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哈一联外输管线保护电位过高原因分析及对策 被引量:2
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作者 张波 严东寅 +2 位作者 陈波 江奎 赵松 《天然气与石油》 2017年第4期94-98,共5页
哈一联外输管线管地电位达到-2 290 mV(CES)以上,远高于相关标准要求值。为分析哈一联外输管线保护电位超高原因,防止析氢作用对管线的损害,结合哈一联外输管线所处的环境,对管线外界干扰电压电流进行测试分析;同时采用近参比电极法与... 哈一联外输管线管地电位达到-2 290 mV(CES)以上,远高于相关标准要求值。为分析哈一联外输管线保护电位超高原因,防止析氢作用对管线的损害,结合哈一联外输管线所处的环境,对管线外界干扰电压电流进行测试分析;同时采用近参比电极法与试片断电法相结合进行电位测试,分析高土壤电阻带来的IR降对管地电位偏负的影响。结果表明:哈一联外输管线基本不受外界杂散电流干扰,测试回路的高电阻降是导致电位超高的主要原因;近参比试片不断电情况下,可以降低由回路电阻R造成的电位500 mV左右,试片断电时,电位进一步降低550 mV,证明需要用近参比电极法与试片断电法结合测量本管线的管地保护电位。 展开更多
关键词 阴极保护 电位超高 干扰 试片 近参比 高电阻降
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Ultrathin 3D radial tandem‐junction photocathode with a high onset potential of 1.15 V for solar hydrogen production
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作者 Shaobo Zhang Huiting Huang +8 位作者 Zhijie Zhang Jianyong Feng Zongguang Liu Junzhuan Wang Jun Xu Zhaosheng Li Linwei Yu Kunji Chen Zhigang Zou 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第7期1842-1850,共9页
Combining a progressive tandem junction design with a unique Si nanowire(SiNW)framework paves the way for the development of high‐onset‐potential photocathodes and enhancement of solar hydrogen production.Herein,a r... Combining a progressive tandem junction design with a unique Si nanowire(SiNW)framework paves the way for the development of high‐onset‐potential photocathodes and enhancement of solar hydrogen production.Herein,a radial tandem junction(RTJ)thin film water‐splitting photo‐cathode has been demonstrated experimentally for the first time.The photocathode is directly fab‐ricated on vapor‐liquid‐solid‐grown SiNWs and consists of two radially stacked p‐i‐n junctions,featuring hydrogenated amorphous silicon(a‐Si:H)as the outer absorber layer,which absorbs short wavelengths,and hydrogenated amorphous silicon germanium(a‐SiGe:H)as the inner layer,which absorbs long wavelengths.The randomly distributed SiNW framework enables highly efficient light‐trapping,which facilitates the use of very thin absorber layers of a‐Si:H(~50 nm)and a‐SiGe:H(~40 nm).In a neutral electrolyte(pH=7),the three‐dimensional(3D)RTJ photocathode delivers a high photocurrent onset of 1.15 V vs.the reversible hydrogen electrode(RHE),accompanied by a photocurrent of 2.98 mA/cm^(2) at 0 V vs.RHE,and an overall applied‐bias photon‐to‐current effi‐ciency of 1.72%.These results emphasize the promising role of 3D radial tandem technology in developing a new generation of durable,low‐cost,high‐onset‐potential photocathodes capable of large‐scale implementation。 展开更多
关键词 Solar hydrogen production 3D radial tandem junction Amorphous silicon photocathode Very thin absorber High onset potential
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