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Niekonwencjonalne metody usuwania substancji biogennych w bioreaktorach sekwencyjnych

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Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
EN
Unconventional methods of removing biogenic substances in sequence bioreactors
Języki publikacji
PL
Abstrakty
Rocznik
Tom
Strony
23--27
Opis fizyczny
Bibliogr. 31 poz.
Twórcy
  • Prof. dr hab. inż. Anna M. Anielak - Politechnika Koszalińska, Katedra Technologii Wody i Ścieków, 75-453 Koszalin, ul. Śniadeckich 2, anna.anielak@tu.koszalin.pl
Bibliografia
  • [1] Buraczewski G.: Biotechnologia osadu czynnego. Wydawnictwo Naukowe PWN. Warszawa (1994).
  • [2] Dymaczewski Z., Oleszkiewicz J.A., Sozański M.M. i in.: Poradnik eksploatora oczyszczalni ścieków. Wyd. 2, PZiTS. Poznań (1997).
  • [3] Surampalli Rao Y., Tyagi R.D., Scheible Karl O., and James A. Heidman: Nitrification, Denitryfication and Phosphorus Removal in Sequential Batch Reactors. Bioresour-ce Technology 61 (1997) pp. 151-157.
  • [4] Levipan H.A., Aspe E., Urrutia H.: „Molecular analysis of the community structure of nitrifying bacteria in a continuous-flow bioreactor". Environmental Technology, Vol. 25, (2004), pp. 261-272.
  • [5] Bortone G., Malaspina F., Stante L. Tilche A.: „Biological nitrogen and phosphorus removal in an anaerobic/anoxic sequencing batch reactor with separated biofilm nitrification". Wat. Sci. Tech. Vol. 30, No. 6, (1994) pp. 303-313.
  • [6] Lin C.K., Katayama Y., Hosomi M., Murakami A., Okada M.: „The characteristics of the bacterial community structure and population dynamics for phosphorus removal in SBR activated sludge processes". Water Research, Vol. 37, (2003), pp. 2944-2952.
  • [7] Lotter L.H., Murphy M.: „The identification of heterotrophic bacteria in an activated sludge plant, with particular reference to polyphosphate accululation". Water SA, Vol. 11, (1985), pp. 179-184.
  • [8] Gersberg R.M., Alien D.W.: „Phosphorus uptake by Klebsiella pneumoniae and Aci-netobacter calcoacetics", Water Sci. Tech-nol., Vol. 17, (1985), pp. 113-118.
  • [9] Kyu-Hong Ahn, Kyung-Guen Song, Eulsa-eng Cho, Jinwoo Cho, Hojoon Yun, Seock-heon Lee, Jaeyoung Kim: „Enhanced biological phosphorus and nitrogen removal using a sequencing anoxic/anaerobic membrane bioreactor (SAM) process. Desalination 157, (2003), pp. 345-352.
  • [10] HibiyaK.,Terada A.,TsunedaS., HirataA.: „Simultaneous nitrification and denitrifica-tion by controlling vertical and horizontal microenvironment in a membrane aerated biofilm reactor". J. Biotechnol., 100, (2003) pp. 23-32.
  • [11] Jian Ling, Shulin Chen: „Impact of organic carbon on nitrification performance of different biofilters". Aquacultural Engineering 33, (2005), pp. 150-162.
  • [12] Meltem Sarioglu: „Biological phosporus removal in a sequencing batch reactor by using pure cultures". Process Biochemistry 40, (2005), pp. 1599-1603.
  • [13] Kavanaugh RG: „Investigation of bacterial populations in a biological nutrient removal system". Department of Civil Engineering. Virginia Tech. Blacksburg. Virginia, USA. (1991).
  • [14] Cicek N., Franco J.P., Suidan M.T., Urbain V.: „Using a membrane bioreactor to reclaim wasterwater". J.AWWA, 90, (1998), pp. 105-113.
  • [15] Fan X.J., Urbain V., Qian Y. and Manem J.: „Nitrification and mass balance with a membrane bioreactor for municipal waster-water treatment". Water Sci. Technol., 42 (3-4), (2000), pp. 421-428.
  • [16] Kyu-Hong Ahn, Kyung-Guen Song, Eulsa-eng Cho, Jinwaoo Cho, Hojoon Yun, Seoc-kheon Lee, Jaeyoung Kim: „Enhanced biological phosphorus and nitrogen removal using a sequencing anoxic/anaerobic membrane bioreactor (SAM) process". Desalination 157, (2003), pp. 345-352.
  • [17] Belia E., Smith P.G.: „The bioaugmentation of sequencing batch reactor sludges for biological phosphorus removal" Wat. Sci. Tech. Vol. 35, No. 1, 19-26.
  • [18] Chuang S.H., Ouyang C.F., Yuang H.C., You S.J.: „Effects of SRT and on nutrient removal in a combined as-biofilm process". Wat. Sci. Tech. Vol. 36, No 12, (1977) pp. 19-27.
  • [19] Saktaywin W., Tsuno H., Nagare H., Soya-ma T., Weerapakkaroon J.: „Advanced sewage treatment process with excess sludge reduction and phosphorus recovery". Water Research 39, (2005), pp. 902-910.
  • [20] Baozhen Wang, Jun Li, Lin Wang, Meis-heng Nie, Ji Li:„Mechanism of phosphorus removal by SBR submerged biofilm system" Wat. Res. Vol. 32, No 9, (1998), pp. 2633-2638.
  • [21] Jun Li, Xin-Hui Xing, Bao-Zhen Wang: „Characteristics of phosporus removal from wastewater by biofilm sequencing batch reactor (SBR)". Biochemical Engineering Journal 16, (2003), pp. 279-285.
  • [22] Morgenroth E., Wilderer Peter A.: „Modeling of enhanced biological phosphorus removal in a sequencing batch biofilm reactor". Wat. Sci. Tech. Vol. 37, No 4-5, (1998), pp. 583-587.
  • [23] Khadhraoui M., Watanabe T., Kuroda M.: „The effect of the physical structure of a porus Ca-based sorebent on its phosphorus removal capacity". Water Research 36 (2002) 3711-3718.
  • [24] Anielak A.M., Piaskowski K.: „Modified zeolitem in the process of biological sewage purification in sequencing batch reactor" Rinok instalacij. No 3, 98 (2005), pp. 39-42.
  • [25] Anielak A.M.: „Ekonomiczne i ekologiczne aspekty technologii oczyszczania ścieków zeolitami w systemie SBR" EkoTechnika 3/33 (2004).
  • [26] Tasli R., Artan N., Orthon D.: „The influence of different substrates on enhanced biological phosphorus removal in a sequencing batch reactor". Wat. Sci. Tech. Vol. 35, No 1 (1997), pp. 75-80.
  • [27] Se Jin Park, Hyung Sool Lee, Tae II Yoon: „The evaluation of enhanced nitrification by immobilized biofilm on a clinoptilolite carrier" Bioresource Technology 82, (2002) pp. 183-189.
  • [28] Se Jin Park, Jang Wook Oh, Tai II Yoon: „The role of powdered zeolite and activated carbon carriers on nitrification in activated sludge with inhibitory materials" Process Biochemistry 39 (2003), pp. 211-219.
  • [29] Tasli R., Artan N., Orhon D.: „The influence of different substrates on enhanced biological phosphorus removal in a sequencing batch reactor". Wat. Sci Tech. Vol. 35, No 1, (1997) pp. 75-80.
  • [30] Yongqiang Liu, Dehua Liu, Qiong Su, Jingrui Liu, Dongming Xie: „Effects of phosphorus and nitrogen limitations on continuous production of glycerol in a multistage cascade bioreactor by Candida kru-sei". Biochemical Engineering Journal 15 (2003), pp. 101-106.
  • [31] Chi-Kang Lin, Yoko Katayama, Masaaki Hosomi, Akihiko Murakami, Mitsuaki Okada: „The relationship between isopre-noid quinone and phosphorus removal activity". Wat. Res. Vol. 34, No 14 (2000) pp. 3607-3613.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP1-0060-0098
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