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广义网孔方程建立算法研究 被引量:1
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作者 高红艳 段旭朝 刘飞 《现代电子技术》 2010年第8期154-156,共3页
为了探究广义网孔方程建立规范和方法,对含有公共电流源支路电路的网孔方程进行详细的理论分析,探寻了广义网孔方程的构成规律,得到了广义网孔方程的建立算法,该算法具有普适性。在应用网孔分析法分析含有公共电流源支路的电路问题时,... 为了探究广义网孔方程建立规范和方法,对含有公共电流源支路电路的网孔方程进行详细的理论分析,探寻了广义网孔方程的构成规律,得到了广义网孔方程的建立算法,该算法具有普适性。在应用网孔分析法分析含有公共电流源支路的电路问题时,在不引入辅助解变量的情况下,利用该算法可快捷地建立起广义网孔方程,提高了分析和求解效率。由实例证明,广义网孔方程建立算法是正确的、有效的,是对网孔分析法的一种推广和完善。 展开更多
关键词 广义网孔 网孔方程 网孔分析法 电路分析
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Trifunctional Cu-Mesh/Cu_(2)O@FeO Nanoarrays for Highly Efficient Degradation of Antibiotic, Inactivation of Antibiotic-Resistant Bacteria, and Damage of Antibiotics Resistance Genes
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作者 Long Zhao Wei Zhou +6 位作者 Ming Wen Qingsheng Wu Weiying Li Yongqing Fu Quanjing Zhu Sheng Chen and Jiaqi Ran 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第1期349-359,共11页
Trifunctional Cu-mesh/Cu_(2)O@FeO nanoarrays heterostructure is designed and fabricated by integrating CuCu_(2)O@FeO nanoarrays onto Cu-mesh(CM)via an in situ growth and phase transformation process.It is successfully... Trifunctional Cu-mesh/Cu_(2)O@FeO nanoarrays heterostructure is designed and fabricated by integrating CuCu_(2)O@FeO nanoarrays onto Cu-mesh(CM)via an in situ growth and phase transformation process.It is successfully applied to efficiently mitigate the antibiotic pollution,including degradation of antibiotics,inactivation of antibiotic-resistant bacteria(ARB),and damage of antibiotics resistance genes(ARGs).Under visible-light irradiation,CM/CuCu_(2)O@FeO nanoarrays exhibit a superior degradation efficiency on antibiotics(e.g.,up to 99%in 25 min for tetracycline hydrochloride,TC),due to the generated reactive oxygen species(ROS),especially the dominant·O^(2−).It can fully inactivate E.coli(HB101)with initial number of~108 CFU mL^(−1) in 10 min,which is mainly attributed to the synergistic effects of 1D nanostructure,dissolved metal ions,and generated ROS.Meanwhile,it is able to damage ARGs after 180 min of photodegradation,including tetA(vs TC)of 3.3 log 10,aphA(vs kanamycin sulfate,KAN)of 3.4 log 10,and tnpA(vs ampicillin,AMP)of 4.4 log 10,respectively.This work explores a green way for treating antibiotic pollution under visible light. 展开更多
关键词 antibiotic antibiotic resistance genes antibiotic-resistant bacteria Cu-mesh/Cu_(2)O@FeO nanoarrays photocatalytic degradation
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