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Impact of conditioners added to soil of different bulk density on saturated water content and water holding capacity over a six-day manipulative experiment Cover

Impact of conditioners added to soil of different bulk density on saturated water content and water holding capacity over a six-day manipulative experiment

Open Access
|Feb 2026

References

  1. Abedi-Koupai, J., Sohrab, F., Swarbrick, G., 2008: Evaluation of Hydrogel Application on Soil Water Retention Characteristics. Journal of Plant Nutrition, 31:317–331.
  2. Adjuik, T. A., Nokes, S. E., Montross, M. D., Wendroth, O., 2022: The Impacts of Bio-Based and Synthetic Hydrogels on Soil Hydraulic Properties: A Review. Polymers, 14:4721.
  3. Agaba, H., Orikiriza, L. J. B., Esegu, J. F. O., Obua, J., Kabasa, J. D., Hüttermann, A., 2010: Effects of Hydrogel Amendment to Different Soils on Plant Available Water and Survival of Trees under Drought Conditions. Clean – Soil, Air, Water, 38:328–335.
  4. Bartoš, J., Leugner, J., Kacálek, D., Špulák, O., Hacurová, J., 2024: Indiferentní reakce sazenic borovice lesní a buku lesního ošetřených hydroabsorbenty. Zprávy lesnického výzkumu, 69:216–226. (In Czech).
  5. Crous, J. W., 2017: Use of hydrogels in the planting of industrial wood plantations. Southern Forests: a Journal of Forest Science, 79:197–213.
  6. Čechmánková, J., Skála, J., Sedlařík, V., Duřpeková, S., Drbohlav, J., Šalaková, A. et al., 2021: The Synergic Effect of Whey-Based Hydrogel Amendment on Soil Water Holding capacity and Availability of Nutrients for More Efficient Valorization of Dairy By-Products. Sustainability, 13:10701.
  7. Durpekova, S., Di Martino, A., Dusankova, M., Drohsler, P., Sedlarik, V., 2021: Biopolymer Hydrogel Based on Acid Whey and Cellulose Derivatives for Enhancement Water Retention Capacity of Soil and Slow Release of Fertilizers. Polymers, 13:3274.
  8. Grabowska-Polanowska, B., Garbowski, T., Bar-Michalczyk, D., Kowalczyk, A., 2021: The benefits of synthetic or natural hydrogels application in agriculture: An overview article. Journal of Water and Land Development, 51:208–224.
  9. Guilherme, M. R, Aouada, F. A., Fajardo, A. R., Mar-tins, A. F., Paulino, A. T., Davi, M. F. T. et al., 2015: Superabsorbent hydrogels based on polysaccharides for application in agriculture as soil conditioner and nutrient carrier: A review. European Polymer Journal, 72:365–385.
  10. Hüttermann, A., Orikiriza, L. J. B., Agaba, H., 2009: Application of Superabsorbent Polymers for Improving the Ecological Chemistry of Degraded or Polluted Lands. Clean – Soil, Air, Water, 37:517–526.
  11. Kaur, P., Agrawal, R., Pfeffer, F. M., Williams, R., Bohidar, H. B., 2023: Hydrogels in agriculture: prospects and challenges. Journal of Polymers and the Environment, 31:3701–3718.
  12. Landis, T. C., Haase, D. L., 2012: Applications of hydro-gels in the nursery and during outplanting. In: Haase, D. L. et al. (eds.): National Proceedings: Forest and Conservation Nursery Associations – 2011. Fort Collins (CO), USDA Forest Service, Rocky Mountain Research Station, Proceedings RMRS-P-68, p. 53–58.
  13. Miller, V. S., Naeth, M. A., 2019: Hydrogel and organic amendments to increase water retention in anthroposols for land reclamation. Applied and Environmental Soil Science, ID:476809.
  14. Mohawesh, O., Durner, W., 2019: Effects of Bentonite, Hydrogel and Biochar Amendments on Soil Hydraulic Properties from Saturation to Oven Dryness. Pedosphere, 29:598–607.
  15. Montesano, F. F., Parente, A., Santamaria, P., Sannino, A., Serio, F., 2015: Biodegradable Superabsorbent Hydrogel IncreasesWater Retention Properties of Growing Media and Plant Growth. Agriculture and Agricultural Science Procedia, 4:451–458.
  16. Narjary, B., Aggarwal, P., Singh, A., Chakraborty, D., Singh, R., 2012: Water availability in different soils in relation to hydrogel application. Geoderma, 187–188:94–101.
  17. Novák, V., 1954: Voda v půdě – vodní režim půdní. In: Klika, J., V. Novák, V., Gregor, A. (eds.): Praktikum fytocenologie, ekologie, klimatologie a půdoznalství. Praha, Nakladatelství ČSAV, p. 440–484. (In Czech).
  18. Piccoli, I., Camarotto, C., Squartini, A., Longo, M., Gross, S., Maggini, M. et al., 2024: Hydrogels for agronomical application: from soil characteristics to crop growth: a review. Agronomy for Sustainable Development, 44:22.
  19. Repáč, I., 2019: Hodnotenie vývoja lesnej kultúry buka lesného a smreka obyčajného päť rokov po aplikácii mykorizných a hydroabsorpčných prípravkov pri výsadbe. Zprávy lesnického výzkumu, 64:57–64. (In Slovak).
  20. Repáč, I., Belko, M., 2020: Development of Norway spruce and European beech plantations treated with fertilizer and hydrogel on windthrow area in the Javorie Mts., central Slovakia. Zprávy lesnického výzkumu, 65:232–241. (In Slovak).
  21. Saha, A., Sreedeep, S., Manna, U., 2020: Superabsorbent hydrogel (SAH) as a soil amendment for drought management: A review. Soil and Tillage Research, 204:104736.
  22. Takahashi, M., Kosaka, I., Ohta, S., 2023: Water Retention Characteristics of Superabsorbent Polymers (SAPs) Used as Soil Amendments. Soil Systems, 7:58.
  23. Tubert, E., Vitali, V. A., Alvarez, M. S., Tubert, F. A., Baroli, I., Amodeo, G., 2018: Synthesis and evaluation of a superabsorbent-fertilizer composite for maximizing the nutrient and water use efficiency in forestry plantations. Journal of Environmental Management, 210:239e254.
  24. Valla, M., Kozák, J., Drbal, J., 1983: Cvičení z půdoznalectví II. Praha, SPN, 280 p. (In Czech).
  25. Watanabe, K., Saensupo, S., Na-iam, Y., Klomsa-ard, P., Sriroth, K., 2019: Effects of Superabsorbent Polymer on Soil Water Content and Sugarcane Germination and Early Growth in Sandy Soil Conditions. Sugar Tech, 21:444–450.
  26. Wilske, B., Bai, M., Lindenstruth, B., Bach, M., Rezaie, Z., Frede, H.-G. et al., 2014: Biodegradability of a polyacrylate superabsorbent in agricultural soil. Environmental Science and Pollution Research, 21:9453–9460.
  27. Womack, N. C., Piccoli, I., Camarotto, C., Squartini, A., Guerrini, G., Gross, S. et al., 2022: Hydrogel application for improving soil pore network in agroeco-systems. Preliminary results on three different soils. Catena, 208:105759.
  28. Wu, Y., Li, S., Chen, G., 2024: Hydrogels as water and nutrient reservoirs in agricultural soil: a comprehensive review of classification, performance, and economic advantages. Environment, Development and Sustainability, 26:24653–24685.
  29. Zheng, W., Wang, L.-P., Kuang, X., Jin, Y., Shen, C., 2022: Opposing surfactant and gel effects of soil borne-hydrogels on soil water retention. Water Resources Research, 58:e2022WR032845. Zoubková, L., 2014: Návody k laboratorním cvičením z pedologie. UJEP, Ústí nad Labem, 75 p. (In Czech).
  30. R Core Team. 2024: R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. Available at https://www.R-project.org/.
  31. USDA, 2019: Soil bulk density / moisture / aeration. USDA, Natural Resources Conservation Service, 11 p. Available at https://www.nrcs.usda.gov/sites/default/files/2022-10/Soil%20Bulk%20Density%20Moisture%20Aeration.pdf.
DOI: https://doi.org/10.2478/forj-2025-0015 | Journal eISSN: 2454-0358 | Journal ISSN: 2454-034X
Language: English
Page range: 48 - 58
Published on: Feb 14, 2026
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2026 Ondřej Špulák, Dušan Kacálek, Jan Bartoš, Jan Leugner, Zdeněk Ráček, published by National Forest Centre and Czech University of Life Sciences in Prague, Faculty of Forestry and Wood Sciences
This work is licensed under the Creative Commons Attribution 4.0 License.