Effect of carbon-enriched digestate on the microbial soil activity

TitleEffect of carbon-enriched digestate on the microbial soil activity
Publication TypeJournal Article
Year of Publication2021
AuthorsHolatko J., Hammerschmiedt T., Kintl A., Danish S., Skarpa P., Latal O., Baltazar T., Fahad S., Akca H., Taban S., Kobzova E., Datta R., Malicek O., Hussain G.S, Brtnicky M.
JournalPlos OnePlos One
Volume16
Pagination13
Date PublishedJul
Type of ArticleArticle
ISBN Number1932-6203
Accession NumberWOS:000671718200004
Keywordsamendments, biochar, EFFICIENCY, growth, Science & Technology - Other Topics, sludge, Urea
Abstract

Objectives 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. Methods 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. Results 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. Conclusions 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.

Short TitlePLoS OnePLoS One
Alternate JournalPLoS One
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    [biblio_abst_e] => Objectives 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. Methods 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. Results 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. Conclusions 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.
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Cited Reference Count: 50
Holatko, Jiri Hammerschmiedt, Tereza Kintl, Antonin Danish, Subhan Skarpa, Petr Latal, Oldrich Baltazar, Tivadar Fahad, Shah Akca, Hanife Taban, Suleyman Kobzova, Eliska Datta, Rahul Malicek, Ondrej Hussain, Ghulam Sabir Brtnicky, Martin
Holatko, Jiri/AAE-2975-2021; Datta, Rahul/J-9495-2014; Kintl, Antonin/AAJ-3773-2021; Danish, Subhan/Q-1414-2018; Latal, Oldrich/AAE-4267-2021; Skarpa, Petr/K-7785-2018; Hammerschmiedt, Tereza/W-5891-2018
Holatko, Jiri/0000-0003-4156-4673; Datta, Rahul/0000-0001-9001-2555; Kintl, Antonin/0000-0002-0031-083X; Danish, Subhan/0000-0002-6182-6207; Latal, Oldrich/0000-0002-0061-6572; Skarpa, Petr/0000-0003-3189-1726; Hammerschmiedt, Tereza/0000-0003-1621-2019
projects of Technology Agency of the Czech Republic [TH03030319, TH04030132]; Agriculture Research, Ltd.
The work was supported by the projects of Technology Agency of the Czech Republic TH03030319 and TH04030132.' The funder the Agriculture Research, Ltd. provided support in the form of salaries for author [A.K.], but did not have any additional role in the study design, data collection and analysis, decision to publish, or preparation of the manuscript. The specific roles of these authors are articulated in the 'author contributions' section.

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Brtnicky, M (corresponding author), Mendel Univ Brno, Fac AgriSci, Dept Agrochem Soil Sci Microbiol & Plant Nutr, Brno, Czech Republic.; Brtnicky, M (corresponding author), Mendel Univ Brno, Fac Forestry & Wood Technol, Dept Geol & Soil Sci, Brno, Czech Republic.; Brtnicky, M (corresponding author), Brno Univ Technol, Fac Chem, Inst Chem & Technol Environm Protect, Brno, Czech Republic.
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