scholarly journals Efficiency of fertilizers under winter wheat on typical chernozem of high left-bank Forest-steppe

2019 ◽  
Vol 97 (5) ◽  
pp. 16-21
Author(s):  
M. Lisovyj ◽  
V. Shymel' ◽  
V. Nikonenko
2021 ◽  
pp. 59-63
Author(s):  
M.V. Lisovyi ◽  
◽  
V.M. Nikonenko ◽  
О.V. Karatsiuba ◽  
О.I. Slidenko ◽  
...  

The goal was to study the effect of certain types of mineral fertilizers (N, P, K) and their paired compounds (NP, NK, PK) on the protein and gluten content in the grain of winter wheat on chernozem typical (Haplic Chernozem (Profundihumic)). The research was carried out in the conditions of a field stationary experiment which was laid down in the experimental farm of the NSC "Institute for Soil Science and Agrochemistry Research named after O. N. Sokolovsky" in the Kharkiv region. Eight variants with the following norms of fertilizers were studied for winter wheat: 1 – without fertilizers (control); 2 – N60; 3 – P120; 4 – K90; 5 – N60P120; 6 – N60K90; 7 – P120K90; 8 – N60P120K90. The effectiveness of fertilizers was reseached on two agrophones - natural and aftereffect of fertilizers (240 t/ha for crop rotation). The content of protein and gluten in wheat grain was determined on the Spectran-119M. On typical chernozem of the Forest-Steppe of the left-bank high application of nitrogen and phosphorus fertilizers in norm N60P120 provides the content of protein in grain of winter wheat at the level of 12,9 – 14,7 % that corresponds to the 1st and 2nd classes of quality of grain according to the National standard (DSTU 3768 : 2010). The gluten content ranges from 23.6 to 25.0 %, which corresponds to the 2nd class of grain quality of winter wheat.


2017 ◽  
Vol 1 (92) ◽  
pp. 100-108
Author(s):  
T.S. Vinnichuk ◽  
L.M. Parminskaya ◽  
N.M. Gavrilyuk

In the article the research the results of studies of the phytosanitary state of winter wheat sowing with three soil treatments - plowing (22-24 cm), shallow (10-12 cm) and zero (no - till) with various doses of fertilizers: N56 Р16 К16 , N110-130 Р90 К110 and N145-165 Р135 К150 , without fertilizers (control) for the two predecessors - soybean and rapeseed. The influence of these methods on the development and prevalence of powdery mildew, septoriosis of leaves, root rot of winter wheat, the most common pests in the area of research - cereal flies, wheat thrips and grain sawflies. The identified measures to limit the development and spread of harmful organisms above.


Author(s):  
O.O. Diomkin

The article presents the results of three-year studies to determine the effectiveness of local chisel, ultra-deep chisel, chisel conventional and disk tillage when growing winter wheat after fallow in the conditions of the Left-Bank Forest-Steppe of Ukraine. It has been established that changing the plowing of local or disking soil tillage leads to an increase in the density and hardness of the arable layer. Solid chisel tillage ensures the agrophysical state of the soil at the level of plowing. Chisel loosening improves the structure of the arable layer due to an increase in the number of water resistance aggregates by 2.5–3.4 % in comparison with plowing. The methods of soil tillage in fallow have little effect on the change in the moisture content of the arable and meter layers, which is facilitated by the accumulation and retention of moisture during the maintenance of fallow. Chisel tillage contributes to an increase in soil protection efficiency of the surface by 5–7 % in comparison with plowing due to the partial preservation of crop residues in the period after harvesting the predecessor to the beginning of summer, improvement of the structure of the upper layer and differentiated redistribution of the root system. The highest level of soil protection efficiency is provided by local chisel loosening. All non-moldboard tillage in fallow contributed to an increase in the yield of wheat grain in comparison with plowing, especially after solid loosening with a chisel plow at 33-35 cm, where an increase in yield was recorded by 0.36 t/ha (9 %). An increase in the level of profitability by 16–25 % makes it possible to recommend chisel local and solid loosening by 33–35 cm in a fallow when growing winter wheat in the conditions of the Left-Bank Forest-Steppe of Ukraine. Keywords: winter wheat, chisel loosening, local loosening, efficiency, density, hardness, water resistance, yield.


2017 ◽  
Vol 4 (1) ◽  
pp. 28-45
Author(s):  
O. Demydenko ◽  
V. Velichko

The aim of the study was to provide scientifi c and theoretical substantiation for the process of microaggrega- tion of typical chernozem via the simulation of natural processes of soil formation under the effect of systemat- ic application of soil-protecting technologies of crop cultivation with surface packing of root and after-harvest remains, humus, and mineral fertilizers in agrocenoses of the Left-Bank Forest-Steppe of Ukraine. Methods. Laboratory-analytical, experimental fi eld, statistical. Results. During tillage (for over 75 years) the number of free and friable-linked aggregates in the 0–40-cm chernozem layer decreased down to 17–20 %, and on the background of organic-mineral system of fertilization (15 t/ha of humus + N 80 P 75 K 60 ) there was an increase in the content of the mentioned groups of microaggregates up to 20–25 %. The systematic implementation of soil protective technologies promoted the increase in the content of free and friable-linked microaggregates up to 29–32 %. During tillage, the coeffi cient of saturation with humus for physical clay (PC) decreased 1.3–1.4 times compared to the grassland. The value of PC saturation during the soil protective tillage was optimal, as humus was neither accumulated in the form of free humates, nor stored like “fat” in animal organisms.aAnd there was no blocking of nutrients with free humates. Humus acts as a connective tissue, promoting the improved water-resistance of chernozem structure on the micro- and macroaggregate levels. The ability of chernozems to have aggregation was determined by the dispersion factor (DF), which was 12–14 % during tillage without introducing any fertilizers, and 10 % – with the introduction of fertilizers, which testifi ed to a weak degree of microaggregation. With minimal tillage on the background of the organo-mineral system of fertilization, DF = = 6–7 %, and by the end of rotation it decreased down to 3-5 %. Conclusions. Enhanced microaggregation in soil protective technologies is explained by the fact that detritus and newly formed humic substances enhance their role in the formation of organo-mineral complexes in case of optimization of hydrothermal conditions in the seasonal cycle and decreased tempo of humus mineralization. The correlation coeffi cient between the num- ber of microaggregates, sized 0.01–0.25 mm and the content of peptized humic substances during tillage was as follows: R = +0.480.01, and for soil protective technologies it was: R = (+0.70–0.75) 0.01. The increase in microaggregation in conditions of soil protective tillage occurred in the direction of wild land analogs and fallow, which testifi ed to the simulation of the natural process of typical chernozem microaggregation in the agrocenoses of the Left-Bank Forest-Steppe of Ukraine.


2016 ◽  
Vol 3 (2) ◽  
pp. 63-78
Author(s):  
O. Demydenko ◽  
V. Velichko

Aim. To investigate the process of enhancing the self-organization and self-regulation of chernozem towards natural organization under the impact of long-term soil-protective surface tillage and to determine its impact on enhancing the ability of chernozem to adapt to environmental changes, preserving agroecological stability of the agroecosystem of the Left-Bank Forest-Steppe of Ukraine. Methods. Field, laboratory, computational, mathematical and statistical. Results. The complex years-long studies (1992–2015) demonstrated that the com- bination of soil-protective technologies of cultivating crops in the agroecosystems is a factor of affecting the character, orientation and self-regulation of energy- and mass exchange in a complicated network of interac- tions and interrelations of chernozems in agroecosystems. The determinant and governing impact in restoring the fertility of typical chernozem in the Left-Bank Forest-Steppe of Ukraine is soil-protective technologies of cultivating agricultural crops, based on surface tillage. The energy-wise appropriateness of creating the porous space of chernozem in conditions of soil-protective treatment should be deemed as thermodynamic code of soil formation or the process of implementing the “memory” about the morphogenicity of spatial soil form of chernozem of a high self-organization degree, which is in direct correlation with the process of enhancing the residual features of natural soil formation and accumulative orientation of fertility indices. Conclusions. The soil-protective system of agriculture should be viewed as a complex of methods and technologies of systemic or ecologically reasonable use of anthropogenic and natural energy resources. It creates the background to solve the main problem of agriculture – rational use of chernozem fertility with simultaneous extensive resto- ration, which ensures more complete use of the bioclimatic potential with optimal exploitation of natural and anthropogenic resources of the Left-Bank Forest-Steppe territory.


Author(s):  
В. Ф. Камінський ◽  
В. В. Гангур

За результатами досліджень, проведених на типовому малогумусному важкосуглинковому чорноземі Лівобережного Лісостепу України протягом 1999–2015 рр., показано, що посіви пшениці озимої найбільш інтенсивно використовують вологу ґрунту та опадів на формування вегетативних і генеративних органів у період від відновлення весняної вегетації до колосіння. Цей період росту і розвитку рослин пшениці озимої є найбільш чутливим до дефіциту вологи в ґрунті, а її запаси визначають верхню межу продуктивності посівів культури. The results of the researches were obtained during 1999–2015, on the typical low-humus heavy-loamy black soil of the Left-Bank Forest-Steppe of Ukraine show that during the spring-summer period of vegetation there is a predominance of moisture losses over its accumulation in the soil. However, in this period prevailing productive costs, that is, soil moisture is more spent on the formation of crop and partly on the physical evaporation from the surface of the soil. The largest reserves of productive moisture in the ground under winter wheat were observed in spring at the time of the restoration of its vegetation. Through the winter and early spring precipitation of moisture in 100 cm soil layer was 181.8 mm, 43.8 mm or 37.1 % more than the average long-term rate. It was determined the fact that in most winter wheat is consumed from the soil moisture autumn-winter inventories during the period of vegetation culture to exit the tube – 43.4 mm. In this case, the total expenditures of moisture from the soil and precipitation are 70.7 mm or 27.8 % of the total expenditures of moisture by culture during the growing season. In the future, from the outlet to the tube to beginning to ear the general flow of moisture decreases, and from the ear to the onset of the waxy maturity of the grain, on the contrary, increase. So in the field of winter wheat they were, respectively, 66.8 and 116.6 mm, that is, the difference, compared with the period from the restoration of vegetation to the output of the tube was 3.9 and 46.1 mm. However, studies show that plants of winter wheat  the most intensively used wet during the growing season from the restoration of it in spring to the ear eruption. This period of growth and development of winter wheat plants is most sensitive to the deficit of moisture in the soil, and its reserves determine the upper limit of productivity of crops.


2021 ◽  
Vol 33 ◽  
pp. 62-71
Author(s):  
Rieznik S. V.

Objective. To establish the influence of different crop farming systems on the parameters of the number of representatives of ecological and trophic groups of microorganisms in typical chernozem. Methods. Comparative-profile-genetic, microbiological, statistical. Results. The upper 0–10- centimetre layer of soil (the number of microorganisms decreases with depth and the predominance of microbiological activity in the 10–20-centimetre layer is possible only in dry periods) is characterised by the highest microbiological activity. The microbiocenosis undergoes the greatest transformations in the conditions of intensive system of crop farming upon mixing and turn of a layer. This is expressed in a significant decrease in microbiological activity in the 0–10-centimetre layer and vice versa — an increase in the layers of 10–20 and 20–30 cm. Agrogenic soils have higher parameters of total microbiological activity compared to the fallow area. The most positive influence on biogenesity was reported in the variants of the organic system of crop farming, especially with the use of green manures. The data on the directions of development of soil biological processes of the studied variants by the analysis of oligotrophic coefficients, mineralization-immobilization and mobilization of nitrogen stock are provided. Mathematical analysis of the data showed a significant influence of the depth of sampling on the number of all studied microorganisms, while the crop farming system significantly affected the number of microscopic fungi, actinomycetes and amylolytic microbiota. Conclusion. Agrogenic use of chernozems reduces the number of microscopic fungi. In the variants of organic crop farming, a significant increase in the number of actinomycetes and amylolytic microbiota was reported. Under the intensive system of crop farming, there is a decreased number of representatives of all studied ecological and trophic groups of microorganisms. And vice verse, variants of the organic crop farming system, especially under the use of green manure, have a higher number of most functional groups of microorganisms. Cultivated soils are characterized by a higher coefficient of mineralization and immobilization compared to fallow.


2014 ◽  
Vol 1 (2) ◽  
pp. 61-71
Author(s):  
A. Demydenko ◽  
V. Velychko

Aim . To estimate the infl uence of contemporary climatic changes to the forming of the cereal crops productivity ( winter wheat and corn ) depending on the adaptive measures system ( fertilizer , cultivating , crop rotation type) in the agrocenoses of the Central Left - Bank Ukraine ’s Forest- Steppe. Methods . On the basis of long - term ( 35 -40 years ) investigations in the multifactor stationary fi eld experience, the dynamics of the cereal crops productiv- ity depending on cultivation , crop rotation type and fertilizer has been analyzed. The infl uence of meteorologica l indices on the nature of a trends’ temporal movement in the cereal crops productivity has been modeled . Results . The effective use of an excess heat resource is connected to the introduction of mineral and organic fertilizers sub- ject to different cultivation methods in various crop rotation type s. For the crop rotation with the perennial grass at treatment with 6 t / ha of manure and average dose of fertilizers, the productivity of winter wheat, independent of the cultivation method, was 4.69 t / ha , barley – 4. 54 t/ h a ; whereas du ring 20 01−201 0 due to rep lacement of man ure wit h sid e-li n e pro ducts – 4.21 and 3 .37 t/ha r e sp ectively, i.e. , less by 0. 48 and 1 .17 t/ha. T he p rodu ctivity of sp rin g barle y, as co mpa red to th e m anur e treatment period, has reduced in av erage by 0. 66 t/ha, o r by 23 .8 per cent; along side, it re mained highe st at th e d eep subsu rface loose ning of so il. Ret ur n from the a ppli ed ferti lizers prove d to be highe r by 12 3 p er c ent independent of the m etho d of tr eat ing the s oil. In fi ve- plot pea-i ncluding crop rotation the a vera ge produ ctivity of wi nte r wheat in 2 001− 2010 d ecre a sed by 1.0 9 t /ha, o r by 20 per c ent. The mo st c onsiderable reduct ion in the grain productivity has b een fi xed at bot h the su bsur face and su rfac e loosen ing of soi l. As f or the cr op r otation with t he pe renn ial grass, on t he contrary, a mo re c onsiderable drop i n the produc tiv- ity was at plo ugh ing (-0.59 t/ha). T he co rn p roductivity in the cr op r otation with t he pe renn ial grass grew a t var i- ous cultivation methods by 1.7 1 t /ha a v e ra ge, and in the pe a-in cluding crop rotation – by 1 .9 5 t /ha. C o nc lu sions. Exce ss heat r esource during 2001−2 013 in cond iti ons of the Left-Ba nk U k raine ’s Forest- S teppe z one ant icipa tes in raisi ng tempos the forecast scenario s of the c limatic change until 20 25 and need s t he intr oduc tion of the a daptive agricult ure system: the ap pl icat ion of diffe rin g-depth c u ltivat ing for the cher nozems with the prec ise following of the p ostharv est cultivat ion technological operatio ns in the s umm er-a utumn p eriod t ogether with the simu ltan eous basic au tumn t reatmen t with both organic and mine ral fertilizers, however, without the basi c d o se tre atmen t with the mineral fertilizers for spri ng c ultivat ion, and al so app lying of green -ma nured fallows in the s tru ctur e of plant ed areas. U nder th e cont empo rary conditio ns, the clim atic change, in par ti cular, an inc re ase in the t emperat ure in the c ent er p art of the L eft-Ban k Uk r aine’ s Forest-Steppe favorabl y affects an incre ase in the p roducti vity of the e xist- ing hybrids of corn, wh erea s the desc endi ng general trend ha s been observed during entire e xplorat ion period for the wint er w heat an d barl ey p roductivity because of an incre ase in the t emperat ure of air t o t he c rit ical values i n the p eri od o f earin g a nd grai n po uring. The ex c e ss h eat res ource is effectively used by the cont emp o rary middle- and of l ate- ri p enin g corn hybrids, for wh ic h th e cond itio ns of optim um soil and atmo sphe ric moist ure supply in the “win dbu r n” are created period of arden t a nd wint er e ar crop s. That contrib u tes to the g rowth o f thei r pr oducti vity.


2018 ◽  
Vol 5 (1) ◽  
pp. 3-16
Author(s):  
O. Demydenko ◽  
P. Boyko ◽  
V. Velychko

The continuous agronomic experiment revealed long-term dynamics of the total humus content and presented a forecast of the change in humus content in typical low humus chernozem under different technologies of till- age till 2050. Aim. To determine the rates of humus accumulation dynamics and mineralization of total humus and to develop the forecast of the change in its content within a continuous agronomic experiment under long- standing application of different technologies of soil tillage to typical low humus chernozem of the Left-Bank Forest-Steppe of Ukraine. Methods. Field, laboratory-analytical, mathematical and statistical. Results. The application of different technologies of tillage to typical low humus chernozem for 42 years resulted only in the delay in dehumifi cation processes and some stabilization of humus mineralization, but it did not promote its preservation and extended restoration to the initial level as of the start of the experiment. The increase in the total humus content for simple and extended restoration of humus in the centennial cycle equaled 20–25 t and 30–33 t per 1 ha respectively. To ensure the increase in content and reserves of humus for 42 years, it is necessary to introduce 10–12 t of humus per 1 ha for simple restoration of total humus content and 14–15 t per 1 ha – for extended restoration annually. Conclusions. Simple restoration of humus in typical chernozem may be stated after achieving its actual (2017) content of at least 90 % from the content as of the beginning of the centennial cycle (92 years), which ensures maximal approximation to the non-decreasing cycle of humus dynamics trends in the centennial cycle. If the humus content is ensured in the actual measurement for the level, exceeding 90 % from the initial content, and dynamics trends are growing, one may state the success of achieving the state of extended restoration of humus. The obtained state of simple and extended accumulation of humus is ensured by the positivity of the trends of humus increase during the continuous experiment (42 years) with simultaneous decrease in dehumifi cation process in the centennial cycle (92 years) which is impos- sible to neutralize completely.


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