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气浮/三维电解/生物降解处理芯片封装测试废水研究 被引量:1
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作者 钟志贤 刘晓婷 +1 位作者 黄小雯 宋勇 《工业水处理》 CAS CSCD 北大核心 2023年第6期171-175,共5页
采用“气浮+三维催化电解+生物选择+厌氧好氧”组合工艺处理电子芯片封装测试厂生产废水,探索了各处理单元的不同运行参数对废水中污染物降解的影响。结果表明:四级三维催化电解是该处理工艺的关键步骤,通过四级三维催化电解可使废水中... 采用“气浮+三维催化电解+生物选择+厌氧好氧”组合工艺处理电子芯片封装测试厂生产废水,探索了各处理单元的不同运行参数对废水中污染物降解的影响。结果表明:四级三维催化电解是该处理工艺的关键步骤,通过四级三维催化电解可使废水中的难降解、具有毒性的有机污染物得到分解,为后续生物处理创造条件。在四级三维电解过程中,当每级的电流密度为70 mA/cm^(2)、总电解时间为6.0 h时,废水COD降解率可达85%以上。确定溶气压力0.2 MPa时的最佳气浮时间为45 min,生物选择池的停留时间为2~3 h。厌氧处理结果表明,当水力停留时间为4 d时,出水BOD/COD可提高到0.28左右。好氧处理的最佳曝气时间为14 h。该组合工艺可使废水中的COD降至300 mg/L,TN低于20 mg/L。 展开更多
关键词 气浮 三维催化电解 电子芯片封装测试 粒子电极
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In-situ formation of cobalt phosphide nanoparticles confined in three-dimensional porous carbon for high-performing zinc-air battery and water splitting
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作者 Xinxin Shu Maomao Yang +2 位作者 Miaomiao Liu Huaisheng Wang Jintao Zhang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第12期3107-3115,共9页
The rational design of efficient and stable carbon-based electrocatalysts for oxygen reduction and oxygen evolution reactions is crucial for improving energy density and long-term stability of rechargeable zinc-air ba... The rational design of efficient and stable carbon-based electrocatalysts for oxygen reduction and oxygen evolution reactions is crucial for improving energy density and long-term stability of rechargeable zinc-air batteries(ZABs).Herein,a general and controllable synthesis method was developed to prepare three-dimensional(3D)porous carbon composites embedded with diverse metal phosphide nanocrystallites by interfacial coordination of transition metal ions with phytic acid-doped polyaniline networks and subsequent pyrolysis.Phytic acid as the dopant of polyaniline provides favorable anchoring sites for metal ions owing to the coordination interaction.Specifically,adjusting the concentration of adsorbed cobalt ions can achieve the phase regulation of transition metal phosphides.Thus,with abundant cobalt phosphide nanoparticles and nitrogen-and phosphorus-doping sites,the obtained carbon-based electrocatalysts exhibited efficient electrocatalytic activities toward oxygen reduction and evolution reactions.Consequently,the fabricated ZABs exhibited a high energy density,high power density of 368 mW cm^(-2),and good cycling/mechanical stability,which could power water splitting for integrated device fabrication with high gas yields. 展开更多
关键词 Cobalt phosphide Three-dimensional porous carbon ELECTROCATALYSIS Zinc-air battery Water splitting
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