4.7 Article

Chemically and biologically-mediated fertilizing value of manure-derived biochar

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 550, 期 -, 页码 924-933

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2016.01.160

关键词

Pyrolysis temperature; Amendment; Fertilizer; Crop growth; Carbon sequestration; Soil enzyme activity

资金

  1. People Programme (Marie Curie Actions) of the European Union Seventh Framework Programme under REA [289887]

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This study evaluates the potential of manure-derived biochars in promoting plant growth and enhancing soil chemical and biological properties during a 150 day pot experiment. Biochars from pyrolysis of poultry litter (PL) and swine manure (SM) at 400 and 600 degrees C, and a commonly available wood chip (WC) biochar produced at high temperature (1000 degrees'C) were incorporated to silt-loam (SL) and sandy (SY) soils on a 2% dry soil weight basis. Ryegrass was sown and moisture was adjusted to 60% water filled pore space (WFPS). The PL400 and SM400 biochars significantly increased (p < 0.05) shoot dry matter (DM) yields (SL soil) and enhanced nitrogen (N), phosphorus (P) and potassium (K) uptake by the plants in both soils, compared to the Control. All biochars significantly increased the soil carbon (C) contents compared to the Control. Total N contents were significantly greater fur PL400 and PL600 treatments in both soils. The dehydrogenase activity (DA) significantly increased fur PL400 and 5M400 treatments and was positively correlated with the volatile matter (VM) contents of the biochars, whiler beta-glucosidase activity (GA) decreased for the same treatments in both soils. All biochars significantly shifted (p <= 0.05) the bacterial community structure compared to the Control. This study suggests that pyrolysis of animal manures can produce a biochar that acts as both soil amendment and an organic fertilizer as proven by increased NPK uptake, positive liming effect and high soil nutrient availability, while WC biochar could work only in combination with fertilizers (organic as well as mineral). (C) 2016 Elsevier B.V. All rights reserved.

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