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C55箱梁混凝土的制备与经济效益分析
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作者 张志新 彭龙辉 陈勇 《重庆建筑》 2017年第10期38-41,共4页
该文从原材料的质量控制、性能分析及配合比的优化,针对混合砂和天然中砂为细骨料制备的箱梁混凝土的工作性、力学性能、早期抗裂性能、徐变性能及经济效益进行了比对分析。结果表明,混合砂混凝土和天然中砂混凝土在早期抗裂性能和徐变... 该文从原材料的质量控制、性能分析及配合比的优化,针对混合砂和天然中砂为细骨料制备的箱梁混凝土的工作性、力学性能、早期抗裂性能、徐变性能及经济效益进行了比对分析。结果表明,混合砂混凝土和天然中砂混凝土在早期抗裂性能和徐变性能方面表现相当;但与天然中砂混凝土相比,混合砂混凝土表现出更好的工作性,且实体强度要高3~5MPa,同时单方造价要低10%,可见混合砂混凝土具有更好的技术和经济效益。 展开更多
关键词 箱梁混凝土 混合砂 天然中砂 抗裂性能 徐变性能
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Removal from Water and Adsorption onto Natural Quartz Sand of Hydroquinone
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作者 Hassan Ouachtak Rachid Ait Akbour +2 位作者 Jamaa Douch Amane Jada Mohamed Hamdani 《Journal of Encapsulation and Adsorption Sciences》 2015年第3期131-143,共13页
Hydroquinone (HQ) is the most important hydroxy aromatic compound which is produced on a large scale. Understanding its fate in the environment is therefore of primary importance to prevent its migration in the soil a... Hydroquinone (HQ) is the most important hydroxy aromatic compound which is produced on a large scale. Understanding its fate in the environment is therefore of primary importance to prevent its migration in the soil and/or the contamination of the aquatic ecosystems. Here we present a column based method to investigate the physicochemical processes controlling the removal from the aqueous phase and the adsorption onto natural quartz sand (NQS), of organic pollutant such as HQ molecules. We will focus on the interactions that occur between the organic pollutant and the NQS substrate. Thus, column reactors filled with NQS were used to investigate the influence of physicochemical parameters such as the ionic strength, the pH, the flow rate, and the nature of the electrolyte cation, on the HQ adsorption from water onto NQS substrate. The data indicate that, when divalent instead of monovalent cations, are present in the effluent water injection phase, and/or when the ionic strength of the effluent increases, the adsorbed HQ amount decreases. Similar decrease of the adsorbed HQ amount was also observed, at constant ionic strength, by increasing either, the pH from 3 to 9, the flow rate Q from 1 to 3 ml·mn-1, or by decreasing the HQ initial concentration, C0 from 30 to 6 mg·L-1. Further, large amount of the organic pollutant (up to 93 wt% of HQ molecules) was removed from the effluent water phase by using NQS column. The overall data seem to indicate that the adsorption of HQ molecules on the NQS surface is mainly controlled by electrostatic interaction forces occurring between the organic molecule polar groups and the inorganic matrix silanol groups. 展开更多
关键词 ADSORPTION HYDROQUINONE natural QUARTZ sand Migration Porous medium Surface CHARGE
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