GULLY MODELING FOR FOREST RECLAMATION PURPOSES
- Land Reclamation, Recultivation, and Land Protection
Purpose: statistical analysis of hydrochemical parameters of drainage and waste water (DWW) from a rice irrigation system located in the Bagaevsky district Rostov region.
Materials and methods. The object of the study was a rice irrigation system in the Bagaevsky district Rostov region. Theoretical studies are based on the Laplace theory of normal distribution and are carried out in Microsoft Excel.
Results and discussion. The following parameters that regularly exceed the maximum permissible concentrations for water bodies of fishery importance (MPCrh) in the studied collectors for the period 2019–2024: sulfates, calcium, magnesium, total iron, phosphate ions – were determined. The long-time average annual concentration of the indicators in the drainage and waste waters of the first and second collectors was: for sulfates – 1038.6 and 673.03, calcium – 203.41 and 185.55, magnesium –95.89 and 75.99, phosphate ions – 0.19 and 0.26, total iron – 0.17 and 0.2 mg/dm³, respectively. The dynamics of the “dry residue” indicator during the irrigation season in the two studied collectors for the period 2019–2024 is presented. The long-time average annual value of this indicator for the first collector was 1414.7 mg/dm³, for the second collector – 1816.04 mg/dm³.
Conclusions. It was found that in the first collector the most frequently occurring concentrations of iron and nitrite ions in the DWW are in the ranges not exceeding the MPCrx, the values of other indicators regularly exceed the maximum permissible concentrations. In the DWW of the second collector, a regular excess of the MPCrx was determined for the following indicators: sulfates, calcium, magnesium, phosphates, chlorides, total iron. DWW with a high content of nitrite ions and iron compounds have a toxic and mutagenic effect on living organisms of natural aquatic ecosystems. When reusing such water for irrigation or discharging it into a water body, it is necessary to correct the chemical composition of the DWW.
doi: 10.31774/2712-9357-2025-15-2-94-112
rice irrigation system, drainage and waste water, hydrochemical composition, pollution, water body, reuse
Drovovozova T. I., Milchenkova D. V. Statistical analysis of hydrochemical parameters of drainage and waste waters from a rice irrigation system. Land Reclamation and Hydraulic Engineering. 2025;15(2):94–112. (In Russ.). https://doi.org/10.31774/2712-9357-2025-15-2-94-112.
1. Dzhulai A.P., 1937. Risovye sevooboroty dlya Yuzhno-Kazakhstanskoy oblasti [Rice crop rotations for the South Kazakhstan region]. Sel'skoe khozyaystvo [Agriculture], no. 6, 36 p. (In Russian).
2. Aleksandrov N.N., 1905. Kul'tura risa [Rice Crop Culture]. Tashkent, 280 p. (In Russian).
3. Dzhulai A.P., Aleshin E.P., Velichko E.B., 1980. Kul'tura risa na Kubani [Rice Crop Culture in Kuban]. Krasnodar, Book Publ., 205 p. (In Russian).
4. Domrachev S.S., Nagalevsky E.Yu., 2018. Osobennosti razvitiya risoseyaniya v Krasnodarskom krae [Features of rice cultivation development in Krasnodar Territory]. Perspektivy razvitiya agropromyshlennogo kompleksa: otechestvennyy i zarubezhnyy opyt: sb. materialov II Mezhdunarodnoy nauch.-prakt. konferentsii [Prospects for the Development of the Agro-Industrial Complex: Domestic and Foreign Experience: Proceed. of the II International Scientific-Practical Conference]. Kemerovo, ZapSibNC, pp. 3-36, EDN: XVTVFB. (In Russian).
5. Malysheva N.N., 2015. Issues of grain quality of rice of Russian production. Dostizheniya i perspektivy razvitiya selektsii vozdelyvaniya risa v stranakh s umerennym klimatom: materialy mezhdunar. nauch. konferentii [Achievements and Prospects for the Development of Rice Cultivation Breeding in Countries with a Temperate Climate: Proceed. of the International Scientific Conference]. Krasnodar, IP Sinyaev Dmitry Nikolaevich Publ., pp. 209-213, EDN: VQVAID. (In Russian).
6. Malysheva N.N., Kuznetsov E.V., Khadzhidi A.E., 2020. Provokatsionnye polivy v risovom sevooborote kak faktor uluchsheniya ekologicheskikh kharakteristik pochvy i po-vysheniya urozhaya risa [Provocative irrigation in rice crop rotation as a factor of improving the environmental soil characteristics and increasing rice crop yield]. Ekologiya i vodnoe khozyaystvo [Ecology and Water Management], no. 2(05), pp. 13-24, DOI: 10.31774/2658-7890-2020-2-13-24, EDN: IQRDMB. (In Russian).
7. Malysheva N.N., Kizinek S.V., 2020. Ekonomicheskie aspekty proizvodstva risa na meliorativnykh sistemakh Krasnodarskogo kraya [Economic aspects of rice production Economic aspects of rice production on reclamation systems of Krasnodar Territory]. Nauchnyy zhurnal Rossiyskogo NII problem melioratsii [Scientific Journal of the Russian Scientific Research Institute of Land Improvement Problems], no. 1(37), pp. 200-216, URL: https://rosniipm-sm.ru/article?n=1041 [accessed 03.03.2025], DOI: 10.31774/2222-1816-2020-1-200-216, EDN: OINPUH. (In Russian).
8. Malysheva N.N., Kizinek S.V., Khadzhidi A.E., Kuznetsov E.V., 2023. Analiz i vektory razvitiya otrasli risovodstva [Analysis and development vectors of rice industry]. Melioratsiya i gidrotekhnika [Land Reclamation and Hydraulic Engineering], vol. 13, no. 4, pp. 1-25, URL: https://rosniipm-sm.ru/article?n=1395 [accessed 03.03.2025], https://doi.org/10.31774/2712-9357-2023-13-4-1-25, EDN: NYDIUK. (In Russian).
9. Kruzhilin I.P., Ganiev M.A., Kuznetsova N.V., Rodin K.A., 2018. Vodopotreblenie risa i udel'nye zatraty na formirovanie urozhaya zerna pri raznykh sposobakh poliva [Water consumption of rice and specific costs for the formation grain yield under different irrigation methods]. Izvestiya Nizhnevolzhskogo agrouniversitetskogo kompleksa: nauka i vysshee professional'noe obrazovanie [Proceed. of Lower Volga Agro-University Complex: Science and Higher Education], no. 1(49), pp. 108-117, DOI: 10.32786/2071-9485-2018-02-108-117, EDN: PPWRFZ. (In Russian).
10. Barsukova G.N., Goverdovskaya M.D., 2022. Analiz otechestvennogo i zarubezhnogo opyta razvitiya risovodstva [Analysis of domestic and foreign experience in rice development]. Mezhdunarodnyy zhurnal prikladnykh nauk i tekhnologiy «Integral» [International Journal of Applied Sciences and Technologies “Integral”], no. 4, pp. 1166-1177, DOI: 10.55186/02357801-2022-7-4-3, EDN: VYMMPJ. (In Russian).
11. Tulyakova Z.F., 1978. Ris na zasolennykh zemlyakh [Rice on Saline Lands]. Ed. 2nd, rev. and add. Moscow, Kolos Publ., 240 p. (In Russian).
12. Kostylev P.I., Parfenyuk A.A., Stepovoy V.I., 2004. Severnyy ris (genetika, selektsiya, tekhnologiya) [Northern Rice (Genetics, Breeding, Technology)]. Rostov n/D., Kniga Publ., 576 p., EDN: VDWSTV. (In Russian).
13. Shirokova Yu.I., Paluashova G.K., Kodirov D.T., Sadiev F.F., 2025. Strategiya povysheniya effektivnosti promyvki i sel'skokhozyaystvennogo ispol'zovaniya zasolennykh zemel' v usloviyakh defitsita vodnykh resursov [Strategy for increasing the efficiency of leaching and agricultural use of saline lands under conditions of water scarcity]. Puti povysheniya effektivnosti oroshaemogo zemledeliya, vol. 95, no. 1, pp. 282-298, URL: https://www.rosniipm-sm1.ru/article?n=342 [accessed 03.03.2025], EDN: TDAHTC. (In Russian).
14. Kruzhilin I.P., Ganiev M.A., Rodin K.A., Nevezhina A.B., Novikov A.A., 2024. Vliyanie agromeliorativnykh priemov na vodno-fizicheskie svoystva svetlo-kashtanovoy tyazhelosuglinistoy pochvy pri vozdelyvanii risa na fone dozhdevaniya v usloviyakh Nizhnego Povolzh'ya [The effect of agro-reclamation techniques on water-physical characteristics of light chestnut heavy loamy soil during rice cultivation with sprinkling under the conditions of the Lower Volga region]. Melioratsiya i gidrotekhnika, vol. 14, no. 1, pp. 155-166, URL: https://rosniipm-sm.ru/article?n=1430 [accessed 03.03.2025], DOI: 10.31774/2712-9357-2024-14-1-155-166, EDN: VLYHEN. (In Russian).
15. Babenko A.A., Babichev A.N., 2025. Vliyanie doz khimicheskikh meliorantov na stepen' zasoleniya pochvy i sostav pochvennogo pogloshchayushchego kompleksa [Impact of chemical ameliorant doses on the degree of salinity and soil absorption complex composition]. Puti povysheniya effektivnosti oroshaemogo zemledeliya, vol. 95, no. 1, pp. 265-281, URL: https://www.rosniipm-sm1.ru/article?n=341 [accessed 03.03.2025]. EDN: SOUFPI. (In Russian).
16. Kalugin V.E., 2005. Vliyanie meliorativnykh priemov na rassolenie pochv Ale-skoy orositel'noy sistemy [Impact of reclamation techniques on soil desalination of the Aleisk irrigation system]. Vestnik Altayskogo gosudarstvennogo agrarnogo universiteta [Bullet. of Altai State Agrarian University], no. 1(17), pp. 62-66. EDN: PDTDEF. (In Russian).
17. Ostrovsky N.V., Shishkin V.O., 2017. Tekhnologiya povtornogo ispol'zovaniya drenazhno-sbrosnogo stoka na vnutrikhozyaystvennom zvene risovykh sistem [The technology of reuse of drainage and waste waters of the intra-farm link of rice irrigation systems]. Izvestiya Nizhnevolzhskogo agrouniversitetskogo kompleksa: nauka i vysshee professional'noe obrazovanie [Proceed. of Lower Volga Agro-University Complex: Science and Higher Education], no. 3(47), pp. 255-233, EDN: ZGYYFZ. (In Russian).
18. Malysheva N.N., Kizinek S.V., Khadzhidi A.E., Kuznetsov E.V., 2022. Effektivnost' impul'snogo orosheniya risa v usloviyakh defitsita orositel'noy vody [Impulse irrigation efficiency of rice under conditions of irrigation water shortage]. Melioratsiya i gidrotekhnika, vol. 12, no. 1, pp. 18-33, URL: https://rosniipm-sm.ru/article?n=1258 [accessed 03.03.2025], DOI: 10.31774/2712-9357-2022-12-1-18-33, EDN: MPOAIG. (In Russian).
19. Goverdovskaya M.D., Barsukova G.N., 2021. Ekologicheskie problemy razvitiya risovodstva v Krasnodarskom krae [Environmental problems of rice development in the Krasnodar Territory]. Institutsional'nye trendy transformatsii sotsial'no-ekonomicheskoy sistemy v usloviyakh global'noy nestabil'nosti: materialy V mezhdunar. nauchno-prakticheskoy konferentsii [Institutional Trends in the Transformation of the Socio-Economic System in the Context of Global Instability: Proceed. of the V International Scientific And Practical Conference]. Krasnodar, Russian Energy Agency of the Ministry of Energy of Russia, Krasnodar Center for Scientific and Technical Information – branch of the REA of the Ministry of Energy of Russia, pp. 38-41, EDN: ELMSLE. (In Russian).
20. Shao D., Tan X., Liu H., Yang H., Xiao C., Yang F., 2013. Performance analysis of on-farm irrigation tanks on agricultural drainage water reuse and treatment. Resources, Conservation and Recycling, vol. 75, pp. 1-13, DOI: 10.1016/j.resconrec.2013.03.011.
21. Khadzhidi A.E., Novikov A.E., Bukhanif I., 2024. K voprosu povysheniya vodoobespechennosti Verkhne-Kubanskoy orositel'noy sistemy Krasnodarskogo kraya [On the issue of increasing the water availability of the Upper-Kuban irrigation system of the Krasnodar Territory]. Prirodoobustroystvo [Environmental Engineering], no. 1, pp. 6-11, DOI: 10.26897/1997-6011-2024-1-6-11. EDN: BWOEJU. (In Russian).