№1|2013
ENVIRONMENTAL PROTECTION
bbk 000000
UDC 628.35:504.064
Bioelectronic system of monitoring the toxicological safety of biologically treated wastewater
Summary
A comprehensive approach to monitoring the quality of effluents discharged into the Neva Bay after biological treatment at the South-West Wastewater Treatment Facilities «Vodootvedenie of Saint-Petersburg» of Saint-Petersburg Vodokanal MUE is suggested. The results of the case study carried out at the South-West Wastewater Treatment Facilities demonstrate the possibility of establishing bioelectronic systems that provide for maximum objective on-line monitoring the quality of biologically treated wastewater as an aquatic organism habitat.
Key words
biologically treated wastewater , bioindicator method , test-organism , biota , crawfish , cardiac rate , fiber-optic photoplethysmograph
{closed}
SPISOK LITERATURY- Kholodkevich S. V. Bioelektronnyi monitoring urovnia toksichnosti prirodnykh i stochnykh vod v real'nom vremeni // Ekologicheskaia khimiia. 2007. № 16 (4).
- Zaitseva O. V., Kovalev V. V., Shuvalova I. E. Sovremennoe biotestirovanie vod, trebovaniia k test-organizmam i test-funktsiiam s pozitsii sravnitel'noi fiziologii i fiziologii adaptatsionnykh protsessov // Zhurnal evoliutsionnoi biokhimii i fiziologii. 1994. T. 30. № 4.
- Kholodkevich S. V., Fedotov V. P., Shumilova T. E. Rol' rechnogo raka v presnovodnoi ekosisteme / Metodologicheskie osnovy ekologicheskoi bezopasnosti. – SPb: VVM, 2008.
- Tsukerzis Ia. M. Rechnye raki. – Vil'nius: Mokslas, 1989.
- Lagutkina L. Iu., Ponomarev S. V. Novyi ob"ekt teplovodnoi akvakul'tury – avstraliiskii krasnokleshnevoi rak (Cherax Quadricarinatus) // Vestnik AGTU. 2008. № 6 (47).
- Anderson R. V., Vinikour W. S., Brower J. E. The distribution of Cd, Cu, Pb and Zn in the biota of two freshwater sites with different trace metal inputs // Holarctic Ecology. 1978. № 1.
- Nakayama S., Ikenaka Y., Muzandu K., et al. Heavy metal accumulation in lake sediments, fish (Oreochromis Niloticus and Serranochromis Thumbergi), and crayfish (Cherax Quadricarinatus) in Lake Itezhi-tezhi and Lake Kariba, Zambia // Arch. Environ. Contam. Toxicol. 2010. № 59 (2).
- Khan S., Nugegoda D. Sensitivity of juvenile freshwater crayfish Cherax Destructor (Decapoda: Parastacidae) to trace metals // Ecotoxicol. Environ. Saf. 2007. № 68 (3).
- Pat. 2308720 C1, RF. MPK G 01 N 33/18 (2006.01); G 01 N 21/17 (2006.01). Sposob biologicheskogo monitoringa okruzhaiushchei sredy (varianty) i sistema dlia ego osushchestvleniia / Kholodkevich S. V., Ivanov A. V., Kornienko E. L., Kurakin A. S. // Izobreteniia. Poleznye modeli. 2007. № 29.
- Makhnev P. P., Bekrenev A. V., Baklanov V. S. i dr. Sistema obespecheniia bezopasnosti vodosnabzheniia na vodoprovodnykh stantsiiakh Sankt-Peterburga // Vodosnabzhenie i san. tekhnika. 2006. № 9, ch. 1.
- Karmazinov F. V., Kinebas A. K., Bekrenev A. V. i dr. Opyt ekspluatatsii sistem biomonitoringa kachestva vody v Sankt-Peterburge // Vodosnabzhenie i san. tekhnika. 2007. № 7, ch. 2.
- Mel'nik E. A., Nefedova E. D., Gvozdev V. A. i dr. Povyshenie obnaruzhitel'noi sposobnosti i nadezhnosti bioelektronnykh sistem stantsii proizvodstvennogo biologicheskogo monitoringa kachestva vody GUP «Vodokanal Sankt-Peterburga» putem ikh modernizatsii // Vodosnabzhenie i san. tekhnika. 2012. № 1.
- Eversole A. G., Seller B. C. Comparison of relative crayfish toxicity values // Freshwater Crayfish. 1997. V. 11.
- Kholodkevich S. V., Ivanov A. V., Kornienko E. L. i dr. Bioelektronnyi monitoring poverkhnostnykh vod // Mir izmerenii. 2011. № 10.