BARQAROR SHAHAR RIVOJLANISHIDA SANOAT OQOVA SUVLARINI BIOLOGIK TOZALASH TEXNOLOGIYALARINING ROLI
DOI:
https://doi.org/10.5281/zenodo.20572959Ключевые слова:
oqova suvlarni tozalash, membrana bioreaksiya texnologiyasi, tahlil, aks ettirishАннотация
Ushbu tadqiqotning maqsadi sanoat chiqindi suvlarini biologik tozalash texnologiyalarini
chuqur o‘rganish va sanoat chiqindi suvlarini tozalash samaradorligini oshirish, xarajatlarni kamaytirish hamda
atrof-muhitga salbiy ta’sirini minimallashtirish maqsadida ularni qo‘llash va rivojlantirishni tahlil qilishdan iborat.
Xususan, u quyidagilarni o‘z ichiga oladi: sanoat chiqindi suvlarini tozalashning hozirgi kunda keng tarqalgan
biologik tozalash texnologiyalarini tizimli ravishda umumlashtirish va taqqoslash, biologik tozalash jarayonini
tushunish hamda nazorat qilishni yaxshilash uchun ularning afzalliklari va kamchiliklarini, qo‘llanilish doirasi va
samaradorligini tahlil qilish. Tozalash samaradorligini oshirish, energiya sarfini kamaytirish, anaerob tozalashni
takomillashtirish, membrana ifloslanishini nazorat qilish va biologik parchalanishi qiyin bo‘lgan moddalarni
parchalash uchun qo‘shimcha tadqiqotlar hamda innovatsiyalar zarur
Библиографические ссылки
1 Zhang Q., Treatment process of environmentally friendly wastewater in petroleum and chemical
industries. Chemical Management, 2020, 36: 149-150.
2 Yin Y., Deng X., Liu R., et al., Progress of petrochemical wastewater treatment technology. Environmental
Pollution and Prevention, 2006, 5: 356-360.
3 Wei Z., Xu X., Ning P., Research on the treatment of wastewater by air flotation and its progress.
Journal of Safety and Environment, 2001, 4: 14-18.
4 Hou S., Xuan X., Jia J., et al., Research and application status of oily wastewater treatment technology.
Shanghai Chemical Industry, 2003, 9: 11-14.
5 Lv H., Liu D., Review of industrial wastewater treatment technologies. Petrochemical Environmental
Protection, 2006, 4: 15-19.
6 Wu Y., An S., Current status and prospect of phosphorus removal from wastewater. Journal of Tianjin
Polytechnic University, 2001, 1: 74-78.
7 Li H., New technology of industrial wastewater treatment in the United States. Water Supply and
Drainage, 1998, 8: 31-32.
8 Meng S., Qiu L., Chen J., et al., Progress of phosphorus removal from wastewater by chemical
precipitation. China Agronomy Bulletin, 2012, 28(35): 264-268.
9 Guo Y., Fang Z., Hu J., et al., Progress of chemical precipitation for heavy metal wastewater treatment.
Industrial Water Treatment, 2011, 31(12): 9-13.
10 Meng L., Analysis of chemical industry wastewater treatment process. Yunnan Chemical Industry,
2018, 45(12): 36-37.
11 Sun X., Feng Y., Cai W., et al., Advanced oxidation of difficult-to-degrade organic matter in wastewater.
Chemical Environmental Protection, 2001, 5: 264-269.
12 Su T., Wang Z., Zhou K., et al., Advanced treatment of secondary effluent organic matters (EfOM)
from an industrial park wastewater treatment plant by Fenton oxidation combining with biological aerated filter.
Science of the Total Environment, 2021, 784.
13 Zhu S., Research progress of advanced oxidation technology in water treatment. Resource Conservation
and Environmental Protection, 2023, 1: 67-70.
14 Fei X., Wang Q., Zhao W., et al., Current development trend of activated sludge treatment of industrial
wastewater. Marine Engineering, 2010, 39(06): 68-70.
Загрузки
Опубликован
Как цитировать
Выпуск
Раздел
Лицензия
Copyright (c) 2026 ЗЕЛЁНАЯ ЭКОНОМИКА И РАЗВИТИЕ

Это произведение доступно по лицензии Creative Commons «Attribution» («Атрибуция») 4.0 Всемирная.