4.7 Article

Biochar feedstock and pyrolysis temperature effects on leachate: DOC characteristics and nitrate losses from a Brazilian Cerrado Arenosol mixed with agricultural waste biochars

Journal

JOURNAL OF ENVIRONMENTAL MANAGEMENT
Volume 211, Issue -, Pages 256-268

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jenvman.2017.12.052

Keywords

Biochar; Agricultural waste; Dissolved organic carbon; Nitrate; Fluorescence spectroscopy; PARAFAC

Funding

  1. Canadian Natural Sciences and Engineering Research Council (NSERC) Post-Graduate Scholarship Award
  2. NSERC-Create TerreWEB Scholarship
  3. Belmont Forum
  4. G8 Research Councils Freshwater Security Grant through NSERC [G8PJ-437376-2012]
  5. Brazilian National Council for Scientific and Technological Development (CNPq)

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Dissolved organic carbon (DOC) leached from Brazilian Cerrado Arenosols can lead to carbon (C) losses and lower soil fertility, while excessive nutrient, e.g. nitrate (NO3-), leaching can potentially cause water contamination. As biochar has been shown to stabilize C and retain soil nutrients, a greenhouse experiment was conducted to test different biochars' contributions to DOC and NO3- leaching from a sandy soil. Biochars were made from four local agricultural waste feedstocks (cotton residue, swine manure, eucalyptus sawmill residue, sugarcane filtercake) pyrolysed at 400, 500 and 600 degrees C. Biochar was mixed with soil at 5% weight in pots and maize seeds planted. Leachate was collected weekly for six weeks and analyzed for DOC and NO3- concentrations, while fluorescence spectroscopy with parallel factor analysis (PARAFAC) was used to interpret DOC characteristics. Cotton and swine manure biochar treatments had higher DOC and NO3- losses than eucalyptus biochar, filtercake biochar, and control treatments. Cotton and swine manure biochar treatments at high temperatures lost mostly terrestrial, humified DOC, while swine manure, filtercake, and eucalyptus biochars at low temperatures lost mostly labile, microbially-derived DOC. Through the practical use of fluorescence spectroscopy, our study identified filtercake and eucalyptus biochars as most promising for retaining DOC and NO3- in a Cerrado Arenosol, potentially reducing stable C and nutrient losses. (C) 2018 Elsevier Ltd. All rights reserved.

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