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Engineering oxygen vacancies on Tb-doped ceria supported Pt catalyst for hydrogen production through steam reforming of long-chain hydrocarbon fuels
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作者 Zhourong Xiao Changxuan Zhang +5 位作者 Peng Li Desong Wang Xiangwen Zhang Li Wang Jijun Zou Guozhu Li 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第4期181-192,共12页
Steam reforming of long-chain hydrocarbon fuels for hydrogen production has received great attention for thermal management of the hypersonic vehicle and fuel-cell application.In this work,Pt catalysts supported on Ce... Steam reforming of long-chain hydrocarbon fuels for hydrogen production has received great attention for thermal management of the hypersonic vehicle and fuel-cell application.In this work,Pt catalysts supported on CeO_(2)and Tb-doped CeO_(2)were prepared by a precipitation method.The physical structure and chemical properties of the as-prepared catalysts were characterized by powder X-ray diffraction,scanning electron microscopy,transmission electron microscopy,Raman spectroscopy,H_(2)temperature programmed reduction,and X-ray photoelectron spectroscopy.The results show that Tb-doped CeO_(2)supported Pt possesses abundant surface oxygen vacancies,good inhibition of ceria sintering,and strong metal-support interaction compared with CeO_(2)supported Pt.The catalytic performance of hydrogen production via steam reforming of long-chain hydrocarbon fuels(n-dodecane)was tested.Compared with 2Pt/CeO_(2),2Pt/Ce_(0.9)Tb_(0.1)O_(2),and 2Pt/Ce_(0.5)Tb_(0.5)O_(2),the 2Pt/Ce_(0.7)Tb_(0.3)O_(2)has higher activity and stability for hydrogen production,on which the conversion of n-dodecane was maintained at about 53.2%after 600 min reaction under 700℃at liquid space velocity of 9 ml·g^(-1)·h^(-1).2Pt/CeO_(2)rapidly deactivated,the conversion of n-dodecane was reduced to only 41.6%after 600 min. 展开更多
关键词 steam reforming N-DODECANE Hydrogen production Pt-based catalyst Oxygen vacancy CeO_(2)
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CO2 assisted steam flooding in late steam flooding in heavy oil reservoirs 被引量:1
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作者 XI Changfeng QI Zongyao +7 位作者 ZHANG Yunjun LIU Tong SHEN Dehuang MU Hetaer DONG Hong LI Xiuluan JIANG Youwei WANG Hongzhuang 《Petroleum Exploration and Development》 2019年第6期1242-1250,共9页
To improve the oil recovery and economic efficiency in heavy oil reservoirs in late steam flooding,taking J6 Block of Xinjiang Oilfield as the research object,3D physical modeling experiments of steam flooding,CO2-foa... To improve the oil recovery and economic efficiency in heavy oil reservoirs in late steam flooding,taking J6 Block of Xinjiang Oilfield as the research object,3D physical modeling experiments of steam flooding,CO2-foam assisted steam flooding,and CO2 assisted steam flooding under different perforation conditions are conducted,and CO2-assisted steam flooding is proposed for reservoirs in the late stage of steam flooding.The experimental results show that after adjusting the perforation in late steam flooding,the CO2 assisted steam flooding formed a lateral expansion of the steam chamber in the middle and lower parts of the injection well and a development mode for the production of overriding gravity oil drainage in the top chamber of the production well;high temperature water,oil,and CO2 formed stable low-viscosity quasi-single-phase emulsified fluid;and CO2 acted as a thermal insulation in the steam chamber at the top,reduced the steam partial pressure inside the steam chamber,and effectively improved the heat efficiency of injected steam.Based on the three-dimensional physical experiments and the developed situation of the J6 block in Xinjiang Oilfield,the CO2 assisted steam flooding for the J6 block was designed.The application showed that the CO2 assisted steam flooding made the oil vapor ratio increase from 0.12 to 0.16 by 34.0%,the oil recovery increase from 16.1%to 21.5%,and the final oil recovery goes up to 66.5%compared to steam flooding after perforation adjustment. 展开更多
关键词 heavy oil reservoir three-dimensional physical simulation experiment steam FLOODING co2 ASSISTED steam FLOODING steam chamber steam(co2)chamber overriding gravity drainage
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High H_(2) selective performance of Ni-Fe-Ca/H-Al catalysts for steam reforming of biomass and plastic 被引量:4
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作者 Jin Deng Lingshuai Meng +4 位作者 Duo Ma Yujie Zhou Xianyang Wang Xiaodong Luo Shenfu Yuan 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第5期215-227,I0006,共14页
The development of a selective catalyst for the conversion of biomass and plastics into H2by steam reforming can combat the energy crisis and global warming.In this work,support Ni-Fe-Ca/H-Al bifunctional catalysts we... The development of a selective catalyst for the conversion of biomass and plastics into H2by steam reforming can combat the energy crisis and global warming.In this work,support Ni-Fe-Ca/H-Al bifunctional catalysts were prepared by loading Ni and Fe into pretreatment CaO/Al_(2)O_(3)(Ca/H-Al)carriers and showed high catalytic activity for the steam reforming of biomass and plastic.Moreover,the idea of bidirectional degradation was exploited to strengthen the pyrolysis of plastic with a high H/C and biomass with a high O/C.Interestingly,the products presented high H2selective(1302.10 m L/g)and low CO_(2)yield(120.23 m L/g)in 7Ni-5Fe-Ca/H-Al(2:4)catalyst compared with current reports.Here,the abundant oxygen vacancies(Ov)in the H-Al carrier exhibited an electron-deficient nature,providing active sites for anchoring Ni O.Meanwhile,Ni O interacted with Ca_(2)Fe_(2)O_(5)to produce more defective Ovsites,which stabilized the NiO particles in the 7Ni-5Fe-Ca/H-Al(2:4)catalyst,and the interaction between the catalyst and the carrier was enhanced,leading to the reduction of weakly basic sites,this property promoted the strong adsorption of CO_(2)and H2O by the catalyst,contributing to the enhancement of efficient steam conversion and the promotion of conversion of by-products to H2.Notably,7Ni-5Fe-Ca/H-Al(2:4)catalysts maintained structural integrity after regeneration and exhibited excellent regenerability in H2selection and CO_(2)adsorption.The work provides a new idea for the study of efficient H2production from steam reforming of biomass and plastics. 展开更多
关键词 Biomass and plastic Pyrolysis steam reforming Ni-Fe-Ca/H-Al catalyst H_(2)selective
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Models of steam-assisted gravity drainage(SAGD) steam chamber expanding velocity in double horizontal wells and its application
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作者 ZHOU You LU Teng +3 位作者 WU Shouya SHI Lanxiang DU Xuan WANG Junling 《Petroleum Exploration and Development》 2019年第2期347-354,共8页
The development of steam chamber can be used to evaluate steam-assisted gravity drainage(SAGD) performance. The velocity of steam chamber expanding is the key parameter for evaluating the development of steam chamber.... The development of steam chamber can be used to evaluate steam-assisted gravity drainage(SAGD) performance. The velocity of steam chamber expanding is the key parameter for evaluating the development of steam chamber. Based on SAGD technology theory and heat transfer theory, two calculation model methods, observation well temperature method and steam chamber edge method for estimating the horizontal expanding velocity of steam chamber, were presented. Through analyzing the monitoring data and numerical simulation results of a typical super heavy oil block developed by SAGD in Fengcheng oilfield in Xinjiang, NW China, the development patterns of steam chamber and temperature variation law in the observation well at different stages are determined. The observed temperature data was used to calculate steam chamber expanding velocity. The calculated chamber velocity at different time was applied to predict the temperature distribution of oil drainage zone at the edge of steam chamber and SAGD oil rate. The results indicate that temperature function of high temperature zone in the observation well temperature curve has a linear relationship with measuring depth.The characteristic section can be used to calculate key parameters such as the angle of the drainage interface, expanding edge and velocity of steam chamber. The field production data verify that the results of the two proposed methods of steam chamber growth are reliable and practical, which can provide theoretical support for the efficient development of SAGD. 展开更多
关键词 steam-assisted GRAVITY drainage observation well temperature steam chamber steam chamber EXPANDING VELOCITY oil drainage zone
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Monitoring of steam chamber in steam-assisted gravity drainage based on the temperature sensitivity of oil sand
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作者 GAO Yunfeng FAN Ting’en +4 位作者 GAO Jinghuai LI Hui DONG Hongchao MA Shigang YUE Qingfeng 《Petroleum Exploration and Development》 CSCD 2021年第6期1411-1419,共9页
Thermosensitivity experiments and simulation calculations were conducted on typical oil sand core samples from Kinosis,Canada to predict the steam chamber development with time-lapse seismic data during the steam-assi... Thermosensitivity experiments and simulation calculations were conducted on typical oil sand core samples from Kinosis,Canada to predict the steam chamber development with time-lapse seismic data during the steam-assisted gravity drain-age(SAGD).Using an ultrasonic base made of polyether ether ketone resin instead of titanium alloy can improve the signal en-ergy and signal-to-noise ratio and get clear first arrival;with the rise of temperature,heavy oil changes from glass state(at-34.4℃),to quasi-solid state,and to liquid state(at 49.0℃)gradually;the quasi-solid heavy oil has significant frequency dis-persion.For the sand sample with high oil saturation,its elastic property depends mainly on the nature of the heavy oil,while for the sand sample with low oil saturation,the elastic property depends on the stiffness of the rock matrix.The elastic property of the oil sand is sensitive to temperature noticeably,when the temperature increases from 10℃ to 175℃,the oil sand samples decrease in compressional and shear wave velocities significantly.Based on the experimental data,the quantita-tive relationship between the compressional wave impedance of the oil sand and temperature was worked out,and the tem-perature variation of the steam chamber in the study area was predicted by time-lapse seismic inversion. 展开更多
关键词 oil sand temperature sensitivity rock physical properties SAGD steam chamber time-lapse seismic survey
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Improvement strategies for Ni-based alcohol steam reforming catalysts 被引量:1
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作者 Alex Desgagnés Ommolbanin Alizadeh Sahraei Maria C.Iliuta 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第11期447-479,I0010,共34页
Steam reforming(SR)of fossil methane is already a well-known,documented and established expertise in the industrial sector as it accounts for the vast majority of global hydrogen production.From a sustainable developm... Steam reforming(SR)of fossil methane is already a well-known,documented and established expertise in the industrial sector as it accounts for the vast majority of global hydrogen production.From a sustainable development perspective,hydrogen production by SR of biomass-derived feedstock represents a promising alternative that could help to lower the carbon footprint of the traditional process.In this regard,bio-alcohols such as methanol,ethanol or glycerol are among the attractive candidates that could serve as green hydrogen carriers as they decompose at relatively low temperatures in the presence of water compared to methane,allowing for improved H_(2)yields.However,significant challenges remain regarding the activity and stability of nickel-based catalysts,which are most widely used in alcohol SR processes due to their affordability and ability to break C–C,O–H and C–H bonds,yet are prone to rapid deactivation primarily caused by coke deposition and metal particle sintering.In this state-of-the-art review,a portfolio of strategies to improve the performance of Ni-based catalysts used in alcohol SR processes is unfolded with the intent of pinpointing the critical issues in catalyst development.Close examination of the literature reveals that the efforts tackling these recurring issues can be directed at the active metal,either by tuning Ni dispersion and Ni-support interactions or by targeting synergistic effects in bimetallic systems,while others focus on the support,either by modifying acid-base character,oxygen mobility,or by embedding Ni in specific crystallographic structures.This review provides a very useful tool to orient future work in catalyst development. 展开更多
关键词 H2 production Alcohol steam reforming Ni-based catalysts Catalyst development SINTERING Coke formation
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不同萃取方法下绿萼梅花蕾挥发性成分的差异研究
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作者 王衍彬 陈雅丹 +6 位作者 秦玉川 吴晓红 黄旭波 程俊文 王丽玲 方茹 贺亮 《浙江林业科技》 2024年第1期33-41,共9页
2023年3月13日,从浙江省长兴县东方梅园有限公司梅花基地采集绿萼梅花蕾,采用顶空-固相微萃取、水蒸气蒸馏、超临界二氧化碳3种萃取方法,结合气相色谱-质谱联用仪(GC-MS)分析绿萼梅Prunus mume f.viridicalyx花蕾中的挥发性成分,以明确... 2023年3月13日,从浙江省长兴县东方梅园有限公司梅花基地采集绿萼梅花蕾,采用顶空-固相微萃取、水蒸气蒸馏、超临界二氧化碳3种萃取方法,结合气相色谱-质谱联用仪(GC-MS)分析绿萼梅Prunus mume f.viridicalyx花蕾中的挥发性成分,以明确其花蕾中挥发性成分组成、含量及不同萃取方式对挥发性成分萃取效果的影响。结果表明,三种萃取方法获得的绿萼梅花提取物中共鉴定出醛、醇、酮、烯等9类57种化合物,主要挥发性成分是苯甲醛、壬醛、金合欢醇、苯甲酸、α-香树脂醇、D-柠檬烯,其中苯甲醛含量最高。绿萼梅花顶空-固相微萃取物中共鉴定出21种化合物,以醛、醇和酯类化合物为主;水蒸气蒸馏物中共鉴定出30种化合物,以酯、烯、酮等水难溶化合物为主;而超临界二氧化碳提取物中共鉴定出30种化合物,以长链烷、酯类化合物为主。三种提取方法中超临界二氧化碳萃取物中蜡质含量较高,顶空-固相微萃取和水蒸气蒸馏法结合更适合作为植物芳香类挥发物的检测手段。 展开更多
关键词 绿萼梅 挥发性成分 水蒸气蒸馏 顶空-固相微萃取 超临界CO_(2)萃取
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基于3D打印技术的甲烷水蒸气重整研究
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作者 李聪 余冉 +3 位作者 刘太楷 邓春明 邓畅光 刘敏 《材料导报》 EI CAS CSCD 北大核心 2024年第10期36-44,共9页
天然气(主要成分为甲烷)重整是天然气高效清洁利用的重要途径,重整获得富含氢气的重整气,可供固体氧化物燃料电池进行高效发电。甲烷水蒸气重整需要反应器以及负载其上的重整催化剂,基于3D打印技术的多孔结构具有良好的耐高温、抗氧化... 天然气(主要成分为甲烷)重整是天然气高效清洁利用的重要途径,重整获得富含氢气的重整气,可供固体氧化物燃料电池进行高效发电。甲烷水蒸气重整需要反应器以及负载其上的重整催化剂,基于3D打印技术的多孔结构具有良好的耐高温、抗氧化和结构稳定性等特点,负载Ni基催化剂用于甲烷催化重整可有效提升反应器稳定性,但相关研究较少。采用浸渍法将Ni-CeO_(2)/γ-Al_(2)O_(3)催化剂负载于3D打印制备的多孔结构和金属泡沫反应器,通过催化剂形貌、分布规律、相结构以及热稳定性的表征,研究了重整反应温度、浆料配比、反应器结构等因素对甲烷水蒸气重整效果的影响。结果显示,催化剂的最佳配比是PVA含量为3.5%(若无特殊说明,均为质量分数),Ni含量为19%,CeO_(2)和γ-Al_(2)O_(3)的含量分别为16%和2.5%。重整测试结果表明,负载催化剂前,重整反应温度低于700℃时,Inconel625和泡沫Ni多孔反应器重整得到的氢气浓度均低于13%(体积分数),而重整反应温度高于800℃时,Inconel625和泡沫Fe多孔反应器重整效果接近,但Inconel625稳定性优于泡沫Fe;负载催化剂后,NCA-I(Inconel625)样品始终表现出低于NCA-N(泡沫Ni)和NCA-F(泡沫Fe)的重整性能,这主要是因为NCA-I含有较多的Cr元素,高温下Cr氧化生成Cr2O3氧化膜,阻碍了反应气和Ni的接触,但测试后NCA-I样品表现出优异的稳定性,无明显脆化和断裂现象,可有效提升重整反应器的稳定性。 展开更多
关键词 甲烷水蒸气重整 反应器 催化剂 Ni-CeO_(2)/γ-Al_(2)O_(3) 3D打印
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梨木炭蒸汽气化制取富氢燃气的试验研究
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作者 张彪 兰祯 别如山 《工业锅炉》 2024年第1期1-7,共7页
生物质气化技术已得到广泛的应用,但气化过程产生的焦油会影响设备稳定运行。为了大幅减少焦油的干扰,以梨木的热解炭为原料,在管式炉中进行水蒸气气化制取富氢燃气试验研究,探究了反应温度、K_(2)CO_(3)添加量及利用次数对气化特性的... 生物质气化技术已得到广泛的应用,但气化过程产生的焦油会影响设备稳定运行。为了大幅减少焦油的干扰,以梨木的热解炭为原料,在管式炉中进行水蒸气气化制取富氢燃气试验研究,探究了反应温度、K_(2)CO_(3)添加量及利用次数对气化特性的影响。结果表明:900℃时H_(2)的产气量为2.19 L/g,合成气中H_(2)含量超过58%;K_(2)CO_(3)添加量为10%时产气效果最佳,此时合成气中H_(2)+CO含量达到了88.5%。当K_(2)CO_(3)催化剂在第三次利用时,仍有较好的催化效果。 展开更多
关键词 梨木炭 蒸汽气化 K_(2)CO_(3) 富氢气体
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稠油油藏蒸汽驱后期CO2辅助蒸汽驱技术 被引量:15
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作者 席长丰 齐宗耀 +7 位作者 张运军 刘彤 沈德煌 木合塔尔 董宏 李秀峦 蒋有伟 王红庄 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2019年第6期1169-1177,共9页
为了进一步提高稠油油藏蒸汽驱后期采收率和开发效益,以新疆油田J6区块为研究对象,通过室内三维物理模拟实验,分别对全射孔条件下蒸汽驱、CO2辅助蒸汽驱、CO2泡沫辅助蒸汽驱和射开下部油层下半部分条件下蒸汽驱、CO2辅助蒸汽驱进行了实... 为了进一步提高稠油油藏蒸汽驱后期采收率和开发效益,以新疆油田J6区块为研究对象,通过室内三维物理模拟实验,分别对全射孔条件下蒸汽驱、CO2辅助蒸汽驱、CO2泡沫辅助蒸汽驱和射开下部油层下半部分条件下蒸汽驱、CO2辅助蒸汽驱进行了实验研究,提出了蒸汽驱后期CO2辅助蒸汽驱开发技术。室内实验表明:蒸汽驱后期调整射孔后的CO2辅助蒸汽驱形成了注汽井中下部蒸汽腔侧向扩展、生产井顶层蒸汽腔超覆重力泄油的开发模式,高温水、油、CO2能够形成稳定的低黏拟单相乳化流体,且CO2在顶部的蒸汽腔起到隔热作用,在蒸汽腔内部降低了蒸汽分压,有效提高了注入蒸汽热效率。根据新疆油田J6区块CO2辅助蒸汽驱设计和应用效果,调整射孔后,与蒸汽驱相比,CO2辅助蒸汽驱将油汽比从0.12提高到0.16,增长34.0%,阶段采出程度从16.1%提高到21.5%,最终采收率可以达到66.5%。 展开更多
关键词 稠油油藏 三维物理模拟实验 蒸汽驱 co2辅助蒸汽驱 蒸汽腔 汽(co2)腔超覆重力泄油
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高压蒸汽室铸钢件砂型铸造工艺模拟研究 被引量:1
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作者 蔡佳骏 张亮 +3 位作者 夏双喜 程方亮 刘浩 刘富初 《金属加工(热加工)》 2024年第5期109-115,121,共8页
基于高压蒸汽室铸钢件的结构特点和铸造工艺要求,设计了该铸钢件的砂型铸造初步方案,并采用ProCAST软件进行了充型和凝固收缩数值模拟研究。结果表明:充型过程平稳,未出现浇不足现象,但在蒸汽室底座厚大部位、蒸汽室顶部凸台处出现了大... 基于高压蒸汽室铸钢件的结构特点和铸造工艺要求,设计了该铸钢件的砂型铸造初步方案,并采用ProCAST软件进行了充型和凝固收缩数值模拟研究。结果表明:充型过程平稳,未出现浇不足现象,但在蒸汽室底座厚大部位、蒸汽室顶部凸台处出现了大体积缩孔,同时铸件中产生了分散的缩松缺陷。结合模拟结果,对缺陷部位增加了冒口和冷铁,改进后的模拟结果良好,没有缩孔缺陷。 展开更多
关键词 高压蒸汽室铸件 ZG15Cr2Mo1 砂型铸造 工艺模拟 PROCAST
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泡沫碳负载一维TiO_(2)光热催化蒸发器的制备及污水蒸发降解性能
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作者 张义东 袁家相 +7 位作者 方伟 陆成龙 陈辉 何漩 杜星 李薇馨 王大珩 赵雷 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2024年第10期78-88,共11页
界面光热水蒸发是极具研究前景的有机污水纯化技术,但也存在有机污染物在光热蒸发器表面沉积的问题.为此,本文将具有光催化效应的纳米TiO_(2)引入到多孔泡沫碳光热吸收体中制备了复合光热催化蒸发器(CF@RT),并对复合材料的结构和光热催... 界面光热水蒸发是极具研究前景的有机污水纯化技术,但也存在有机污染物在光热蒸发器表面沉积的问题.为此,本文将具有光催化效应的纳米TiO_(2)引入到多孔泡沫碳光热吸收体中制备了复合光热催化蒸发器(CF@RT),并对复合材料的结构和光热催化性能进行了分析.结果表明,CF@RT中生长有大量直径约10 nm的一维TiO_(2)纳米棒,纳米棒均匀分散在泡沫碳表面和孔结构中;TiO_(2)的引入有效拓宽了材料对光的响应范围,使复合材料具备光热和光催化双功能;多孔泡沫碳通过吸收可见-红外光转换为热能实现水的蒸发,一维TiO_(2)则通过吸收紫外光形成电子-空穴对,并通过氧化还原反应实现污染物降解.同时,泡沫碳和TiO_(2)的结合还使光热和光催化之间存在协同促进效应,光催化过程能抑制污染物沉积,促进光热水蒸发性能持续提升,光热效应又可加速光生电子-空穴对的分离和迁移,促进光催化降解.在太阳光照射下,最优体系CF@RT160在2.5 h内使MB降解率达到74%,光热水蒸发率为0.89 kg·m^(-2)·h^(-1),且经4次循环后,水蒸发率提升至0.95 kg·m^(-2)·h^(-1). 展开更多
关键词 泡沫碳 一维TiO_(2) 光热水蒸发 光热催化
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Al_(2)O_(3)前驱体对Cu/ZnO/Al_(2)O_(3)催化甲醇重整制氢性能的影响
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作者 黄敏 薄其飞 +5 位作者 李娟 乔靖萱 袁善良 张彪 陈洪林 蒋毅 《燃料化学学报(中英文)》 EI CAS CSCD 北大核心 2024年第10期1443-1452,共10页
采用共沉淀法制备了一系列Cu/ZnO/Al_(2)O_(3)催化剂,通过XRD、BET、H_(2)-TPR、N_(2)O化学吸附、XPS表征技术,研究了Al_(2)O_(3)前驱体对催化剂结构的影响,同时对其在甲醇重整制氢中的性能进行了考察。结果表明,当Al^(3+)与Cu^(2+)、Zn... 采用共沉淀法制备了一系列Cu/ZnO/Al_(2)O_(3)催化剂,通过XRD、BET、H_(2)-TPR、N_(2)O化学吸附、XPS表征技术,研究了Al_(2)O_(3)前驱体对催化剂结构的影响,同时对其在甲醇重整制氢中的性能进行了考察。结果表明,当Al^(3+)与Cu^(2+)、Zn^(2+)同时共沉淀时,Al^(3+)对碱式碳酸盐中Cu^(2+)-Zn^(2+)部分取代生成类水滑石结构,增强了Zn-Al之间的相互作用。相反,在Cu^(2+)、Zn^(2+)完成共沉淀后,引入Al_(2)O_(3)前驱体对消除Al^(3+)对碱式碳酸盐中Cu-Zn取代的不良影响具有积极作用,有利于促进Cu-ZnO间的相互作用、CuO物种的分散和催化剂的还原,进一步促进表面Cu的分散,有利于其活性的提升。其中,以拟薄水铝石为铝源制备的催化剂呈现出优异的活性。在水醇物质的量比为1.2,反应温度为493 K的条件下,甲醇转化率可达94.8%,H_(2)时空收率可达97.5 mol/(kg·h),并且连续运行25 h其活性仍保持相对稳定。在反应条件下,经过723 K的10 h热处理后,该催化剂的活性损失率仅为5.37%。 展开更多
关键词 Al_(2)O_(3)前驱体 Cu/ZnO/Al_(2)O_(3)催化剂 甲醇水蒸气重整 热稳定性
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CO_(2)浓度缓增对冬小麦田N_(2)O排放的影响
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作者 曹琰梅 柯浩楠 +4 位作者 商东耀 武熳秋 帅斯樑 胡正华 李琪 《江苏农业学报》 CSCD 北大核心 2024年第5期855-864,共10页
为研究CO_(2)浓度缓增对冬小麦田N_(2)O排放的影响,利用由开顶式气室(OTC)组成的CO_(2)浓度自动调控平台,扬麦22号为供试材料开展田间试验。将大气CO_(2)浓度作为对照(CK),设置CO_(2)浓度缓增处理C_(80)(CO_(2)浓度缓慢增加80μmol/mol)... 为研究CO_(2)浓度缓增对冬小麦田N_(2)O排放的影响,利用由开顶式气室(OTC)组成的CO_(2)浓度自动调控平台,扬麦22号为供试材料开展田间试验。将大气CO_(2)浓度作为对照(CK),设置CO_(2)浓度缓增处理C_(80)(CO_(2)浓度缓慢增加80μmol/mol)和C_(120)(CO_(2)浓度缓慢增加120μmol/mol)。结果表明,CO_(2)浓度缓增处理没有改变小麦田N_(2)O排放通量的季节性变化特征。在2017-2018年冬小麦生长季,CK、C_(80)处理土壤N_(2)O累积排放量分别为(25.49±3.33) mg/m^(2)、(26.83±3.21) mg/m^(2);2018-2019年冬小麦生长季,CK、C_(120)处理土壤N_(2)O累积排放量分别为(113.06±2.66) mg/m^(2)、(121.20±9.28) mg/m^(2)。在2017-2018年冬小麦生长季,CK、C_(80)处理土壤-冬小麦系统N_(2)O累积排放量分别为(25.99±1.39) mg/m^(2)、(29.83±4.20) mg/m^(2)。各生育期土壤N_(2)O累积排放量与冬小麦地上部分生物量呈极显著正相关(P<0.01),土壤-冬小麦系统N_(2)O累积排放量与冬小麦地上部分生物量呈极显著正相关(P<0.01)。 展开更多
关键词 冬小麦 N_(2)O排放量 开顶式气室 CO_(2)浓度缓增
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模拟生活干垃圾循环流化床气化试验
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作者 何守琪 刘志成 +1 位作者 王小芳 蔡军 《洁净煤技术》 CAS CSCD 北大核心 2024年第9期156-164,共9页
为给工业化循环流化床垃圾气化技术研发提供基础数据,在中试规模循环流化床气化试验台,研究过量空气系数和系统富氧体积分数对模拟生活干垃圾(简称“干垃圾”)气化特性影响。试验用干垃圾为单组分垃圾料配置而成的压块料,组成包括纸张... 为给工业化循环流化床垃圾气化技术研发提供基础数据,在中试规模循环流化床气化试验台,研究过量空气系数和系统富氧体积分数对模拟生活干垃圾(简称“干垃圾”)气化特性影响。试验用干垃圾为单组分垃圾料配置而成的压块料,组成包括纸张、织物、木屑、灰渣和水,分别按质量分数60%、10%、10%、10%及10%配比,并通过用干垃圾压块料和工业锅炉底渣交错加料的方式解决了中试试验中压块料进料不畅的问题。通过试验发现干垃圾空气气化条件,过量空气系数由0.31提至0.50,气化温度会由850℃提至950℃,生成的煤气热值3976~2590 kJ/m^(3),煤气中CO产率增加,H_(2)产率先增加后减少,CH_(4)产率减少,煤气产气率2.28~3.08 m^(3)/kg,冷煤气效率42.97%~51.01%,碳转化率83.11%~92.45%;在900℃条件系统富氧体积分数由30%升高至50%时,水煤气反应得到强化,煤气有效组分(CO+H_(2)+CH_(4))产率和煤气热值均得到提高,煤气热值5274~7294 kJ/m^(3),煤气产气率1.37~1.93 m^(3)/kg,碳转化率83.32%~81.11%,冷煤气效率55.39%~53.77%;模拟生活干垃圾在中试规模循环流化床气化炉内实现稳定空气气化和富氧-水蒸汽气化运行,炉膛底部温度低,炉膛底部至顶部高度范围内温度分布较为均匀,装置稳定连续运行108 h,温差在19.7℃以内,中试规模循环流化床内部物料循环稳定。 展开更多
关键词 干垃圾 气化 循环流化床 中试 富氧-水蒸气
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不同CO_(2)浓度和氮肥水平对稻田呼吸速率的影响
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作者 柯浩楠 曹琰梅 +4 位作者 商东耀 武熳秋 帅斯樑 李琪 胡正华 《农业资源与环境学报》 CAS CSCD 北大核心 2024年第3期567-575,共9页
为研究不同CO_(2)浓度和氮肥水平对稻田呼吸速率的影响,利用12个开顶式气室开展田间试验,CO_(2)浓度设置对照(CK,自由大气CO_(2)浓度)、CO_(2)浓度比CK增加120μmol·mol-1(C1)和200μmol·mol-1(C2)3个水平,氮肥设置低氮(N1,15... 为研究不同CO_(2)浓度和氮肥水平对稻田呼吸速率的影响,利用12个开顶式气室开展田间试验,CO_(2)浓度设置对照(CK,自由大气CO_(2)浓度)、CO_(2)浓度比CK增加120μmol·mol-1(C1)和200μmol·mol-1(C2)3个水平,氮肥设置低氮(N1,15 g·m^(-2))和常规氮肥(N2,25 g·m^(-2))2个水平,试验共6种处理。结果表明:在相同施氮水平下,在灌浆期和蜡熟期,C1N1比CKN1处理的呼吸速率分别下降了23.4%(P=0.045)和49.1%(P=0.010);在抽穗期和灌浆期,C2N2比CKN2处理的呼吸速率分别升高了12.3%(P=0.009)和16.8%(P=0.047)。同一CO_(2)浓度下,不同施氮水平处理的呼吸速率表现为N2>N1,且在拔节期和抽穗期达到显著水平,在灌浆期达到极显著水平;其中在灌浆期和蜡熟期,C1N1比C1N2处理的呼吸速率分别下降了31.1%(P=0.004)和42.7%(P=0.010)。研究表明,大气CO_(2)浓度升高对稻田呼吸速率的影响因生育时期而异,氮肥减施可以降低稻田呼吸速率及CO_(2)累积释放量。 展开更多
关键词 CO_(2)浓度 氮肥 呼吸速率 稻田 静态暗箱 气相色谱
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水平井蒸汽驱蒸汽腔均衡发育主控因素研究
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作者 阮迪 王飞 +4 位作者 沈畅 张颖 赵心茹 潘玉萍 孟祥祥 《石油化工应用》 CAS 2024年第5期20-23,37,共5页
海上M区块为薄层稠油油藏,采用水平井蒸汽驱开发,蒸汽腔发育受到先期井网和后期优渗通道影响。为此,基于数值模拟法,以突进系数为评价指标,分析原油黏度、地层倾角、平面渗透率级差、注入温度、注汽速度、注入干度、采注比对水平井蒸汽... 海上M区块为薄层稠油油藏,采用水平井蒸汽驱开发,蒸汽腔发育受到先期井网和后期优渗通道影响。为此,基于数值模拟法,以突进系数为评价指标,分析原油黏度、地层倾角、平面渗透率级差、注入温度、注汽速度、注入干度、采注比对水平井蒸汽驱蒸汽腔均衡发育的影响,基于分析结果引入变异系数S作为评价指标,以表征突进系数在研究范围内的敏感程度,研究表明,影响薄层稠油水平井蒸汽驱蒸汽腔均衡发育的主控因素为:采注比、注入干度、地层倾角,可根据各主控因素对蒸汽腔均衡发育的影响,对水平井蒸汽驱开发设计进行优化。 展开更多
关键词 薄层稠油 水平井 蒸汽腔 均衡发育
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刺五加叶精油的制备及挥发性成分分析
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作者 李宛儒 关昕 +3 位作者 祁可香 张赫 曾伟民 郑春英 《中国农学通报》 2024年第18期157-164,共8页
本研究旨在比较水蒸气蒸馏法和超临界CO_(2)萃取法在制备刺五加叶精油方面的得率,并对所提取的精油进行质量分析。以刺五加叶为原料,分别采用上述2种方法提取精油,并利用GC-MS对其挥发性成分进行分析。同时,通过抑菌和抗氧化活性测试评... 本研究旨在比较水蒸气蒸馏法和超临界CO_(2)萃取法在制备刺五加叶精油方面的得率,并对所提取的精油进行质量分析。以刺五加叶为原料,分别采用上述2种方法提取精油,并利用GC-MS对其挥发性成分进行分析。同时,通过抑菌和抗氧化活性测试评估了所提取精油的生物活性。结果显示,水蒸气蒸馏法得到的刺五加精油得率为0.10%,而超临界CO_(2)萃取法得到的刺五加油的得率为0.47%。经GC-MS分析,从水蒸气蒸馏法制备的刺五加叶精油中共分离出57种成分,其中35种成分得到了鉴定;超临界CO_(2)萃取法制备刺五加叶精油中分离出94种成分,其中57种成分得到了鉴定。抑菌试验结果表明,刺五加叶精油具有一定的抑菌效果。此外,刺五加叶精油也具有较好的抗氧化活性,DPPH自由基清除率为30.7%,IC_(50)值为3.510±0.175μg/mL。综上所述,刺五加叶精油中含有多种芳香成分,这些芳香成分不仅是刺五加叶精油的风味特性,也显示出多样的生物活性。本研究为刺五加叶资源的合理利用及精油的制备提供科学依据。 展开更多
关键词 刺五加叶 超临界CO_(2)萃取 精油 GC-MS 水蒸气蒸馏法 抑菌活性 抗氧化活性
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水蒸气蒸馏和超临界CO_(2)萃取法提取欧洲刺柏果精油及其在卷烟加香中的应用 被引量:1
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作者 刘霞妹 陈晗 +3 位作者 董琼娟 杨海玉 李紫微 王晶 《香料香精化妆品》 CAS 2024年第1期74-79,共6页
采用水蒸气蒸馏和超临界CO_(2)萃取法提取欧洲刺柏果精油,并采用气相色谱-质谱联用仪(GC-MS)对其挥发性成分进行分析和卷烟加香试验。结果表明:(1)两种方法制备的欧洲刺柏果精油A和B得率分别为0.7%和3.8%;(2)欧洲刺柏果精油A主要成分为... 采用水蒸气蒸馏和超临界CO_(2)萃取法提取欧洲刺柏果精油,并采用气相色谱-质谱联用仪(GC-MS)对其挥发性成分进行分析和卷烟加香试验。结果表明:(1)两种方法制备的欧洲刺柏果精油A和B得率分别为0.7%和3.8%;(2)欧洲刺柏果精油A主要成分为α-蒎烯(质量分数41.114%)等单萜类化合物,欧洲刺柏果精油B主要为大根香叶烯D(质量分数10.295%)等倍半萜类化合物,欧洲刺柏果精油B中含氧单萜和含氧倍半萜的相对含量高于欧洲刺柏果精油A;(3)两组精油均具有增加卷烟清香特征香韵、柔和细腻烟气、提升烟气透发感、降低杂气和刺激性的作用,其中欧洲刺柏果精油B应用效果较好。 展开更多
关键词 欧洲刺柏果 精油 水蒸气蒸馏 超临界 CO_(2)萃取 成分分析 卷烟
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Scalable Jet-Based Fabrication of PEI-Hydrogel Particles for CO_(2)Capture
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作者 Jieke Jiang Eline van Daatselaar +5 位作者 Hylke Wijnja Tessa de Koning Gans Michel Schellevis Cornelis H.Venner Derk W.F.Brilman Claas Willem Visser 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第6期351-358,共8页
The capture,regeneration,and conversion of CO_(2)from ambient air and flue gas streams are critical aspects of mitigating global warming.Solid sorbents for CO_(2)absorption are very promising as they have high mass tr... The capture,regeneration,and conversion of CO_(2)from ambient air and flue gas streams are critical aspects of mitigating global warming.Solid sorbents for CO_(2)absorption are very promising as they have high mass transfer areas without energy input and reduce emissions and minimize corrosion as compared to liquid sorbents.However,precisely tunable solid CO_(2)sorbents are difficult to produce.Here,we demonstrate the high-throughput production of hydrogel-based CO_(2)-absorbing particles via liquid jetting.By wrapping a liquid jet consisting of an aqueous solution of cross-linkable branched polyethylenimine(PEI)with a layer of suspension containing hydrophobic silica nanoparticles,monodisperse droplets with a silica nanoparticle coating layer was formed in the air.A stable Pickering emulsion containing PEI droplets was obtained after these ejected droplets were collected in a heated oil bath.The droplets turn into mm-sized particles after thermal curing in the bath.The diameter,PEI content,and silica content of the particles were systematically varied,and their CO_(2)absorption was measured as a function of time.Steam regeneration of the particles enabled cyclic testing,revealing a CO_(2)absorption capacity of 6.5±0.5 mol kg^(−1)solid PEI in pure CO_(2)environments and 0.7±0.3 mol kg^(−1)solid PEI for direct air capture.Several thousands of particles were produced per second at a rate of around 0.5 kg per hour,with a single nozzle.This process can be further scaled by parallelization.The complete toolbox for the design,fabrication,testing,and regeneration of functional hydrogel particles provides a powerful route toward novel solid sorbents for regenerative CO_(2)capture. 展开更多
关键词 CO_(2)capture DROPLET HYDROGEL liquid jet particle steam regeneration
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