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(1)Journal of the Korean Chemical Society 2001, Vol. 45, No. 6 Printed in the Republic of Korea. >Òª7ªCV»j jς 7' >¶ÿ';Ë~~ B·" wÏ. ¿ ú. ;ö&v ¶"& z" (2001. 9. 7 7>) Construction and Use of an Optical Semi-Automatic Titrator Employing the Technique of Reflectance Photometry Hoon Hwang Department of Chemistry, Kangwon National University, Chunchon 200-701, Korea (Received September 7, 2001). º £. >Òª7ªCV»j jς 7' >¶ÿ';Ë~¢ B·~ Ö-"V';, Öz-~ö';, Ž*';, Ò Oz';" ?f J &æ &‚' F;~ ';ªCöB ';Ë~~ ÎÏWj rj~ . 7' >¶ÿ';Ë~º ';ªCöB ';‡~ ïòš æ~º Ö-"V';, Öz-~ö';, Ò EDTA ';~ «ö6 ö jî¢ ';š ê¯>º ÿn ';‡öB Ú«¶ š ;W>º Ž*';~ «ö6   W'b‚ 6ê† > ®î . V¢B *Ò~ 7' >¶ÿ';Ë~º „b‚ j*‚ ;¢ <¾ 7 ' ¶ÿ';Ë~~ B·b‚ šÚî > ®º &ËWj "î . ABSTRACT. An optical semi-automatic titrator was constructed employing the technique of the reflectance spectrometry and was tested for the determination of the end points of the acid-base, precipitation, and EDTA titrations. And since the current optical semi-automatic titrator built on the principle of the reflectance spectrometry could be successfully used even for the determination of the end point in the precipitation titration where the solid particles are formed during the titration process, it was found to be feasible that a completely automated optical titrator would be designed and built based on the current findings.. B † ¢>'b‚ æ£(indicator)j ÒÏ~º >ÿ'; (manual titration)öBº ï6(equivalence point)j æ¾ æ£~ ï(';‡~ ï)š æ~º «ö6(end point)j ’~–, jº‚ ãÖ :û';(blank titration) j >¯Žb‚Ž ';JN(titration error)¢ ‚²z‚ . ¾ æ£~ ïš æ~º æ6~ 6êj '; >¯ ¶~ Gnöò ~šš¢ ~º >ÿ';öBº ';ª C~ >¯¶ö V¢ ï æzö &‚ 6êK~ Nšö "–~º JN& B† ²æ& ¸ . šf z®Ú ' ;‡" '&‡~ ³ê& cf ãÖö¾ ‚F~ æ£. j Òφ > ìº ãÖöBf ?š «ö6öB~ ï~ æz& ª«~æ pf ';ªCöBº «ö6~ 6ê ·ëöB~ ;{W(accuracy)š¾ Ò*W(reproducibility) š Ôjî ><ö ì . >ÿ';öB B† > ®º šf ?f ^B6 j ~V *š ';ªC~ ¶ÿ z·ë š ·~² šÚæ ® . *Ò 6Ò ÒÏ ~ ®º ¶ÿ';Ë~(autotitrator) f **N» (potentiometry), *~»(amperometry), *Vï»(coulometry), Ò *êê»(conductometry) " ?f * Vz' ªCV» ~ öÒö "–¢ vÚ B·B ©. š . *Vz' ªCV»ö "–¢ z ¶ÿ';Ë ~ ~ ãÖöº æ£j Òφ jº& ìbæ‚ æ 1. †513†.

(2) ¿ ú. 514. £~ ï æzö &NB ÚJæš ì º Ë6" Žþ ';‡~ v>·ëö ~š .¾>º ';‡~ ²Ïò š *皾 Ž*>wö ~‚ Ú«¶~ ;W ö ~ ‚ 'Ëj Aæ pbæ‚ –~ Î F;~ ';ªCö ÒÏF > ® º Ë6j &ê . ¾ š ';Ë ~ ê ¾ª&‚~ 6 j Ú~ ® . .‚Ž, æ *(indicator electrode)" V&*(reference electrode) " ?f * j ÒÏ~º **N» ¶ÿ';Ë~ (potentiometric autotitrator)~ ãÖ ªC&çWªö V ¢ '.‚ æ*j Fê'b‚ ÒϚ¢ ‚ º 6, * ~ Fæ 5 &Ò~ ®–‚æ, Ò &Z~æ pf *&Ïö Vž ãB'ž ¦ j > ® . ';ªC~ ¶ÿz·ëöB J† > ®º 6 ž V»b‚ ª7' ªC»(spectrometry)¢ '† > ® . ¯, ò¢ ‡>ª7ªC»(absorption spectrometry) ~ öÒ¢ ';·ë~ ¶ÿzö 'φ > ® š *V z' ¶ÿ';Ë~ ö jš  z &Z‚ jÏb ‚ B·š &Ë~ ÒÏ»š *ކ ö jî¢ Fæ 5 &ÒöB~ ®–‚æš 'f ¶ÿ';Ë~¢ áj > ® ~Æ . ¾ ¶ÿ';Ë~ö ¢>'ž ‡ >ª7ªC»~ öÒ¢ ê«~º ãÖ 7ö(light source) " 7 ¦ÂV(light detector)& ';‡(titrand)š Z ÏV¢ Қö v B‚ î"² V~² >–, š ãÖ r" ?f ^B6 š B‚ . ÖF Ž*'; öBf ?š ';~ ";ÿn Ú«¶ š ;W>º ãÖöº «¶ ö ~‚ ~ Ö¦(scattering) ö ~ š ‡>ª7ªC»~ öÒ& B&‚ 'ÏF >& ì . 6‚, v>·ëö ~‚ ';‡~ ²Ïòš *ç  ‡>ª7ªC»j jς ';ªC~ ¶ÿzö 6. ž ˆºžb‚ ·Ï† > ® . ¾ Vš~ ‡> ª7ªC"º Ò 7ö" 7 ¦ÂV& Îv ?f ãö V>º >Òª7ªC»(reflectance spectrometry)~ öÒ& ¶ÿ';Ë~~ B·ö ê«B š ';~ " ;ÿn ';‡öB B~º ²Ïòš *皾 Ú «¶~ ;W š ˆºžb‚ò ·Ï~æº pj © b‚ '† > ® . 6‚, ‚" >Òª7ªCö &‚ ’Ö" ö ~~š &7 '~  j 7öb‚ ÒÏ~º >Òª7ªCöB òχ~ ³êf >Òê (degree of reflectance)Қöº çF'ž &ê& W㠎š rJr . V¢B š ’öBº >Òª7ªC ~ öÒ¢ jς 7' ';Ë~¢ B·~ ';ª C~ ";ÿn ';‡~ ïòš æ~º Ö-"V';" 2-4. 5,6. Öz-~ö'; Ò EDTA';öB~ ÎÏWj rj ~ . 6‚, ';ªCš ê¯>º ÿn ';‡öB  Ú«¶& ;W>º Ž*';öB~ ';Ë~~ WËj þš ~ .. þ 7' >¶ÿ';Ë~~ B·. Fig. 1f š ’ö B B·‚ 7' >¶ÿ';Ë~~ êÛê¢ "  ® . š âöB Buret(A, 50-mL)~ ƒ(tip)¦ªö º solenoid valve(B, two-way valve, ÒÏ*{: 24 V DC) & Ö>Ú ® . Solenoid valve& ‘ON’ çž ãÖ öº buretö Îê χš ';‡(D)ö '&>–, ‘OFF’ç& >š '&º 7æB . Solenoid valve~ ‘ON/OFF’çº valveö ÖB *¶–.²‚V6 (electronic control circuit board)(I)ö ¦OB relay(G, ·ÿ*{ 12V DC)~ ·ÿçö V¢ Ö;B . 7ö (L)b‚º 3B~ >ê B7 šJ(high luminescence light emitting diode, LED) j ÒÏ~& LED f '.‚ ’V‚ .‚ ê *öj ւ *¶²‚V6 *ö B‚ ž7‚ ;â';~ ;‚ J~~&b–, j º‚ ãÖ ö~º 2Ë(ï)~ j Úº LED ‚ £² vچ > ®êƒ ~& . LED š J~B *¶²‚V. Fig. 1. Schematic Diagram of an Optical Semi-Automatic Titrator. A: buret, B: solenoid valve, C: cover, D: beaker, E: magnetic stirrer, F: DC power supply for the solenoid valve, G: relay, H: DC power supply for the circuit board, I: electronic control circuit board, J: light detector (silicon photo diode), K: light emitting diodes(leds), L: black plastic tube, M: DC power supply for the leds. Journal of the Korean Chemical Society.

(3) >Òª7ªCV»j jς 7' >¶ÿ';Ë~~ B·" wÏ. 515. {š ÃB ^ö jš z ·f 8j &ææò(V > V ) «ö6ö ê‚ šêöº V&*{š z î > ®êƒ(V <V ) V ~ 8j J;š "º ©š . ';š ·>V *öº V&*{š ÃB 7¦ÂV~ ÂK *{ z ·bæ‚(V >V ) voltage comparator IC ‚¦V~ ÂK^(V )º ‘LOWç’(‘0Vç’)& > –, š ^º flip-flop IC(C, 4013)ö «KB . Flip-flop ICº voltage comparator IC‚¦V~ ÂKB ‘LOWç’~ ^(V )f push-button switch(E)~ ^(V )¢ B‚ jv‚ . Push-button switch~ ÂK^(V )º switch¢ ·ÿ~V *öº V f ?f ‘LOWç’& > –, V¢B flip-flo IC~ ÂK^(V )  ‘LOWç ’& B . ¾ push-button switch¢ 2"š  B* V º ‘HIGHç’(‘12Vç’)‚ æ~² >  Ö" flip-flop IC~ ÂK^(V )ê ‘HIGHç’‚ * ~>Ú relay(D)¢ ‘ONç’‚ ·ÿÎ . Relay& ‘ONç’& >š buret tipö ÖB solenoid valve& J(‘ONç’) χš '&>šB ';š ·B . ';š ê¯>Ú ÃB 7¦ÂV~ ^(V )& V&* {(V )ö jš z ·jæº(V <V ) æ6ö ê~š, voltage comparator IC~ ÂK^(V )º ‘HIGHç’ ‚ æ‚ ê flip-flop IC‚ «KB . š r push-button switch‚¦V flip-flop IC‚ «K>º ^(V )º š ‘LOWç’‚ ~ö>Ú ®º çš . V¢B flip-flop IC‚¦V~ ÂK^(V )º ‘LOWç’& >Ú relay º ‘OFFç’& > š B* solenoid valveê ®š B(‘OFFç’) χ~ '&º NB . Case II. ';š «ö6ö ê~šB 7¦ÂVö « Ò>º >Ò7~ ^V& /Ï~² Ã&~º ãÖ. „~ ãÖfº Ò voltage comparator IC‚ «K>º ^. ž V f V ~ «K*~¢ :ÞÚ & r, .j' ;j ۚ ';~ .Vöº ‘V <V ’šæò «ö6ö ê ~šB ‘V >V ’f ?f &ê& šÚî > ®º ' .‚ V 8j dj V&*{b‚ J;š & . ';š ·>V *(V <V )öº voltage comparator IC‚¦V ~ ÂK^(V )º ‘LOWç’‚ flip-flop IC(C)ö « K>Ú push-button switch(E)‚¦V~ ^(V )f j vB . ¯, VC&ËLOWç̂ «K>º ÿn pushbutton switch¢ 2 V ¢ B*'b‚ ‘HIGHç’‚ ò Ú "š flip-flop IC‚¦V~ ÂK^(V )º ‘HIGHç’& >Ú relay& ·ÿ‚ (‘ONç’). š B * buret tipö ÖB solenoid valve& ҚB(‘ON S. R. S. Fig. 2. Schematic Diagram of the Electronic Control Circuit VIN: voltage output from the photodiode, A: operational amplifier IC (741) VS: voltage output from the op-amp IC, B: voltage comparator IC (741), VR: the reference voltage, VC: voltage output from the comparator IC, C: flip-flop IC (4013) voltage input from the push-button switch, VOUT: voltage output from flip-flop IC, D: relay.. R. R. S. R. C. C. SW. SW. C. 6f ¦f ï 2¢Ê &(J, Úã: £ 2.5 cm, ^š: £ 5 cm)~ ‚ã ƒ Ú¦ö 㫎b‚Ž LED ‚¦V O ÂB j Îv &~ Ú¦‚ žê~& . 7 ¦ÂV(K) ‚º &7 '~ ö 6w~º silicon photodiode (‚&6w2Ë: 550 nm)¢ ÒÏ~& . Photodiodeº 2 ¢Ê &(J)~ ž ã Ú¦ * ¦ªö ¦O~&b–, 67šf ';‡š Z jš (D)f î"êƒ ò. Ú Ý¦ªö *~‚ LED7öb‚¦V OÂB š 6 7šö ç7 ê~æ pêƒ ~& . jš (D)f 2 ¢Ê &(J)~ „¦ª ¢¦º jºö V¢ ç¶;~ ¦f ï ”B(C)¢ 2ò ž¦‚¦V~ j j*® N † > ®êƒ ~& . 7' >¶ÿ';Ë~~ ·ÿO. Fig. 2º solenoid valve~ ‘ON/OFF’ ·ÿj *š Òς *¶–.²‚~ êÛêš . 𠲂öBº ÒÏB Î ÷'²‚(integrated circuit, IC)~ ·ÿj *šBº 12V DC power supply ¢ ÒÏ~& . *¶–.²‚ö ~š solenoid valve~ ‘ON/OFF’ ·ÿj –.~ buretö Z χj '; ‡ö '&~–¾ N~º ·ë, ¯ 7' >¶ÿ'; Ë~~ ·ÿOf r" ?š ';ªC~ F;ö V ¢ ¢ê . Case I. ';š «ö6ö ê~šB 7¦ÂVö «Ò >º >Ò7~ ^V& /Ï~² 6²~º ';~ ãÖ. 7¦ÂVö ê‚ >Ò7ö ~š B~º ^(*{, V )º ^ÃÏ ÷'²‚(op-amp IC)(A, 741)öB ÃB . Op-amp ICö ~š Ã>Ú ÂK>º ^ (V )º *{jvÏ ÷'²‚(voltage comparator IC)(B, 741)ö «K>šB ª~‚ ;šê V&*{(V )~ ’V f jvB .  öš V&*{(V )f .j';j Û š ª~‚ J;~–, «ö6ö ê~V *öº V&* IN. S. R. R. 2001, Vol. 45, No. 6. OUT. SW. OUT. S. R. S. R. C. SW. OUT. S. R. S. S. R. R. R. S. R. C. SW. SW. OUT.

(4) ¿ ú. 516. ç’) χš '&>V ·‚ . ';š ê¯>šB ‘V >V ’š Wã~º æ6ö ê~š, voltage comparator IC~ ÂK^(V )º ‘HIGHç’‚ æ~ flip-flop IC‚ «KB . š r push-button switch‚¦V fFlip-flop ICö «K>º ^(V )º ';š ·B ê  ‘LOW ç’‚ ~ö>Ú ®º çšæ‚ flip-flop IC‚¦V~ ÂK^(V )º ‘LOWç’& B . V¢B relay~ ·ÿf nº(‘OFFç’) solenoid valveê ®šB (‘OFFç’) buretb‚¦V~ χ~ '&º ;æB . S. R. C. SW. OUT. Ö" 5 V Ö-"V';. HClχö NaOHχj '&~º Ö"V';(HCl+NaOHNaCl+H O)j ÒÏ~& . š ';öBº Ûvç æ£b‚ ÒÏ~º ¾¦*î.ž (phenolphthalein)š &šê ';‡š ZïöB ªsï b‚ æ~šB ';‡ *Ú& £ 30.* ªsïj F æ~º æ6š «ö6b‚ Aj ê . š‚ Ö-" V';öBº .ƒï >ê LED¢ 7öb‚ ÒÏ~  ';š «ö6ö ê~š 7¦ÂVö «Ò>º > Ò7~ ^V& /Ï~² 6²~êƒ Fê~& . Fig. 3~ Aº HCl χj NaOH‚ ';~º ÿn 7¦ÂV ~ ÂK¶¢ VƒV(recorder)ö ç7 ւ ê 7¦ ÂV‚¦V~ ^(V )& æ~º ÎÛj G;‚ Ö"¢ & . šö Všš HClχö NaOHχj '& ~º Ö-"V';~ ãÖ Þ/‚ v &æ ';F;. 7 case Iö š‚ . Table 1f 0.0100 M HCl ‚&χ 50.0 mLö æ£(0.050 g~ phenolphthaleinj 50 mL ~ ethanolö Ÿž ê b‚ ’C~ 100 mL‚ ò  0.5 mLO ÒÏ)j &‚ ê ~0.10 M NaOHχj '& ~ áf ';Ö"¢ >ÿ';" jv~ & . š ‚ö ~~š "';(main titration)" :û'; Îv öB 7' >¶ÿ';Ë~& >ÿ';ö jš . z ¸f Ò*Wj 2j r > ® . šº >ÿ'; öBº ’¶~ Gnòb‚ ';‡ *Ú& ªsïb 2. S. Fig. 3. Titration Curves Obtained by Direct Connection of the Output Signal of the Photodiode to a Recorder (sensitivity: 10 mV, chart speed: 20 mm/hr). A: acid-base (0.010 M H+ vs. 0.10 M OH− using phenolphthalein) titration, B: precipitaion (Mohr Method: 0.010 M Cl− vs. 0.10 M Ag+) titration, and C: EDTA (0.010 M Mg2+ vs. 0.10 M EDTA using EBT) titration.. ‚ æ‚ ê  ïš £ 30.* æ³>º æ6j 6ê~ V& £æ pV r^š . 7' >¶ÿ';Ë~¢ Ò Ï~ áf «ö6š >ÿ';ö ~‚ 8 ö jš. ² – 8j šº ©f r" ?f šF r^š . 7 ' >¶ÿ';Ë~~ ãÖöº ';ªCö „B « ö6ö š~º æ6öB NaOHχ~ '&& n > ®êƒ V ~ 8j J;š "º .j';";j j º‚ ‚ . š‚ .j';öB ';‡~ ïš ² ê‚ ªsïj †º æ6ö š~º V 8(Fig. 3~ A ~ FöB çÒ';b‚ ‚‚ ¦ª~ j¾ãö š ~º 8)j F~& . V¢B B';öB ’‚ « ö6š >ÿ';ö jš ² ’² ¾æÂ ©š .  ¾ š‚ ';JNº 7?f V 8b‚ ;B ç öB >¯‚ :û';ö ~š B–F > ®rj r > ® . šf ?š :û';j ۂ ;·ëöê ®’~  >ÿ';~ ï6š >¶ÿ';Ë~ö ~‚ ï 6ö jš ² ·² áÚrrj " > ® . šf ? R. R. R. Table 1. The comparison of the end points obtained from the triplicate titrations of 50.0 mL of 0.0100 M HCl with ~0.10 M NaOH by the manual titration and the optical semi-automatic titrator End point. Manual titration Optical semi-automatic titrator. Main titration. Blank titration. 4.96±0.02 mL 5.10±0.01 mL. 0.02±0.01 mL 0.10±0.01 mL Journal of the Korean Chemical Society.

(5) >Òª7ªCV»j jς 7' >¶ÿ';Ë~~ B·" wÏ. f Nšº ¾¦*î.žj æ£b‚ ÒÏ~º ‘HCl vs. NaOH ';’öB «ö6j djÚº ";ö Vž~ º ©b‚ '† > ® . ¢>'b‚ š‚ Ö(HCl)"V(NaOH)';öB~ «ö6f ';‡ *Ú~ ïš w’ïj ¾æÚ  ïš £ 30.* æ³>º b ‚ ;~ ® . šº >ÿ';~ ãÖ ';~ >¯ ¶& ';‡~ w’ïš æ³>º *j ;{® 30. ‚ ;‚ ê ö V¢ «ö6j Ö;~& ~z¢ê  *š ² ^–¾ ~j &ËWê ® º ©j ~‚ . ¾ >¶ÿ';Ë~~ ãÖ š‚ JN ¢ ì†V *š ï6j Ϫ® æÂ 6(';‡~ ïš ² ê‚ w’ïj ¾æÚº 6)öB ';š 7æ>êƒ ~& . V¢B š þ~ ãÖ :û';~ Ö"ö ~š áÚê >ÿ';~ ï6š >¶ÿ'; Ë~ö ~š áÚê ï6ö jš ² ·f 8j  "º ©b‚ Îæ–, >¶ÿ';Ë~ö ~‚ ï 6j  ;{‚ 8b‚ Aj ¢ > ® ~Æ . Öz-~ö';. ÖW FeCl χö KMnO χj & ~ Fe šNš Fe šNb‚ Öz>šB MnO šN f Mn šNb‚ ~ö>º >wj Òς ';j ÒÏ ~& . š ãÖ KMnO º ¶Ú æ£(self indicator) b‚ ¯ÿ~–, «ö6ö ê~V *öº ';‡š Z ïj ¾æÚæò «ö6ö ê~šB ª~ KMnO ö ~š ';‡š ªsïj †² B . V¢B š ãÖ  case I" ?f F;~ ';šæ‚ Ö-"V';ö Bf ?f Ob‚ 7' >¶ÿ';Ë~¢ ÒÏ~ & . VBº 0.010 M;ê~ Fe šN~ χ 50.0 mL ö ~1 M H SO χ 10 mL¢ &~ ÖWb‚ ò ê ~0.10 M KMnO χj '&~º Öz-~ö';j >¯~& . ';Ö"ö ~~š Fe šN~ >χš ¾ æÚº ®n;W(Fe šNf >χ ³~ Ϛֲö ~š Fe šNb‚ ÖzB )ö ~š >ÿ'; 5 7 ' >¶ÿ';Ë~ö ~‚ ';Ö"~ Ò*Wš Îv Ô~ . ¾ 7' >¶ÿ';Ë~¢ Òς Bê ';öBº «ö6~ 6êš W'b‚ šÚî > ®rš C&r . V¢B Ëê n;‚ Öz-~ö3j Ò Ï‚ ';ªCj Û~ 7' >¶ÿ';Ë~~ W Ëj rjj¢ ~Ææò, Öz-~ö';  Ö-" V';" îR&æ‚ ';‡~ ïòš æ~æ‚ Ö-" V';öB  W˚ ¦ÃB 7' >¶ÿ';Ë~ º Öz-~ö';öBê B&‚ ·ÿ† > ®º ©b‚ Aj ê ê ^B& ìº ©b‚ 6B . 2. 2+. 4. −. 3+. 4. 2+. 4. 4. 2+. 2. 4. 4. 2+. 2+. 3+. 2001, Vol. 45, No. 6. 517. Ž*';. VBº NaClχö AgNO χj '& ~º(Cl +Ag AgCl) Mohr» ';j ÒÏ~& . š ';öB ';‡~ ‡Wj £‚ "VWb‚ –.~V *š 50 mL~ ';‡ö 1 g~ NaHCO ¢ Ÿ"î . æ£b‚º 5 g~ K CrO ¢ bö Ÿ 100 mL>Ï ‡j ò ê 0.5 mLO ÒÏ~& . Mohr» ';öB º ';š · * R«‚ ‚ ž¦ ï(æ£b‚ Ò Ï‚ CrO χ~ ï)j ¾æÚ~ ';‡š ';š ê ¯Nö V¢ ;W>º AgClŽ*«¶ š χ *>ö žö –ï ’ª~ ;¢ š–, ï6j æ¾ ª b‚ &šê Ag šN 𠿣~ Wªž CrO šN" >w~(2Ag +CrO Ag CrO ) ¯f ï Ag CrO Ž *j ;W~šB ªsï Ž*«¶’ªš ;W>º æ 6j «ö6b‚ Aj ž . Fig. 3~ Bº š‚ ' ;ö 7' >¶ÿ';Ë~¢ ÒÏ~ ';š ê¯ >º ÿn 7¦ÂVöB B‚ ^(V )& æz~º ÎÛj G;‚ Ö"¢ & . Ž*';~ ãÖ „~ Ö-"V';"º Ò ';š ê¯>šB 7¦ÂVö ê~º >Ò7~ ^V& 6N /ς Ã&¢ š. & ï6j 澚B  /Ï® 6²Žj ¾æÚ ® . šº r" ?f ';‡~ æzö Vž‚ . ' ;š ·>V * .ƒï 7öö ~š OÂB f  ‚ ž¦ï ';‡b‚¦V >Ò>Ú 7¦ÂVö ê ~–, V¢B >Ò7~ ^Vº · . ¾ ';ö ê ¯>šB ';‡öº –ï~ AgClŽ*«¶ š ;W >V ·~ š «¶ ö ~‚ >Ò7~ ^Vº à &~ AgCl«¶ ~ >& Ã&~šB >Ò7~ ^V ê /Ï® Ã&‚ . ¾ ï6j æ¾ ¯f ï~ Ag CrO «¶ š ;W>š Ž*«¶’ª~ ïš ªs ïb‚ æ~ >Ò>º .ƒï ~ ^Vº  /Ï ~² 6²~V ·‚ . š‚ Ž*';öB case I " ?f Ob‚ 7' &¶ÿ ';Ë~¢ ·ÿÊ V *šBº 7¦ÂV‚¦V~ ^(V )& V&*{ö jš ·jæº æ6(V <V )ö š~º V j F~ ¢ ‚ . V¢B .j';j ۚ >Ò7~ ^V& / Ï® 6²~ V <V š Wã~º V 8(Fig. 3~ Bö B çÒ';b‚ ‚‚ ¦ª 7 ‚ ö š~º 8) j J;~& . Table 2öBº Mohr» ';ö &‚ > ÿ';" 7' >¶ÿ';Ë~ö ~‚ Ö" j  & . š ';öBê 7' >¶ÿ';Ë~~ ãÖ  ¸f Ò*Wj ªj r > ® . EDTA';. š ';öBº NH /NH jÏχj Ò 3. −. +. 3. 2. 4. 2−. 4. +. 2−. 4. +. 2−. 4. 2. 4. 2. S. 2. 4. S. S. S. R. R. R. R. +. 4. 3. 4.

(6) ¿ ú. 518. Table 2. The comparison of the end points obtained from the experiments of the precipitation and the EDTA End point*. Manual titration Optical semi-automatic titrator. Precipitation. EDTA. 5.38±0.01 mL 5.40±0.01 mL. 5.71±0.01 mL 5.72±0.01 mL. *Results from the triplicate titrations. Ï~ pH& 10;ê‚ –.B Mg χö EDTAχ j '&~&b–(Mg +EDTAMgEDTA ), æ£b ‚º eriochrome black T(EBT)χj ÒÏ~& . « ö6f .³šN" æ£Òš~ Ob(VBº Mg EBT)š ¾æÚº ‚ ¯fïš æ£ò~ ‚ žž ïb‚ æ~º æ6š . Fig. 3~ Cº š‚ EDTA ';öB .ƒï LED¢ 7öb‚ ÒÏ~º ãÖ 7¦ ÂV‚¦V B~º ^& ';š ꯎö V¢ æ z~º ÎÛj & . šö Všš EDTA';~ ã Ö Ö-"V';š¾ Ž*';"º Ò ';~ .Vö jš «ö6šê~ æ6öB 7¦ÂV~ ^& z. öj " > ® . šº EDTA';f „öB Þ/‚ case IIf ?f F;~ ';ªj ~‚ . V¢B .ƒ ï LED¢ 7öb‚ ÒÏ~º 7' > ¶ÿ';Ë~ º case IIf ?f Ob‚ ·ÿB¢ ‚ . ¾ 7öj ¯fï LED‚ :ÞÚ & š 7¦ÂV~ ^ (V )& Fig. 3~ Cfº ;>&~ ÎÛb‚ æ~² F © šæ‚ case I" ?f Ob‚ 7' >¶ÿ';Ë~ ¢ ·ÿÒ >& ®² B . š þöBº case II~ Ob‚ 7' >¶ÿ';Ë~¢ ·ÿVb–,  šFº š ';Ë~öB Òς 7¦ÂV& .ƒï ' ~ ö &Ë "6~² 6w~V r^šî . Fig. 3 ~ C¢ š EDTA';~ ãÖöº „~ ž F;~ '; "º Ò «ö6öB~ ^æz& j" · BB® ¾æÎj r > ® .  šFº EBT¢ æ£ b‚ ÒÏ~º ¢>'ž EDTA';öB ';‡f ‚ ¯fï(;{~²º ‚ ¯f ê" ï)öB ¢ïj –‚ ê ‚ žžïb‚ æ~V r^š . V¢B EDTA';öBº ';j >¯~º ÿn ž¦‚¦V~ j ‚&‚ Nš 2b‚Ž 7¦ÂVö ê~º . 7 >Ò7ö ~‚ Vê¢ Ã&B* jº& ® . V¢B EDTA';öBº ž¦  NÏ ”B¢ J~ ‚ ê ';j >¯~& . Table 2öBº 0.0100 M Mg χ 50.0 mLö 0.10 M EDTAχj Òς >ÿ ';" 7' >¶ÿ';Ë~ö ~‚ ';Ö"¢ j 2+. 2+. 2+. 2+. S. 2+. v~ & . š ‚ö ~~š 7' >¶ÿ';Ë ~¢ ÒÏ~ áf Ö" ~ Ò*Wf >ÿ';ö ~ ‚ Ö"ö jš z ¸rj r > ® . ¾ EDTA' ;Ö"~ Ò*Wf “ç ¸²ò á򾾼 p~ .  šFº Fig. 3~ CöB " > ®î~ :f ?š EDTA ';öBº 7¦ÂV~ ^(V )æz& Ò ’æ pV r^š . ¯, „öB BF‚ :f ?š š þöB B ·‚ 7' >¶ÿ';Ë~~ ãÖ .j þj Û~  '.‚ V&*{(V )j J;š & ê, ';.V~ ç ž ‘V <V ’š «ö6ö ê~šB ‘V >V ’‚ :: > ®êƒ š "Ú¢ ‚ . ¾ EDTA';~ ãÖ öº ž F;~ '; ö jš V ~ 8j J;† > ®º 'š j" § (Fig. 3öB Af Bfº Ò C ~ ãÖöº V ~ J;š &˂ 'j ‚~æ á † ;êª). 6‚, š ’& >¯B þ ~ ãÖ. þ ‚ F«>º *{~ ®n;Wš &® ¶ÿ* {–.Ë~(automatic voltage control, AVR)¢ ÒÏ~  ®b¾ AVR‚¦V ÂKB *{   æz š. ² ’ . V¢B š J;‚ V ~ 8š ² æ~º *çš B~&b–,  Ö" 7' >¶ÿ';Ë~ ¢ Òς ';Ö" f Ôf Ò*Wj šVê ~&. . æÚº V ~ 8~ æz š V J;&Ë'ö jš z æº ãÖöº ';š «ö6ö ê~V * ö ';Ë~~ ·ÿš nº–¾ «ö6j æÂ æ6ö Bê ';Ë~~ ·ÿš nºæ pº ãÖ ê B~ & . ¾ Nê  n;B *ö~ ÒÏb‚ š ‚ ^B6j šÖ† > ®j ©b‚ 6B . S. R. S. R. S. R. R. R. R. R. R. Ö † >Òª7ªCV»j jς 7' >¶ÿ';Ë~ ¢ B·~ Ö-"V';, Öz-~ö';, Ž*';,  Ò Oz';" ?f J &æ &‚' F;~ ';ªC öB Ë~~ ÎÏWj rj~ . 7' >¶ÿ'; Ë~º ';~ ";öB ';‡~ ïš æ~º Ö-"V Journal of the Korean Chemical Society.

(7) >Òª7ªCV»j jς 7' >¶ÿ';Ë~~ B·" wÏ. ';" Öz-~ö';~ «ö6 ö jî¢ ';š ê¯ >º ÿn ';‡öB Ú«¶ š ;W>º Ž*' ;~ «ö6  W'b‚ 6ê† > ®î . . n;‚ *{j B† > ®º *öË~¢ Òς š EDTA';" ?š ';‡~ ïæz& ’æ pf ãÖ öê 7' >¶ÿ';Ë~¢ Î"'b‚ Òφ > ®º &ËWê "î . 6‚, Î F;~ ';ª CöB 7' >¶ÿ';Ë~¢ Òς ';Ö"~ Ò *Wf >ÿªCö j𠏲 áÚr . V¢B *Ò~ 7' >¶ÿ';Ë~º „b‚ j*‚ ;¢ <¾ 7' ¶ÿ ';Ë~~ B·b‚ šÚî > ®º &Ë Wj "î .. 2001, Vol. 45, No. 6. 519. žÏ^ò 1. Strobel, Howard. A.; Heineman, William R. Chemical Instrumentation: A systematic Approach, the 3rd Ed.; John Wiley & Sons Inc.: Canada, 1989; pp 1037-1040, 1154-1162, 1169-11791. 2. Rocha, F. R. P.; Boaventura, F. A. J. Chem. Educ. 2000, 77, 258. 3. Fulton, R.; Ross, M.; Schroeder, K. J. Chem. Educ. 1986, 63, 721. 4. Olsen, E. D.; Foreback, C. J. Chem. Educ. 1972, 49, 206. 5. ; 2000, 44(4), 316. 6. ; ; 2001, 45(1), 45..  î ;ÿß &‚z²æ  î šã> ;^’ &‚z²æ.

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