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AbstractAbstract
[en] Soil quality decline represents a significant constraint on the productivity and sustainability of agriculture in the tropics. In this study, the influence of biochar, compost and mixtures of the two on soil fertility, maize yield and greenhouse gas (GHG) emissions was investigated in a tropical Ferralsol. The treatments were: 1) control with business as usual fertilizer (F); 2) 10 t ha"−"1 biochar (B) + F; 3) 25 t ha"−"1 compost (Com) + F; 4) 2.5 t ha"−"1 B + 25 t ha"−"1 Com mixed on site + F; and 5) 25 t ha"−"1 co-composted biochar–compost (COMBI) + F. Total aboveground biomass and maize yield were significantly improved relative to the control for all organic amendments, with increases in grain yield between 10 and 29%. Some plant parameters such as leaf chlorophyll were significantly increased by the organic treatments. Significant differences were observed among treatments for the δ"1"5N and δ"1"3C contents of kernels. Soil physicochemical properties including soil water content (SWC), total soil organic carbon (SOC), total nitrogen (N), available phosphorus (P), nitrate-nitrogen (NO_3"− N), ammonium-nitrogen (NH_4"+-N), exchangeable cations and cation exchange capacity (CEC) were significantly increased by the organic amendments. Maize grain yield was correlated positively with total biomass, leaf chlorophyll, foliar N and P content, SOC and SWC. Emissions of CO_2 and N_2O were higher from the organic-amended soils than from the fertilizer-only control. However, N_2O emissions generally decreased over time for all treatments and emission from the biochar was lower compared to other treatments. Our study concludes that the biochar and biochar–compost-based soil management approaches can improve SOC, soil nutrient status and SWC, and maize yield and may help mitigate greenhouse gas emissions in certain systems. - Graphical abstract: Grain yield, cation exchange capacity (CEC), soil organic carbon (SOC), soil water content (SWC) and N_2O emission as influenced by fertilizer (F), biochar (B), compost (Com), Com + B and co-composted biochar–compost (COMBI). - Highlights: • Soil was amended with biochar, compost and their mixture at field level. • Maize grain yield was significantly increased by 10–29% by organic amendments. • Organic amendments significantly increased leaf chlorophyll and N and P content. • Organic amendments significantly improved soil water content, OC, N, P and CEC. • N_2O emission from biochar was the lowest over time compared to other treatments.
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S0048-9697(15)31035-4; Available from http://dx.doi.org/10.1016/j.scitotenv.2015.11.054; Copyright (c) 2015 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.; Country of input: International Atomic Energy Agency (IAEA)
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Journal Article
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CARBON COMPOUNDS, CARBON ISOTOPES, CARBON OXIDES, CARBOXYLIC ACIDS, CEREALS, CHALCOGENIDES, ELEMENTS, ENERGY SOURCES, EVEN-ODD NUCLEI, FLUIDS, GASEOUS WASTES, GASES, GRAMINEAE, HETEROCYCLIC ACIDS, HETEROCYCLIC COMPOUNDS, HYDROGEN COMPOUNDS, ISOTOPES, LIGHT NUCLEI, LILIOPSIDA, MAGNOLIOPHYTA, MOISTURE, NITROGEN COMPOUNDS, NITROGEN OXIDES, NONMETALS, NUCLEI, ORGANIC ACIDS, ORGANIC COMPOUNDS, ORGANIC NITROGEN COMPOUNDS, ORGANIC WASTES, OXIDES, OXYGEN COMPOUNDS, PHYTOCHROMES, PIGMENTS, PLANTS, PORPHYRINS, PROTEINS, PYROLYSIS PRODUCTS, RENEWABLE ENERGY SOURCES, STABLE ISOTOPES, WASTES
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