分析科学学报
分析科學學報
분석과학학보
JOURNAL OF ANALYTICAL SCIENCE
2009年
5期
583-586
,共4页
黄泽南%周琦%邓昌爱%李红波
黃澤南%週琦%鄧昌愛%李紅波
황택남%주기%산창애%리홍파
A_N=0双波长补偿系数光度法%100%相消干扰%补偿系数%酸性铬蓝K%铜(Ⅱ)
A_N=0雙波長補償繫數光度法%100%相消榦擾%補償繫數%痠性鉻藍K%銅(Ⅱ)
A_N=0쌍파장보상계수광도법%100%상소간우%보상계수%산성락람K%동(Ⅱ)
A_N=0 dual-wavelength compensation coefficient spectrophotometry%Absolute destructive interference%Compensation coefficient%Acid chrome blue K%Cu(Ⅱ)
在pH=12.7的NaOH介质中,铜(Ⅱ)与酸性铬蓝K(ACBK)形成深红色配合物,应用该配合物生色对试剂ACBK褪色产生100%相消干扰的波长533 nm作为负峰波长,建立了ACBK测定铜(Ⅱ)的A_N=0双波长补偿系数光度法.该法能消除显色剂ACBK褪色对生成物Cu(ACBK)生色的相消干扰,测得生色法真实吸光度,消除生成物生色对有色剂ACBK褪色的相消干扰;测得褪色法近似真实吸光度,其灵敏度是上述两法之和.于波长λp 573 nm,λN 533 nm测得信号吸光度补偿系数fs为4.135,信号摩尔吸光系数为4.56×10~4 L·5moL~(-1)·5cm~(-1),是经典光度法的3.73倍.方法线性范围为0.02~1.60 mg·~(-1),配合物的摩尔比为Cu∶ACBK=1∶1.测定了某些水样中的铜(Ⅱ),并对方法进行了检验,回收率为96%~104%.
在pH=12.7的NaOH介質中,銅(Ⅱ)與痠性鉻藍K(ACBK)形成深紅色配閤物,應用該配閤物生色對試劑ACBK褪色產生100%相消榦擾的波長533 nm作為負峰波長,建立瞭ACBK測定銅(Ⅱ)的A_N=0雙波長補償繫數光度法.該法能消除顯色劑ACBK褪色對生成物Cu(ACBK)生色的相消榦擾,測得生色法真實吸光度,消除生成物生色對有色劑ACBK褪色的相消榦擾;測得褪色法近似真實吸光度,其靈敏度是上述兩法之和.于波長λp 573 nm,λN 533 nm測得信號吸光度補償繫數fs為4.135,信號摩爾吸光繫數為4.56×10~4 L·5moL~(-1)·5cm~(-1),是經典光度法的3.73倍.方法線性範圍為0.02~1.60 mg·~(-1),配閤物的摩爾比為Cu∶ACBK=1∶1.測定瞭某些水樣中的銅(Ⅱ),併對方法進行瞭檢驗,迴收率為96%~104%.
재pH=12.7적NaOH개질중,동(Ⅱ)여산성락람K(ACBK)형성심홍색배합물,응용해배합물생색대시제ACBK퇴색산생100%상소간우적파장533 nm작위부봉파장,건립료ACBK측정동(Ⅱ)적A_N=0쌍파장보상계수광도법.해법능소제현색제ACBK퇴색대생성물Cu(ACBK)생색적상소간우,측득생색법진실흡광도,소제생성물생색대유색제ACBK퇴색적상소간우;측득퇴색법근사진실흡광도,기령민도시상술량법지화.우파장λp 573 nm,λN 533 nm측득신호흡광도보상계수fs위4.135,신호마이흡광계수위4.56×10~4 L·5moL~(-1)·5cm~(-1),시경전광도법적3.73배.방법선성범위위0.02~1.60 mg·~(-1),배합물적마이비위Cu∶ACBK=1∶1.측정료모사수양중적동(Ⅱ),병대방법진행료검험,회수솔위96%~104%.
An A_N=0 dual-wavelength compensation coefficient spectrophotometric method has been established for the determination of copper (Ⅱ) using 533 nm as the discoloring peak's wavelength. The method was based on the red dark chelate formation between copper (Ⅱ) and acid chrome blue K (ACBK) in the NaOH medium (pH=12.7). This method could determine the real absorbance of the chromogenic Cu(ACBK) through eliminating the destructive interference of discolored ACBK on Cu(ACBK) and could also determine the similar real absorbance of the ACBK through eliminating the destructive interference of Cu(ACBK) on the discoloration of ACBK. This method provided 2-fold increase in sensitivity compared with the conventional spectrophotometric methods. The compensation coefficient fs of absorbance signal is 4.135 at wavelength of λp 573 nm and λN 533 nm and the signal molar absorptivity is 4.56×10~4 L·5moL~(-1)·5cm~(-1),which is 3.73 times greater than that obtained by traditional method, and the linear range is 0.02~1.60 mg·~(-1) Cu(Ⅱ). The developed method has been applied for the determination of Cu(Ⅱ) in water samples with recovery in the range of 96%~104%.