TO THE QUESTION OF THE METHODOLOGY OF CONDUCTING LONG-TERM EXPERIMENTS ON THE NO-TILL TECHNOLOGY INFLUENCE ON SOIL PROPERTIES
https://doi.org/10.19047/0136-1694-2019-98-132-152
Abstract
When setting a long-term field experiment in order to study the impact of direct sowing technology on soil properties it is necessary to take into account not only the known requirements, but a comprehensive analysis of soil heterogeneity as well. The article presents the results of detailed topographic and soil-agrochemical mapping with estimation of variability of morphological and agrochemical properties of typical chernozems studied on four experimental fields of 2.4 ha area each.
Keywords
About the Authors
S. A. YudinRussian Federation
V. P. Belobrov
Russian Federation
V. K. Drediger
Russian Federation
A. M. Grebenikov
Russian Federation
A. J. Aydiev
Russian Federation
B. S. Ilyin
Russian Federation
N. R. Ermolaev
Russian Federation
References
1. Belobrov V.P., Aidiev A.Yu., Yudin S.A., Ermolaev N.R., Dmitrieva V.T., Variabel'nost' agrokhimicheskikh svoistv tipichnykh chernozemov v mnogoletnem polevom opyte (Variability of agrochemical properties of typical chernozems in many years of field experience), In: Chernozemy Tsentral'noi Rossii: genezis, evolyutsiya i problemy ratsional'nogo ispol'zovaniya (Chernozems of Central Russia: genesis, evolution and problems of rational use), Voronezh, 2017, pp. 181–185.
2. Ganzhara N.F., Verzilin V.V., Baibekov R.F., Borisov B.A., Sostoyanie organicheskogo veshchestva i soedinenii azota chernozemov vyshchelochennykh v zavisimosti ot sposobov vozdelyvaniya kul'tur (The state of organic matter and nitrogen compounds leached chernozems, depending on the methods of cultivation of crops), Izvestiya TSKhA, 2005, No. 3, pp. 1–13.
3. Dmitriev E.A., Matematicheskaya statistika v pochvovedenii (Mathematical statistics in soil science), Moscow: Izd-vo MGU, 1973, 292 p.
4. Dospekhov B.A., Metodika polevogo opyta (Methodology of field experience), Moscow: Agropromizdat, 1985, 351 p.
5. Dridiger V.K., Prakticheskie rekomendatsii po osvoeniyu tekhnologii vozdelyvaniya sel'skokhozyaistvennykh kul'tur bez obrabotki pochvy v zasushlivoi zone Stavropol'skogo kraya (Practical recommendations for mastering the technology of cultivation of agricultural crops without tillage in the arid zone of the Stavropol Territory), Stavropol': SNIISKh, 2016, 80 p.
6. Dridiger V.K., Nevecherya A.V., Taran G., Shapovalova N.V., Ipatovskii opyt vozdelyvaniya polevykh kul'tur bez obrabotki pochvy (no-till) (Ipatov experience in cultivating field crops without tillage (no-till)), AgroSnabForum, No. 3, 2017, pp. 35–40.
7. Kiryushin V.I., Minimizatsiya obrabotki pochvy: itogi diskussii (Minimization of soil cultivation: the results of the discussion), Zemledelie, 2007, No. 4, pp. 28–30.
8. Klassifikatsiya i diagnostika pochv Rossii (Classification and diagnostics of Russian soils), Smolensk: Oikumena, 2004, 341 p.
9. Kozlovskii F.I., Teoriya i metody izucheniya pochvennogo pokrova (Theory and methods of studying soil cover), Moscow: GEOS, 2003, 535 p.
10. Metodicheskie ukazaniya po provedeniyu kompleksnogo agrokhimicheskogo obsledovaniya pochv sel'skokhozyaistvennykh ugodii (Guidelines for a comprehensive agrochemical survey of agricultural soils), Moscow: TsNTIPR Minsel'khozproda Rossii, 1994, pp. 6–8.
11. Derzhavin L.M., Bulgakov D.S., Metodicheskie ukazaniya po provedeniyu kompleksnogo monitoringa plodorodiya pochv zemel' sel'skokhozyaistvennogo naznacheniya (Guidelines for the comprehensive monitoring of soil fertility of agricultural lands), Moscow: FGNU “Rosinformagrotekh”, 2003, 240 p.
12. Sergeev K., Pryamoi posev: Yuzhnoamerikanskaya i Avstraliiskaya model' (Direct sowing: South American and Australian models), Resursosberegayushchee zemledelie, 2016, No. 4 (32), pp. 8–15.
13. Frid A.S., Kuznetsova I.V., Koroleva I.E., Bondarev A.G., Kogut B.M., Utkaeva V.F., Azovtseva N.A., Zonal'no-provintsial'nye normativy izmenenii agrokhimicheskikh, fiziko-khimicheskikh i fizicheskikh pokazatelei osnovnykh pakhotnykh pochv evropeiskoi territorii Rossii pri antropogennykh vozdeistviyakh (Zonal-provincial standards for changes in agrochemical, physico-chemical and physical indicators of the main arable soils of the European territory of Russia under anthropogenic influences), Moscow: Pochv. in-t im. V.V. Dokuchaeva, 2010, 176 p.
14. Chekaev N.P., Kuznetsov A.Yu., Tekhnologiya No-till – put' k real'nym rezul'tatam (No-till technology – the way to real results), Prodovol'stvennaya politika i bezopasnost', 2015, Vol. 2, No. 1, pp. 7–18, DOI: 10.18334/.2.1.453.
15. Cherkasov G.N., Pykhtin I.G. et al., Teoreticheskie osnovy formirovaniya agrotekhnologicheskoi politiki primeneniya nulevykh i poverkhnostnykh obrabotok pochvy pod zernovye kul'tury dlya modernizatsii zemledeliya (The theoretical basis for the formation of an agrotechnological policy for the application of zero and surface tillage for grain crops for the modernization of agriculture), Kursk: GNU VNIIZiZPE RASKhN, 2012, 81 p.
16. Derpcsh R., Franzluebbers A.J., Duiker S.W., Reicosky D.C., Koeller K., Friedrich T., Sturny W.G., Sa J.C.M., Weiss K., Why do we need to standardize no-tillage research? Soil and Tillage Research, Vol. 137, 2014, pp. 16–22, DOI: 10.1016/j.still.2013.10.002.
17. FAO, Conservation Agriculture Adoption Worldwide, FAO AQUASTAT Database on CA Adoption, 2012, URL: http://www.fao.org/ag/ca/6c.html.
18. FAO, Basic Principles of Conservation Agriculture, 2013, URL: http://www.fao.org/ag/ca/1a.html.
Review
For citations:
Yudin S.A., Belobrov V.P., Drediger V.K., Grebenikov A.M., Aydiev A.J., Ilyin B.S., Ermolaev N.R. TO THE QUESTION OF THE METHODOLOGY OF CONDUCTING LONG-TERM EXPERIMENTS ON THE NO-TILL TECHNOLOGY INFLUENCE ON SOIL PROPERTIES. Dokuchaev Soil Bulletin. 2019;(98):132-152. (In Russ.) https://doi.org/10.19047/0136-1694-2019-98-132-152