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Future vision of advanced oxidation process and its immediate efficacy-a deep, insightful comprehension and a far-reaching review

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Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Environmental engineering is moving briskly and steadily from one challenging phase to another. The world of challenges are immense as well as far-reaching. Advanced oxidation processes today stands in the midst of immense scientific vision, scientific understanding and invincible scientific challenges. The effectivity of degradation quality of ozone and hydroxyl radicals is outstanding and path-breaking. Environmental concerns and subsequent environmental regulations are the burning issues of our present day civilization. Novel separation processes as well advanced oxidation techniques are the plausible solutions for zero-discharge norms and effective environmental engineering paradigm. The question of effective environmental engineering techniques comes into the horizon of a scientist’s mind. Amongst the advanced oxidation techniques, ozonation or ozone-oxidation stands today in the new millennium as the most effective environmental engineering techniques. Wastewater treatment and provision of clean drinking water are unquestionably the primordial issues of present day mankind and the ever-alert civil society. The visionary challenges are moving from one avenue of environmental disaster to another. Environmental disaster – both manmade as well as natural has plunged our civilization to unending catastrophe. These environmental calamities are harbingers of more immense and impending environmental disasters. The scientific paradigm and the scientific domain needs rethought and needs to be restructured. In the face of these immense environmental calamities, the thrust areas of novel separation processes and advanced oxidation needs immense retrospection. In such a critical juncture of history and time, this treatise effectively addresses the questions of zero-discharge norms with respect to new discoveries in the field of advanced oxidation processes particularly the field of ozonation.
Słowa kluczowe
Rocznik
Strony
136--145
Opis fizyczny
Bibliogr. 15 poz., tab., wz.
Twórcy
autor
  • Department of Chemical Engineering, University of Petroleum and Energy Studies, Post Office-Bidholi via Premnagar, Dehradun - 248007, Uttarakhand, India
Bibliografia
  • [1] Kepa U., Stanczyk-Mazanek E., Stepniak L., Desalination 223 (2008) 187-193
  • [2] Zhou H., Smith D. W., Journal of Environmental Engineering Science 1 (2002) 247-264.
  • [3] Al-Kdasi Idris. A., Saed K., Guan C. T., The International Journal 6(3) (2004) 222-230.
  • [4] Palit. S., International Journal of Chem Tech Research 4(3) (2012) 862-866.
  • [5] Gogate P. R., Pandit A. B., Advances in Environmental Research 8 (2004) 500-551.
  • [6] Chiron S., Fernandez-Alba A., Rodriguez A., Garcia-Calvo E., Water Research 34(2) (2000) 366-377.
  • [7] Kos L., Perkowski J., Fibres and Textiles in Eastern Europe. 11(4) (2003) 43.
  • [8] Suty H., De Traversay C., Water Science and Technology 49(4) (2004) 227-233.
  • [9] Stasinakis A. S., Global NEST Journal 10(3) (2008) 376-385.
  • [10] Joseph C. G., Puma G. L., Bono A., Krishnaiah D., Ultrasonics Sonochemistry 16 (2009) 583-589.
  • [11] Huber M. M., Canonica S., Park G. Y., Gunten U. V., Environmental Science and Technology 37 (2003) 1016-1024.
  • [12] Esplugas S., Bila D. M., Krause L. G. T., Dezotti M., Journal of Hazardous Materials149 (2007) 631-642.
  • [13] Jianging W. U., Tingwei W., Water Research 35 (2001) 1093-1099.
  • [14] Mehmet F. S., Hasan Z. S., Journal of Chemical Technology and Biotechnology 77 (2002) 842-850.
  • [15] Koch M., Yediler A., Lienert D., Insel G., Kettrup A., Chemosphere 46 (2002) 109-113.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c6c1fd4a-a1d0-4d7b-b803-0a9b919df188
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