4.6 Article

Sustainable Innovation: Turning Waste into Soil Additives

Journal

MATERIALS
Volume 16, Issue 7, Pages -

Publisher

MDPI
DOI: 10.3390/ma16072900

Keywords

circular bioeconomy; sustainable technology; waste management; biodegradation; natural fibres

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In recent years, there has been a significant increase in environmental pollution caused by textile waste. This study identifies potential ways of sustainably managing natural textile waste and develops an innovative technology called BioWAGs, which supports water saving and plant vegetation. The research confirms the high efficiency of BioWAGs in increasing fresh mass and root system development of grass species.
In recent years, a dynamic increase in environmental pollution with textile waste has been observed. Natural textile waste has great potential for environmental applications. This work identifies potential ways of sustainably managing natural textile waste, which is problematic waste from sheep farming or the cultivation of fibrous plants. On the basis of textile waste, an innovative technology was developed to support water saving and plant vegetation- biodegradable water-absorbing geocomposites (BioWAGs). The major objective of this study was to determine BioWAG effectiveness under field conditions. The paper analyses the effect of BioWAGs on the increments in fresh and dry matter, the development of the root system, and the relative water content (RWC) of selected grass species. The conducted research confirmed the high efficiency of the developed technology. The BioWAGs increased the fresh mass of grass shoots by 230-420% and the root system by 130-200% compared with the control group. The study proved that BioWAGs are a highly effective technology that supports plant vegetation and saves water. Thanks to the reuse of waste materials, the developed technology is compatible with the assumptions of the circular economy and the goals of sustainable development.

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