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再生骨料碳化强化的微观机理分析 被引量:3
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作者 欧阳楚才 李燕良 沈小俊 《山西建筑》 2019年第16期88-89,共2页
概述了国内外常用的再生骨料强化方法,对碳化强化改善再生骨料性能及其微观机理进行了总结与分析。碳化强化再生骨料性能的机理主要是通过CO2与再生骨料表面附着老砂浆中的Ca(OH)2和C-S-H凝胶反应生成CaCO3和硅胶填充孔隙,使得其内部的... 概述了国内外常用的再生骨料强化方法,对碳化强化改善再生骨料性能及其微观机理进行了总结与分析。碳化强化再生骨料性能的机理主要是通过CO2与再生骨料表面附着老砂浆中的Ca(OH)2和C-S-H凝胶反应生成CaCO3和硅胶填充孔隙,使得其内部的微观结构朝着有利于骨料性能提高的方向发展。 展开更多
关键词 再生骨料 碳化强化 微观机理
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预浸石灰水碳化再生粗骨料混凝土的力学性能 被引量:6
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作者 张春生 李雅婧 +2 位作者 丁亚红 武军 宁威 《建筑材料学报》 EI CAS CSCD 北大核心 2022年第11期1143-1150,共8页
采用预浸石灰水碳化法对再生粗骨料进行强化处理,对强化前后再生粗骨料物理性能进行检测,研究了碳化再生粗骨料对混凝土力学性能的影响.同时结合微观测试手段,分析碳化对再生粗骨料的增强机理.通过立方体抗压、劈裂抗拉及抗折强度试验,... 采用预浸石灰水碳化法对再生粗骨料进行强化处理,对强化前后再生粗骨料物理性能进行检测,研究了碳化再生粗骨料对混凝土力学性能的影响.同时结合微观测试手段,分析碳化对再生粗骨料的增强机理.通过立方体抗压、劈裂抗拉及抗折强度试验,研究强化后混凝土各龄期强度变化.结果表明:预浸石灰水碳化法能够显著改善再生粗骨料的物理性能,其吸水率降低15.2%~22.9%,压碎值降低15.2%~17.7%;碳化后粗骨料的界面过渡区更加密实,有利于再生粗骨料品质的提升;7、28 d的混凝土强度随粗骨料取代率的增大而降低;当粗骨料取代率为50%时,预浸石灰水碳化再生混凝土强度与普通混凝土相当. 展开更多
关键词 再生粗骨料 碳化强化 石灰水预浸泡 微观结构 力学性能
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水泥浆-碳化协同增强再生混凝土骨料研究 被引量:2
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作者 冯春花 崔卜文 +2 位作者 郭晖 张文艳 朱建平 《材料导报》 CSCD 北大核心 2023年第21期139-143,共5页
提高再生混凝土骨料(RCA)的性能对其在结构工程中得到更广泛的应用有着重要的研究意义。本研究利用水泥浆-碳化协同增强方法对再生混凝土骨料(RCA)进行强化处理,并与未强化、单一水泥浆增强、单一碳化增强处理RCA进行对比分析。结果表明... 提高再生混凝土骨料(RCA)的性能对其在结构工程中得到更广泛的应用有着重要的研究意义。本研究利用水泥浆-碳化协同增强方法对再生混凝土骨料(RCA)进行强化处理,并与未强化、单一水泥浆增强、单一碳化增强处理RCA进行对比分析。结果表明:协同强化后RCA的基本性能明显改善,吸水率、压碎值、孔隙率较未处理RCA分别降低了16.04%、19.77%、36.29%;与单一强化相比,水泥水化与碳化的协同效应可以在加固RCA表面的同时,进一步利用碳化产物修补RCA的附着砂浆和界面过渡区(ITZ)。水泥浆-碳化协同强化是一种效果明显、环境友好且成本低的RCA增强方法。 展开更多
关键词 再生混凝土骨料 水泥浆-协同强化 增强 界面过渡区(ITZ)
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Ca(OH)_(2)预浸泡浓度对碳化增强再生骨料混凝土性能的影响 被引量:1
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作者 张少坤 李晨鹏 +2 位作者 吴晓晴 陈研衡 林腾玮 《福建建筑》 2022年第2期52-55,共4页
将产量逐年递增的建筑固废进行加工,生产再生骨料替代天然骨料,可以消耗建筑固废,减少矿产资源开采。采用CO_(2)加速碳化再生粗骨料,可提高其吸水率和压碎指标,同时还能起到固碳作用,有利于助力碳中和。为了提高碳化效率,将再生粗骨料... 将产量逐年递增的建筑固废进行加工,生产再生骨料替代天然骨料,可以消耗建筑固废,减少矿产资源开采。采用CO_(2)加速碳化再生粗骨料,可提高其吸水率和压碎指标,同时还能起到固碳作用,有利于助力碳中和。为了提高碳化效率,将再生粗骨料浸泡于Ca(OH)_(2)溶液进行预处理,并研究不同浸泡浓度对再生粗骨料及其所制备的再生骨料混凝土性能的影响。结果表明:Ca(OH)_(2)溶液浸泡浓度为4 mol/kg时,碳化效果最优,再生粗骨料的吸水率和压碎指标比未处理时,分别提高了10.4%和9.4%,所制备的再生骨料混凝土的28 d抗压强度和劈裂抗拉强度则分别提高了8.4%和18.6%。 展开更多
关键词 再生粗骨料 碳化强化 Ca(OH)_(2)预浸泡 基本力学性能
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Advances in the studies of the supported ruthenium catalysts for CO_(2) methanation
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作者 Chenyang Shen Menghui Liu +2 位作者 Song He Haibo Zhao Chang-jun Liu 《Chinese Journal of Catalysis》 SCIE CAS CSCD 2024年第8期1-15,共15页
CO_(2) methanation has a potential in the large-scale utilization of carbon dioxide.It has also been considered to be useful for the renewable energy storage.The commercial pipeline for natural gas transportation can ... CO_(2) methanation has a potential in the large-scale utilization of carbon dioxide.It has also been considered to be useful for the renewable energy storage.The commercial pipeline for natural gas transportation can be directly applied for the methane product of CO_(2) methanation.The supported ruthenium(Ru)catalyst has been confirmed to be active and stable for CO_(2) methanation with its high ability in the dissociation of hydrogen and the strong binding of carbon monoxide.CO_(2) methanation over the supported Ru catalyst is structure sensitive.The size of the Ru catalyst and the support have significant effects on the activity and the mechanism.A significant challenge re-mained is the structural controllable preparation of the supported Ru catalyst toward a sufficiently high low-temperature activity.In this review,the recent progresses in the investigations of the supported Ru catalysts for CO_(2) methanation are summarized.The challenges and the future devel-opments are also discussed. 展开更多
关键词 RUTHENIUM Carbon dioxide METHANATION HYDROGENATION Catalyst and metal-support interaction
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Comparative Bioremediation of Petroleum Hydrocarbon-Contaminated Soil by Biostimulation, Bioaugmentation and Surfactant Addition 被引量:1
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作者 Elise A. Asquith Phillip M. Geary +1 位作者 Annette L. Nolan Craig A. Evans 《Journal of Environmental Science and Engineering(A)》 2012年第5期637-650,共14页
A bench-scale biopiling experiment was conducted to hydrocarbon bioremediation in a chronically contaminated soil compare the ability of different techniques to enhance petroleum After 195 days, 10%-32% removal of TP... A bench-scale biopiling experiment was conducted to hydrocarbon bioremediation in a chronically contaminated soil compare the ability of different techniques to enhance petroleum After 195 days, 10%-32% removal of TPHs (total petroleum hydrocarbons) occurred in unamended soil (control). Biostimulation by inorganic nutrient addition enhanced TPH removal (49%) confirming that bioremediation was nutrient limited and the soil contained a well-adapted hydrocarbonoclastic microbial community. The addition of organic amendments including green waste at 25% and 50% (w/w) and a commercial product called DaramendTM had a further biostimulatory effect (50%-66%, 34%-59% and 69%-80% TPH removal respectively). Bioaugmentation using two commercially available petroleum hydrocarbon degrading microbial cultures with nutrients enhanced TPH removal in the case of RemActivTM (60%-69%), but had a marginal effect using Recycler 102 (49%-55%). The effect of a non-ionic surfactant in green waste amended soil was variable (52%-72% TPH reduction), but its potential to enhance biodegradation presumably by promoting contaminant bioavailability was demonstrated. High degradation of artificially added polycyclic aromatic hydrocarbons (PAHs) occurred after 106 days (75%-84%), but significant differences between the control and treatments were unapparent, suggesting that spiked soils do not reflect the behavior of contaminants in genuinely polluted and weathered soil. 展开更多
关键词 BIOREMEDIATION petroleum hydrocarbons BIOAUGMENTATION BIOSTIMULATION surfactant.
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日发明可钉钉子的玻璃
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作者 海频 《江苏轻工信息》 2001年第5期22-22,共1页
关键词 日本 硼酸玻璃粉 纤维强化 最大断裂力
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Effects of SiC amount on phase compositions and properties of Ti_3SiC_2-based composites 被引量:2
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作者 蔡艳芝 殷小玮 尹洪峰 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期14-22,共9页
The phase compositions and properties of Ti3SiC2-based composites with SiC addition of 5%-30% in mass fraction fabricated by in-situ reaction and hot pressing sintering were studied. SiC addition effectively prevented... The phase compositions and properties of Ti3SiC2-based composites with SiC addition of 5%-30% in mass fraction fabricated by in-situ reaction and hot pressing sintering were studied. SiC addition effectively prevented TiC synthesis but facilitated SiC synthesis. The Ti3SiC2/Ti C-SiC composite had better oxidation resistance when SiC added quantity reached 20% but poorer oxidation resistance with SiC addition under 15% than Ti3SiC2/TiC composite at higher temperatures. There were more than half of the original SiC and a few Ti3SiC2 remaining in Ti3SiC2/Ti C-SiC with 20% SiC addition, but all constituents in Ti3Si2/TiC composite were oxidized after 12 h in air at 1500 °C. The oxidation scale thickness of TS30, 1505.78 μm, was near a half of that of T,2715 μm, at 1500 °C for 20 h. Ti3SiC2/Ti C composite had a flexural strength of 474 MPa, which was surpassed by Ti3SiC2/TiC-SiC composites when SiC added amount reached 15%. The strength reached the peak of 518 MPa at 20% SiC added amount. 展开更多
关键词 in-situ reaction composites oxidation mechanical properties
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Porousizing catalysts for boosting CO_(2) electroreduction
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作者 Xiaoyu You Caoyu Yang +1 位作者 Xinwei Li Zhiyong Tang 《Chinese Journal of Catalysis》 2024年第12期4-20,共17页
Facing soaring global energy demand and intensifying environmental problems,the search for sustainable energy alternatives has become imperative.The efficient conversion of carbon dioxide(CO_(2)),one of the primary gr... Facing soaring global energy demand and intensifying environmental problems,the search for sustainable energy alternatives has become imperative.The efficient conversion of carbon dioxide(CO_(2)),one of the primary greenhouse gases,plays the crucial role in mitigating global climate change.The electrocatalytic CO_(2) reduction reaction(eCO_(2)RR)provides an effective solution for its conversion into high-value-added chemicals,promoting the development of the carbon cycle and green chemistry.Porous materials of distinctive physicochemical properties have demonstrated substantial potential in eCO_(2)RR.In this review,various strategies of porousizing catalysts for boosted eCO_(2)RR are briefly summarized.Subsequently,the functionalities of porous materials including enrichment effect,modulating microenvironmental pH,stabilizing key species,facilitating mass transfer and tuning the nature of active sites to improve the efficiency and selectivity of eCO_(2)RR are categorized.Furthermore,we discuss the principal challenges confronting current electrocatalytic systems and propose future research directions.Insights from this review are expected to benefit broad communities of chemical and material research for rationalizing porous electrocatalysts and optimizing eCO_(2)RR performances. 展开更多
关键词 Porous nanomaterials Electrocatalytic carbon dioxide reduction Enrichment Local pH Mass transfer
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Cassava stillage and its anaerobic fermentation liquid as external carbon sources in biological nutrient removal 被引量:4
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作者 Fan BU Xiang HU +1 位作者 Li XIE Qi ZHOU 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2015年第4期304-316,共13页
The aim of this study was to investigate the effects of one kind of food industry effluent, cassava stillage and its anaerobic fermentation liquid, on biological nutrient removal (BNR) from municipal wastewater in a... The aim of this study was to investigate the effects of one kind of food industry effluent, cassava stillage and its anaerobic fermentation liquid, on biological nutrient removal (BNR) from municipal wastewater in anaerobic- anoxic-aerobic sequencing batch reactors (SBRs). Experiments were carried out with cassava stillage supernatant and its anaerobic fermentation liquid, and one pure compound (sodium acetate) served as an external carbon source. Cyclic studies indicated that the cassava by-products not only affected the transformation of nitrogen, phosphorus, poly-13-hydroxyalkanoates (PHAs), and glycogen in the BNR process, but also resulted in higher removal efficiencies for phosphorus and nitrogen compared with sodium acetate. Furthermore, assays for phosphorus accumulating or- ganisms (PAOs) and denitrifying phosphorus accumulating organisms (DPAOs) demonstrated that the proportion of DPAOs to PAOs reached 62.6% (Day 86) and 61.8% (Day 65) when using cassava stillage and its anaerobic fer- mentation liquid, respectively, as the external carbon source. In addition, the nitrate utilization rates (NURs) of the cassava by-products were in the range of 5.49-5.99 g N/(kg MLVSS.h) (MLVSS is mixed liquor volatile suspended solids) and 6.63-6.81 g N/(kg MLVSS.h), respectively. The improvement in BNR performance and the reduction in the amount of cassava stillage to be treated in-situ make cassava stillage and its anaerobic fermentation liquid attractive alternatives to sodium acetate as external carbon sources for BNR processes. 展开更多
关键词 Biological nutrient removal (BNR) DENITRIFICATION Enhanced biological phosphorus removal (EBPR) External carbon source
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The synthesis of micro-sized silicon carbide whiskers and the application for heat transfer enhancement 被引量:3
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作者 ZHANG Pei Gen LIANG Jian Dong +1 位作者 YIN Li Ying GUO Sheng Min 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第12期2371-2378,共8页
This paper presents a simple and cost-effective method for the production of micro-sized silicon carbide whiskers at high yield and the effect on heat transfer enhancement for the whisker laden fluids. For SiC whisker... This paper presents a simple and cost-effective method for the production of micro-sized silicon carbide whiskers at high yield and the effect on heat transfer enhancement for the whisker laden fluids. For SiC whisker synthesis, the starting powder mix- ture is obtained by milling short carbon fibers with the white ashes of rice hulls. Calcina:ion in argon, together with the subse- quent purification process, results in a high yield of SiC whiskers, which possess a diameter of 200-400 nm and a length of several tens of microns. The formation of the whiskers is discussed according to VS growth mechanism. Convective heat transfer performance in small channel tubes is then studied for fluid systems mixed with those micro-sized SiC whiskers at different concentrations. The heat transfer coefficient of SiC containing fluid can be significantly improved in comparison to the base fluid. 展开更多
关键词 SiC whiskers Vapor-Solid whisker suspension heat transfer
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