤维原料酶水解研究进展
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作者 张军华 文沛瑶 +1 位作者 林子贺 应文俊 《林业工程学报》 CSCD 2024年第2期1-13,共13页
在木质纤维素的生物降解和转化过程中,木质纤维素的复杂结构和木质素组分限制了碳水化合物的高效酶水解。过氧化氢预处理可以通过破坏木质纤维素的物理化学结构并氧化降解部分木质素,从而改善原料的酶水解效率。过氧化氢预处理主要有过... 在木质纤维素的生物降解和转化过程中,木质纤维素的复杂结构和木质素组分限制了碳水化合物的高效酶水解。过氧化氢预处理可以通过破坏木质纤维素的物理化学结构并氧化降解部分木质素,从而改善原料的酶水解效率。过氧化氢预处理主要有过氧化氢-酸、过氧化氢-碱、活化过氧化氢这3类预处理方法。笔者主要归纳了不同预处理过程中的木质素降解机理,总结了过氧化氢预处理强化木质纤维原料酶水解的效果,探讨了预处理对木质纤维原料降解产物的影响,评价了各类过氧化氢预处理的可行性和优缺点。最后,根据过氧化氢预处理的特点分析了过氧化氢预处理的研究策略,展望了过氧化氢预处理的发展趋势。从安全性和经济可行性的角度来看,低试剂用量、低温和低压的预处理条件是未来过氧化氢预处理的主要研究方向。 展开更多
关键词 过氧化氢预处理 木质素氧化 降解产物 经济分析 研究策略
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纳米颗粒在配子及胚胎生物技术中的应用研究进展
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作者 海桂萍 李俊 +4 位作者 刘倩 刘昱成 万鹏程 阿布力孜·吾斯曼 傅祥伟 《中国畜牧杂志》 CAS CSCD 2024年第2期64-70,共7页
辅助生殖技术(ART)在不孕不育诊治、濒危物种保存、良种家畜快速高效扩繁中具有重要应用价值。ART已常规开展并在世界范围内应用,但该技术面临着效率低下等挑战。非生理状态下的培养和保存可致配子和胚胎处于氧化应激状态,越来越多的研... 辅助生殖技术(ART)在不孕不育诊治、濒危物种保存、良种家畜快速高效扩繁中具有重要应用价值。ART已常规开展并在世界范围内应用,但该技术面临着效率低下等挑战。非生理状态下的培养和保存可致配子和胚胎处于氧化应激状态,越来越多的研究表明氧化应激是影响精子获能、损伤卵母细胞及胚胎发育能力的主要因素。近年来,创新性使用纳米颗粒(NPs)的相关技术和方案有效降低了配子氧化应激水平,提高了胚胎生物技术的效率。本文系统分析了NPs进入细胞的方式、分布及影响因素,深入探讨了NPs的作用机理,归纳NPs在配子、体外胚胎生产、低温保存中的应用,以期为ART总体效率的提高提供新方法和理论依据。 展开更多
关键词 纳米颗粒 配子 胚胎 体外胚胎生产 低温保存 氧化应激
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臭氧氧化在乙醇SBR出水资源化中的应用研究
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作者 李子奇 王靓 +2 位作者 陈旭升 张宏建 张建华 《食品与发酵工业》 CAS CSCD 2024年第3期126-131,共6页
为节约水资源,降低生产成本,该研究提出将序批式活性污泥法(sequencing batch reactor activated sludge process,SBR)出水回用于乙醇生产拌料工序。实验结果表明,SBR出水直接回用将导致乙醇发酵被抑制,对SBR出水进行臭氧氧化处理20 min... 为节约水资源,降低生产成本,该研究提出将序批式活性污泥法(sequencing batch reactor activated sludge process,SBR)出水回用于乙醇生产拌料工序。实验结果表明,SBR出水直接回用将导致乙醇发酵被抑制,对SBR出水进行臭氧氧化处理20 min后,SBR出水回用乙醇发酵的抑制性完全解除。研究证明NO_(2)-是SBR出水中的主要抑制物,当NO_(2)-质量浓度达到5 mg/L时就会对发酵产生抑制,表现为酵母细胞数减少且死亡率升高,细胞形态被破坏,对葡萄糖的利用率降低。转录组学研究结果表明,酵母细胞经NO_(2)-胁迫处理后,三羧酸循环与磷酸戊糖途径通量减小,使细胞代谢被抑制,生命活动减弱,因而抑制乙醇发酵。 展开更多
关键词 亚硝酸盐氮 SBR出水 臭氧氧化 乙醇发酵 清洁生产
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CuMn_(2)O_(4)/石墨炔S型异质结上锚定氧化助催化剂促进曙红敏化光催化析氢
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作者 杨成 李鑫 +2 位作者 李梅 梁桂杰 靳治良 《Chinese Journal of Catalysis》 SCIE CAS CSCD 2024年第1期88-103,共16页
半导体光催化剂有效的电荷分离及利用是光催化制氢的关键.单一半导体催化剂由于光生电子-空穴对的快速复合导致低的光催化活性,构建异质结是提高光生电荷分离以及电子转移效率的有效方法.此外,助催化剂的引入同样能够促进光催化剂表面... 半导体光催化剂有效的电荷分离及利用是光催化制氢的关键.单一半导体催化剂由于光生电子-空穴对的快速复合导致低的光催化活性,构建异质结是提高光生电荷分离以及电子转移效率的有效方法.此外,助催化剂的引入同样能够促进光催化剂表面电子和空穴的分离,并且其协同效应可促使更多载流子流向相应的助催化剂位点而增强光催化性能.因此,同时构建异质结及合适的氧化位点成为解决光生电子-空穴对有效分离及利用的重要研究方向.本文报道了一种同时构建S型异质结和氧化位点促进CuMn_(2)O_(4)光生电子-空穴对有效分离及利用的可行性策略.虽然在制备CuMn_(2)O_(4)的过程中通过调控制备温度能够自身诱导生成具有氧化能力的Mn_(2)O_(3)来作为氧化位点,但是只存在氧化位点时不能很好地克服光生电子-空穴对的重组现象而导致光催化活性较低.基于此,本文巧妙地利用CuMn_(2)O_(4)自身诱导生成氧化位点的特性并引入石墨炔还原端而构建S型异质结,在氧化位点及S型异质结同时存在的情况下增强光生电子的有效转移.此外,在自身诱导生成氧化位点和S型异质结的协同作用下,促进了复合光催化剂中的光生电子和光生空穴精确定向迁移到相应的还原位点和氧化位点.傅里叶变换红外光谱和拉曼光谱证实成功制备了石墨炔.X射线衍射(XRD)、X射线光电子能谱(XPS)、扫描电子显微镜(SEM)和高分辨透射电子显微镜(TEM)等结果表明,成功制备了600-CuMn_(2)O_(4)/GDY-40%(6-CG-40%)样品(600°C焙烧,石墨炔质量百分含量为40%).经过组分优化的复合光催化剂6-CG-40%的催化性能达到1586.54μmol g^(‒1)h^(‒1),是CuMn_(2)O_(4)(106.73μmol g^(‒1)h^(‒1))和石墨炔(70.57μmol g^(‒1)h^(‒1))产氢活性的13.86倍和21.48倍高.利用UV-vis光谱、电化学性能和接触角测试等分析6-CG-40%复合光催化剂产氢性能提升的原因,并通过密度泛函理论计算和相关实验表征验证Mn_(2)O_(3)作为氧化助催化剂的合理性.结果表明,原位诱导生成的Mn_(2)O_(3)氧化助催化剂和引入石墨炔构建的S型异质结有效抑制了光生电子-空穴对的复合,从而优化了光生载流子转移效率,最终增强了曙红敏化6-CG-40%光催化析氢性能.综上所述,在控制诱导因子原位生成Mn_(2)O_(4)氧化助催化剂的基础上引入石墨炔还原端构建了S型异质结,在助催化剂与异质结两者的协同作用下极大程度地改善了光生电子-空穴对的严重复合现象,这项工作为解决光催化制氢领域中制约光催化剂制氢能力的关键问题提供了可行性思路. 展开更多
关键词 石墨炔 氧化助催化剂 电荷分离 S型异质结 光催化制氢
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