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黄冈公铁两用长江大桥钢吊箱围堰下水施工技术 被引量:1
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作者 吴杰 《江西建材》 2014年第2期167-169,共3页
黄冈公铁两用长江大桥3#墩钢吊箱围堰为主塔基础施工的挡水结构,兼作施工钻孔平台的承重结构。双壁吊箱围堰为巨大型钢结构,其加工制造复杂,且作为钻孔平台,其制造工期紧。因此钢围堰如何快速优质制造、顺利安全下水是施工的难点,也是... 黄冈公铁两用长江大桥3#墩钢吊箱围堰为主塔基础施工的挡水结构,兼作施工钻孔平台的承重结构。双壁吊箱围堰为巨大型钢结构,其加工制造复杂,且作为钻孔平台,其制造工期紧。因此钢围堰如何快速优质制造、顺利安全下水是施工的难点,也是双壁钢吊箱围堰施工的关键所在。 展开更多
关键词 公铁两用桥 钢吊箱围堰 气囊法 自重分力 下滑 下水
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Effects of Coexisting Substances on Nitrobenzene Degradation with O_3/H_2O_2 Process in High-Gravity Fields
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作者 Zhang Shiguang Qin Yuejiao +3 位作者 Zhang Dongming Jiao Weizhou Guo Liang Liu Youzhi 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2016年第4期32-40,共9页
This study used nitrobenzene as the simulated pollutant to study the effects of common inorganic sodium salts and organics on nitrobenzene degradation by O_3/H_2O_2 in high-gravity fields. The experiment results showe... This study used nitrobenzene as the simulated pollutant to study the effects of common inorganic sodium salts and organics on nitrobenzene degradation by O_3/H_2O_2 in high-gravity fields. The experiment results showed that the highgravity technology could increase the nitrobenzene removal rate by improving the ozone transfer efficiency and ozone dissolution. Coexisting substances had different effects on the degradation kinetics of nitrobenzene in high-gravity fields. Among such substances, Na_2CO_3, NaOH, Na_3PO_4, and NaNO_3 accelerated the removal of nitrobenzene. The main action principle of nitrobenzene degradation by O_3/H_2O_2 is that the additives can increase the pH value of the solution, stimulate ozonolysis, generate hydroxyl radicals(·OH), and improve oxidation efficiency. By contrast, NaCl, NaHCO_3, NaHSO_4, ethanol(C_2H_5OH), acetic acid(CH_3COOH), formic acid(HCOOH), and tert-butyl alcohol(TBA) inhibited nitrobenzene removal. When NaHCO_3, CH_3COOH, or HCOOH were added, the pH value of the solution decreased and free radical chain reactions were hindered. However, NaCl, NaHCO_3, C_2H_5OH, and TBA consumed ·OH radicals and inhibited nitrobenzene removal. 展开更多
关键词 wastewater nitrobenzene coexisting substance high gravity ozone hydrogen peroxide
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