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“剥离”与“托载”:几架、盆盎在盆景审美意蕴生发中的作用
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作者 刘旭 《成都大学学报(社会科学版)》 2011年第2期49-52,共4页
盆景是中华民族传统艺术宝库中的一枝奇葩,主要运用咫尺千里、缩龙成寸等"以小见大"的手法和技艺,将树木花草、山石水土等物质材料进行艺术加工后布局在盆盎之中,以优美的造型和深远的意境彰显"一峰则太华千寻,一勺则江... 盆景是中华民族传统艺术宝库中的一枝奇葩,主要运用咫尺千里、缩龙成寸等"以小见大"的手法和技艺,将树木花草、山石水土等物质材料进行艺术加工后布局在盆盎之中,以优美的造型和深远的意境彰显"一峰则太华千寻,一勺则江湖万里"的自然之勃勃生意及诗情画意的生动图景,历来享有"无声的诗、立体的画"之美誉。本文以盆景几架和盆盎为切入点,试图说明几架和盆盎在盆景审美意蕴的生发中分别起着将现实视域和艺术视域剥离开来并使艺术世界陌生化和托载"大地"的作用。 展开更多
关键词 盆景 几架 剥离 盆盎 托载
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载菌蒙托石改善鲫养殖水质和生长性能的研究 被引量:1
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作者 温军辉 王彦波 韩剑众 《水产科学》 CAS 北大核心 2008年第11期557-560,共4页
以附载益生菌—沼泽红假单胞菌的蒙托石为研究对象,通过对鲫养殖水质指标和生长性能的测定,研究了其作用效果。试验分为1个对照组和3个试验组(T1、T2、T3分别添加一定量的沼泽红假单胞菌、蒙托石和载菌蒙托石)。试验结果表明,与对照组相... 以附载益生菌—沼泽红假单胞菌的蒙托石为研究对象,通过对鲫养殖水质指标和生长性能的测定,研究了其作用效果。试验分为1个对照组和3个试验组(T1、T2、T3分别添加一定量的沼泽红假单胞菌、蒙托石和载菌蒙托石)。试验结果表明,与对照组相比,试验组T3显著降低了(P<0.01)养殖水体后期氨氮、亚硝酸盐氮、硝酸盐氮、化学需氧量和硫化物的含量,提高了鲫的质量日增长和质量相对增长率(P<0.01),改善效果优于T1和T2。试验组T1和T2在生长指标上与对照组比较,虽有不同程度的提高,但差异不显著(P>0.01)。 展开更多
关键词 菌蒙 益生菌 水质
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大型往复压缩机活塞抽出专用升降平台的设计
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作者 王多民 徐龙江 《化工设计通讯》 CAS 2018年第1期108-108,150,共2页
大型往复式压缩机检修中,拆卸直径不同、重量不同的活塞需要不同的工作高度。根据拆卸过程中活塞的运动方向和受力特点,利用简捷的机械传动,通过螺旋传动副调节活塞托载平台高度,把活塞的运动轨迹变为可控。
关键词 压缩机 抽取 回装 托载平台 螺旋驱动
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保温装饰一体板双机械锚固系统施工技术 被引量:3
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作者 印滨 刘智勇 +2 位作者 谢彬 马怀章 彭影星 《建筑技术开发》 2019年第22期49-50,共2页
以无锡万达旅游城C3地块外墙保温装饰一体化系统外墙为例,主要阐述在填充墙部位采用轻质混凝砌体材料荷载承受较小,因此填充墙部位双机械锚固系统分为主机械锚固系统和辅机械锚固系统,主机械锚固系统采用镀锌角钢托架卸载体系结构技术,... 以无锡万达旅游城C3地块外墙保温装饰一体化系统外墙为例,主要阐述在填充墙部位采用轻质混凝砌体材料荷载承受较小,因此填充墙部位双机械锚固系统分为主机械锚固系统和辅机械锚固系统,主机械锚固系统采用镀锌角钢托架卸载体系结构技术,辅机械锚固系统为塑料膨胀螺栓相结合形式。然后通过粘接系统进一步提高保温装饰一体化板系统的安全性,为类似工程提供借鉴。 展开更多
关键词 机械锚固系统 镀锌角钢架卸体系 塑料膨胀螺栓
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Bio-syngas Converting to Liquid Fuels over Co Modified Fe3O4-MnO2 Catalysts 被引量:2
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作者 Jie Wang Ying Xiang +5 位作者 Yi-yuan Ding Yan-fei Xu Xiang-hui Kong Guang-yuan Ma Chanatip Samart Ming-yue Ding 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2019年第6期721-726,I0003,I0016-I0024,共16页
A bifunctional Co modified Fe3O4-Mn catalyst was prepared for Fischer-Tropsch synthesis (FTS). The influence of Co loading on the synergistic effect of Fe-Co as well as FTS performance over Fe1CoxMn1 catalysts was stu... A bifunctional Co modified Fe3O4-Mn catalyst was prepared for Fischer-Tropsch synthesis (FTS). The influence of Co loading on the synergistic effect of Fe-Co as well as FTS performance over Fe1CoxMn1 catalysts was studied. Incorporation of Co species into the Fe3O4-Mn catalyst promoted the reduction of iron oxides, increasing iron active sites during FTS. Moreover, the adding of Co species enhanced the electron transfer from Fe to Co metal, which strengthened the synergistic effect of Fe-Co, improving the catalytic performance. The Fe1CoxMn1 catalyst with higher Co loading promoted further the hydrogenation ability, favoring the shifting of the product distribution towards shorter hydrocarbons. Under optimized conditions of 280℃, 2.0 MPa and 3000 h-1, the highest yield of liquid fuels was obtained for the Fe1Co1Mn1 catalyst. 展开更多
关键词 FISCHER-TROPSCH Fe3O4-Mn Co loading Synergistic effect
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Recent advances in application of iron‐based catalysts for CO_(x) hydrogenation to value‐added hydrocarbons 被引量:3
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作者 Junhui Liu Yakun Song +2 位作者 Xuming Guo Chunshan Song Xinwen Guo 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第3期731-754,共24页
The widespread utilization of fossil fuels has caused an associated increase in CO_(2) emissions over the past few decades,which has resulted in global warming and ocean acidification.CO hydrogenation(Fischer‐Tropsch... The widespread utilization of fossil fuels has caused an associated increase in CO_(2) emissions over the past few decades,which has resulted in global warming and ocean acidification.CO hydrogenation(Fischer‐Tropsch synthesis,FTS)is considered a significant route for the production of liquid fuels and chemicals from nonpetroleum sources to meet worldwide demand.Conversion of CO_(2) with renewable H_(2) into valuable hydrocarbons is beneficial for reducing dependence on fossil fuels and mitigating the negative effects of high CO_(2) concentrations in the atmosphere.Iron‐based catalysts exhibit superior catalytic performance in both FTS and CO_(2) hydrogenation to value‐added hydrocarbons.The abundance and low cost of iron‐based catalysts also promote their wide application in CO_(x) hydrogenation.This paper provides a comprehensive overview of the significant developments in the application of iron‐based catalysts in these two fields.The active phases,promoter effect,and support of iron‐based catalysts are discussed in the present paper.Based on understanding of these three essential aspects,we also cover recent advances in the design and preparation of novel iron‐based catalysts for FTS and CO_(2) hydrogenation.Current challenges and future catalytic applications are also outlined. 展开更多
关键词 Iron‐based catalyst Fischer‐Tropsch synthesis CO_(2)hydrogenation PROMOTER Support Active phase
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Effect of the support on cobalt carbide catalysts for sustainable production of olefins from syngas 被引量:4
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作者 Xinxing Wang Wen Chen +7 位作者 Tiejun Lin Jie Li Fei Yu Yunlei An Yuanyuan Dai Hui Wang Liangshu Zhong Yuhan Sun 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第12期1869-1880,共12页
Co2C‐based catalysts with SiO2,γ‐Al2O3,and carbon nanotubes(CNTs)as support materials were prepared and evaluated for the Fischer‐Tropsch to olefin(FTO)reaction.The combination of catalytic performance and structu... Co2C‐based catalysts with SiO2,γ‐Al2O3,and carbon nanotubes(CNTs)as support materials were prepared and evaluated for the Fischer‐Tropsch to olefin(FTO)reaction.The combination of catalytic performance and structure characterization indicates that the cobalt‐support interaction has a great influence on the Co2C morphology and catalytic performance.The CNT support facilitates the formation of a CoMn composite oxide during calcination,and Co2C nanoprisms were observed in the spent catalysts,resulting in a product distribution that greatly deviates from the classical Anderson‐Schulz‐Flory(ASF)distribution,where only 2.4 C%methane was generated.The Co3O4 phase for SiO2‐andγ‐Al2O3‐supported catalysts was observed in the calcined sample.After reduction,CoO,MnO,and low‐valence CoMn composite oxide were generated in theγ‐Al2O3‐supported sample,and both Co2C nanospheres and nanoprisms were identified in the corresponding spent catalyst.However,only separated phases of CoO and MnO were found in the reduced sample supported by SiO2,and Co2C nanospheres were detected in the spent catalyst without the evidence of any Co2C nanoprisms.The Co2C nanospheres led to a relatively high methane selectivity of 5.8 C%and 12.0 C%of theγ‐Al2O3‐and SiO2‐supported catalysts,respectively.These results suggest that a relatively weak cobalt‐support interaction is necessary for the formation of the CoMn composite oxide during calcination,which benefits the formation of Co2C nanoprisms with promising catalytic performance for the sustainable production of olefins via syngas. 展开更多
关键词 Fischer‐Tropsch to olefins Cobalt carbide Supported catalyst OLEFIN SYNGAS
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