An examination of maximum legal application rates of dairy processing and associated STRUBIAS fertilising products in agriculture
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Shi, W.Fenton, O.
Ashekuzzaman, S.M.
Daly, k.
Leahy, J.J.
Khalaf, N.
Hu, Y.
Chojnacka, K.
Numviyimana, C.
Healy, M.G.
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2022-01-01
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W. Shi, O. Fenton, S.M. Ashekuzzaman, K. Daly, J.J. Leahy, N. Khalaf, Y. Hu, K. Chojnacka, C. Numviyimana, M.G. Healy, An examination of maximum legal application rates of dairy processing and associated STRUBIAS fertilising products in agriculture, Journal of Environmental Management, Volume 301, 2022, 113880, ISSN 0301-4797, https://doi.org/10.1016/j.jenvman.2021.113880.Abstract
The dairy industry produces vast quantities of dairy processing sludge (DPS), which can be processed further to develop second generation products such as struvite, biochars and ashes (collectively known as STRUBIAS). These bio-based fertilizers have heterogeneous nutrient and metal contents, resulting in a range of possible application rates. To avoid nutrient losses to water or bioaccumulation of metals in soil or crops, it is important that rates applied to land are safe and adhere to the maximum legal application rates similar to inorganic fertilizers. This study collected and analysed nutrient and metal content of all major DPS (n = 84) and DPS-derived STRUBIAS products (n = 10), and created an application calculator in MS Excel™ to provide guidance on maximum legal application rates for ryegrass and spring wheat across plant available phosphorus (P) deficient soil to P-excess soil. The sample analysis showed that raw DPS and DPS-derived STRUBIAS have high P contents ranging from 10.1 to 122 g kg−1. Nitrogen (N) in DPS was high, whereas N concentrations decreased in thermo-chemical STRUBIAS products (chars and ash) due to the high temperatures used in their formation. The heavy metal content of DPS and DPS-derived STRUBIAS was significantly lower than the EU imposed limits. Using the calculator, application rates of DPS and DPS-derived STRUBIAS materials (dry weight) ranged from 0 to 4.0 tonnes ha−1 y−1 for ryegrass and 0–4.5 tonnes ha−1 y−1 for spring wheat. The estimated heavy metal ingestion to soil annually by the application of the DPS and DPS-derived STRUBIAS products was lower than the EU guideline on soil metal accumulation. The calculator is adaptable for any bio-based fertilizer, soil and crop type, and future work should continue to characterise and incorporate new DPS and DPS-derived STRUBIAS products into the database presented in this paper. In addition, safe application rates pertaining to other regulated pollutants or emerging contaminants that may be identified in these products should be included. The fertilizer replacement value of these products, taken from long-term field studies, should be factored into application rates.Funder
European Union's Horizon 2020 research and innovation programmeGrant Number
814258ae974a485f413a2113503eed53cd6c53
https://doi.org/10.1016/j.jenvman.2021.113880
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Except where otherwise noted, this item's license is described as © 2021 The Authors. Published by Elsevier Ltd.