Effect of carbon-enriched digestate on the microbial soil activity

As a liquid organic fertilizer used in agriculture, digestate is rich in many nutrients (i.e. nitrogen, phosphorus, sulfur, calcium, potassium); their utilization may be however less efficient in soils poor in organic carbon (due to low carbon:nitrogen ratio). In order to solve the disadvantages, di...

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Veröffentlicht in:PloS one 2021-07, Vol.16 (7), p.e0252262
Hauptverfasser: Holatko, Jiri, Hammerschmiedt, Tereza, Kintl, Antonin, Danish, Subhan, Skarpa, Petr, Latal, Oldrich, Baltazar, Tivadar, Fahad, Shah, Akça, Hanife, Taban, Suleyman, Kobzova, Eliska, Datta, Rahul, Malicek, Ondrej, Hussain, Ghulam Sabir, Brtnicky, Martin
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Sprache:eng
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Zusammenfassung:As a liquid organic fertilizer used in agriculture, digestate is rich in many nutrients (i.e. nitrogen, phosphorus, sulfur, calcium, potassium); their utilization may be however less efficient in soils poor in organic carbon (due to low carbon:nitrogen ratio). In order to solve the disadvantages, digestate enrichment with carbon-rich amendments biochar or humic acids (Humac) was tested. Soil variants amended with enriched digestate: digestate + biochar, digestate + Humac, and digestate + combined biochar and humic acids-were compared to control with untreated digestate in their effect on total soil carbon and nitrogen, microbial biomass carbon, soil respiration and soil enzymatic activities in a pot experiment. Yield of the test crop lettuce was also determined for all variants. Soil respiration was the most significantly increased property, positively affected by digestate + Humac. Both digestate + biochar and digestate + Humac significantly increased microbial biomass carbon. Significant negative effect of digestate + biochar (compared to the control digestate) on particular enzyme activities was alleviated by the addition of humic acids. No significant differences among the tested variants were found in the above-ground and root plant biomass. The tested organic supplements improved the digestate effect on some determined soil properties. We deduced from the results (carbon:nitrogen ratio, microbial biomass and activity) that the assimilation of nutrients by plants increased; however, the most desired positive effect on the yield of crop biomass was not demonstrated. We assume that the digestate enrichment with organic amendments may be more beneficial in a long time-scaled trial.
ISSN:1932-6203
1932-6203
DOI:10.1371/journal.pone.0252262