Page 289 - “O‘ZBEKISTON – 2030 STRATEGIYASI: AMALGA OSHIRILAYOTGAN ISLOHOTLAR TAHLILI, MUAMMOLAR VA YECHIMLAR”
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Elektr ishlov berish davomiyligi t - 1,0 min
             780         10,5   7,20    78        0,156      7,80     785,0    484,3    344,3   285,8   258,5
             780         14,0   9,00    104       0,261      12,10    785,0    187,5    128,5   98,0    85,5
             780         17,5   10,50   130       0,380      13,60    795,0    58,5     51,0    48,0    46,0
             780         21,0   13,30   156       0,578      14,70    797,0    45,5     40,0    38,5    39,0
             780         28,0   19,40   208       1,125      18,45    794,5    29,0     28,5    21,0    14,3
             1210        14,0   10,10   104       0,293      11,60    1220,0   474,5    409,0   287,0   306,0
             1210        17,5   10,80   130       0,391      13,25    1221,0   496,5    278,0   165,0   132,0
             1210        21,0   12,90   156       0,561      14,90    1225,0   89,5     70,0    58,0    46,0
             1210        28,0   18,20   208       1,055      19,05    1231,0   56,5     50,0    38,0    29,5
                                             Elektr ishlov berish davomiyligi t - 2,0 min
             117         3,5   2,50     52        0,036      4,40     121,0    114,0    108,3   104,0   104,0
             117         5,3   3,50     78        0,076      7,45     126,9    74,5     64,8    52,5    38,6
             1           2     3        4         5          6        7        8        9       10      11
             117         7,0   4,60     104       0,133      10,75    130,8    56,0     46,5    37,8    33,0
             117         8,8   6,38     130       0,231      13,20    131,3    23,8     18,7    15,3    12,5
             117         10,5   7,35    156       0,320      14,65    127,6    16,4     13,2    9,5     9,0
                                             Elektr ishlov berish davomiyligi t - 2,0 min
             393         3,5   2,65     52        0,038      4,80     402,0    340,0    291,5   240,1   222,0
             393         5,3   4,10     78        0,090      7,50     405,0    210,5    150,4   140,3   123,5
             393         7,0   5,20     104       0,151      10,45    440,0    77,0     77,0    71,5    60,0
             393         8,8   6,42     130       0,233      13,20    418,0    57,6     43,8    39,4    23,1
             393         10,5   7,50    156       0,326      14,60    426,0    65,3     53,1    42,5    32,0
             393         14,0   10,70   208       0,620      19,50    436,0    20,3     17,0    12,3    11,0
             780         5,3   4,00     78        0,086      7,50     789,0    456,0    388,6   353,5   331,4
             780         7,0   4,60     14        0,133      10,70    792,0    235,0    185,5   123,0   99,5
             780         8,8   6,10     130       0,221      13,45    790,0    92,0     64,0    58,0    42,0
             780         10,5   7,50    156       0,326      14,45    788,0    61,0     48,6    43,5    35,5
             780         14,0   9,70    208       0,562      19,80    807,0    27,5     25,0    20,0    15,9
             1210        7,0   4,90     104       0,142      10,60    1217,0   570,0    440,0   400,0   386,5
             1210        8,8   6,30     130       0,228      13,25    1218,0   423,5    289,0   171,0   133,5
             1210        10,5   7,40    156       0,322      14,65    1220,0   105,5    81,0    63,5    46,5
             1210        14,0   9,10    208       0,528      20,15    1215,0   69,4     52,0    35,5    25,0

                  XULOSA
                  Yuqoridagi  barcha  tadqiqot  natijalariga  asoslanib  tayyorlangan  maqolani
            rejalashtirilgan  qismi  uchun  xulosa  qiladigan  bo‘lsak:  KMK  2.03.04-97  ga  muvofik
            loyqa  suvlarni  tozalashda  ikki  bosqichli  tindirish  va  so’nggi  etapda  filtrlash  tavsiya
            qilinadi. Tindirish jarayonida suvga reagent qo’shish orqali ishlov berish talab etiladi.
            Bu texnologik tasvirning ko’pchilik afzalliklariga qaramasdan shu narsani ta’kidlash
            joizki  mazkur  tizimda  reagent  xo’jaligi  qurilishi  va  uning  ishini  tashkil  qilish  kichik
            tozalash  stansiyalari  ishini  tashkil  qilishda  ancha  nokulaylik  tug’diradi.  Shuning
            uchun xam mazkur inshootlarda suvni elektrokoagulyasiya usuli yordamida tozalash
            maqsadga muvofikdir.
                  Ilmiy texnik adabiyotlar va ishlanmalar taxlili shuni ko’rsatadiki, tabiiy suvlarni
            tozalashda  elektrokoagulyasiya  usulidan  foydalanish  ko’lami  yildan-yilga  oshib
            bormoqda va boshqa usullarga nisbatan ancha yuqori samara beradi. Bu usulning
            kimyoviy  koagulyasiyaga  nisbatan  afzalligi:  reagent  xo’jaligining  yo’qligi,  qurilma
            ishini tashkil qilishning osonligi xamda elektrokimyoviy jarayonni avtomatlashtirish
            mumkinligidadir. Undan tashqari mazkur usulda tozalanayotgan suvdagi zararli va
            zaxarli moddalar oksidlanadi, suvning qattiqligi pasayadi va zararsizlantiriladi.
                  Elektrokoagulyasiya  nazariyasining  qisqacha  taxlili  shuni  ko’rsatadiki  bu  usul
            suvlarni tozalashda kimyoviy usulga nisbatan katta afzalliklarga ega:
                  -reagent xujaligiga xojat qolmaydi;                                                           286
                  -tozalash jarayonida suvning mineralizasiyasi oshmaydi;


                                                                                                          IV SHO‘BA:

                                                                Atrof-muhitni muhofaza qilish va ekologik barqaror taraqqiyotni ta’minlash

                                                                                         https://www.asr-conference.com
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