2026· Bulletin of Korkyt Ata Kyzylorda University· Vol 77, pp. 199-223· 0 citations
Abstract
Humic substances (HS) are an essential component of soil organic matter and are
considered a promising basis for the development of environmentally safe bioproducts used in
sustainable agriculture. In the context of global soil degradation and the increasing demand for
enhanced productivity of agroecosystems, interest in natural compounds capable of improving soil
fertility and stimulating plant growth is steadily growing. This review summarizes current scientific
data on the origin, structure, physical and chemical properties, as well as biological activity of humic
substances, as well as their role in the functioning of soil ecosystems. It is shown that humic
substances are formed during the humification of organic residues and are characterized by a complex
molecular structure containing various functional groups that ensure their high chemical and biological
activity. Due to their ability to participate in complexation, ion exchange, and electron transfer
processes, humic substances regulate key soil processes, including nutrient cycling, carbon
sequestration, soil structure formation, and detoxification of pollutants. Particular attention is given to
the physiological effects of humic substances on plants. It is demonstrated that they exhibit hormonelike properties, stimulating root system development, activating metabolic processes, and increasing
plant resistance to abiotic stress. In addition, humic substances enhance the bioavailability of macroand micronutrients, improve soil water retention capacity, and promote the activity of soil microbiota.
The review also examines modern methods for obtaining humic acids from natural carbon-containing
materials, including chemical, mechanochemical, hydrothermal, biochemical methods, as well as
process intensification techniques using ultrasound, microwaves, and electromagnetic fields. The
advantages and limitations of various technologies, as well as their environmental aspects, are
discussed. Thus, humic substances are considered multifunctional natural compounds with significant
potential for improving soil fertility, enhancing the sustainability of agroecosystems, and developing
biologically active products for agriculture. Their use opens new opportunities for the advancement of
environmentally oriented agricultural technologies and for addressing current challenges in food
security and environmental protection.
Greenhouse gasses emission, depletion of nutrients and soil degradation are major factors that are deteriorating soil health. A global challenge to agriculture is the production of enough crops while reducing the impact of intensive chemical inputs on the environment. Humic acids (HA), a main fraction of humic substanc...
Marios Drosos, O. Oyebiyi, Muzammal Hoque et al.· Journal of Soils and Sedimen...· 0 citations
Biochar, a carbon-rich material, is increasingly recognized for its multifaceted role in enhancing agricultural sustainability, soil health, and ecosystem service delivery. Its physicochemical properties, governed by feedstock selection and pyrolysis parameters, have a significant impact on soil structure, cation exc...
S. Thapa, S. Rawal, Pawan Chapagaee et al.· CABI Reviews· 0 citations
Modern agriculture is caught in a contradiction between the need to increase food production and the demands of environmental safety. The intensive use of mineral fertilizers and chemical plant protection products, while ensuring short-term yield increases, leads to soil degradation: a decline in humus content, soil co...
A. B. Dyachkina, R. Tembotov· THEORETICAL & APPLIED PR...· 0 citations
Ensuring long-term agricultural sustainability depends heavily on preserving soil health, a process fundamentally governed by humic substances (HSs) and their vital physicochemical and biological functions. However, because intensive farming rapidly degrades natural HSs reserves, external replenishment has become essen...
Dominik Nieweś, Kinga Marecka, M. Huculak-Mączka· Agronomy· 0 citations
The objective of the study was to evaluate the soil physicochemical properties and to isolate the native bacteria with plant growth-promoting (PGP) activity to identify native multifunctional strains with potential for use as microbial soil conditioners.
Anshika Bajpai, I. Sarethy· BIO Web of Conferences· 0 citations
Microbiological bioproducts constitute a rapidly growing group of preparations used in modern agriculture and play a significant role in achieving the goals of sustainable crop production. Because they contain live microorganisms or their metabolites, they promote plant growth and development, increase nutrient availab...