References
- Abedi-Koupai, J., Sohrab, F., Swarbrick, G., 2008: Evaluation of Hydrogel Application on Soil Water Retention Characteristics. Journal of Plant Nutrition, 31:317–331.
- 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.
- 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.
- 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).
- Crous, J. W., 2017: Use of hydrogels in the planting of industrial wood plantations. Southern Forests: a Journal of Forest Science, 79:197–213.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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).
- 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.
- 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).
- 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).
- 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.
- Takahashi, M., Kosaka, I., Ohta, S., 2023: Water Retention Characteristics of Superabsorbent Polymers (SAPs) Used as Soil Amendments. Soil Systems, 7:58.
- 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.
- Valla, M., Kozák, J., Drbal, J., 1983: Cvičení z půdoznalectví II. Praha, SPN, 280 p. (In Czech).
- 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.
- 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.
- 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.
- 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.
- 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).
- 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/.
- 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.
