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Determination Of Chloride Ion In Industrialeffluent By Chloride Ion-selective potentiometric Sensor

机译:氯离子选择电位传感器测定工业废水中的氯离子

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This paper describes the fabrication of an ion-selective electrode in which a 2,5-dihydroxy-p-benzoquinone (DHBQ) is used as the ionophore. The polymers prepared were characterized by elemental analyses, FT-infrared spectra and solid state electrical conductivity studies leading to activation energy and conductance measurements. The DC conductance (1/R) values of Fe(III)-DHBQ,Co(II)-DHBQ,Ni(II)-DHBQ and Cu(II)-DHBQ are8.75×10~(-8), 11.8×l0~(-8) 8.33×10~(-8)and 1.28×10~(-8) respectively. The current increased exponentially against temperature proves the semi conductive nature. Thermoelectric power (TEP) measurements showed the sign of the seebeck coefficient which was positive in the temperature range and hence it was concluded that the majority carriers are of n-type. The low activation energy is interpreted in terms of intermediate trap levels. The main advantage of the electrode is that it is mechanically stable upto 3 years. The electrode shows a linear response in the range of 2.5 × 10~(-5)-0.5 × 10~(-1) mol dm~(-3) The response time of the electrode is 30 s. The pH range at which the electrode works is 3.8 to 6.8. The electrode was found to be selective towards chloride ion in the presence of ions like Na~+, Ca~(2+), Mn~(2+), Fe~(3+), Co~(2+), Cu~(2+), Zn~(2+), CH_3COO~-, NO_3~-, SO_4~(2-), Br and NO_2~-.
机译:本文介绍了一种离子选择电极的制造方法,其中使用2,5-二羟基-对苯醌(DHBQ)作为离子载体。通过元素分析,傅立叶变换红外光谱和固态电导率研究来表征所制备的聚合物,从而进行活化能和电导率测量。 Fe(III)-DHBQ,Co(II)-DHBQ,Ni(II)-DHBQ和Cu(II)-DHBQ的直流电导(1 / R)值为8.75×10〜(-8),11.8× l0〜(-8)分别为8.33×10〜(-8)和1.28×10〜(-8)。电流随温度呈指数增长,证明了其半导体特性。热电功率(TEP)测量显示塞贝克系数的符号在温度范围内为正,因此得出结论,多数载流子为n型。根据中间陷阱能级来解释低活化能。电极的主要优点是机械稳定性最高可达3年。电极的线性响应在2.5×10〜(-5)-0.5×10〜(-1)mol dm〜(-3)范围内。电极的响应时间为30 s。电极工作的pH范围是3.8至6.8。发现该电极在诸如Na〜+,Ca〜(2 +),Mn〜(2 +),Fe〜(3 +),Co〜(2 +),Cu〜等离子的存在下对氯离子具有选择性(2 +),Zn〜(2 +),CH_3COO〜-,NO_3〜-,SO_4〜(2-),Br和NO_2〜-。

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