Properties of biochar derived from wood and high-nutrient biomasses with the aim of agronomic and environmental benefits
Свойства биоугля, полученного из древесины и богатой питательными веществами биомассы, для агрономических и экологических целей
2017-05-11
SCID: 54.1/7kaazk7v
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biocharcation exchange capacityliming agentspyrolysis temperaturesoil carbon storage
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Abstract (AI)
Biochar production and use are part of the modern agenda to recycle wastes, and to retain nutrients, pollutants, and heavy metals in the soil and to offset some greenhouse gas emissions. Biochars from wood (eucalyptus sawdust, pine bark), sugarcane bagasse, and substances rich in nutrients (coffee husk, chicken manure) produced at 350, 450 and 750°C were characterized to identify agronomic and environmental benefits, which may enhance soil quality. Biochars derived from wood and sugarcane have greater potential for improving C storage in tropical soils due to a higher aromatic character, high C concentration, low H/C ratio, and FTIR spectra features as compared to nutrient-rich biochars. The high ash content associated with alkaline chemical species such as KHCO3 and CaCO3, verified by XRD analysis, made chicken manure and coffee husk biochars potential liming agents for remediating acidic soils. High Ca and K contents in chicken manure and coffee husk biomass can significantly replace conventional sources of K (mostly imported in Brazil) and Ca, suggesting a high agronomic value for these biochars. High-ash biochars, such as chicken manure and coffee husk, produced at low-temperatures (350 and 450°C) exhibited high CEC values, which can be considered as a potential applicable material to increase nutrient retention in soil. Therefore, the agronomic value of the biochars in this study is predominantly regulated by the nutrient richness of the biomass, but an increase in pyrolysis temperature to 750°C can strongly decrease the adsorptive capacities of chicken manure and coffee husk biochars. A diagram of the agronomic potential and environmental benefits is presented, along with some guidelines to relate biochar properties with potential agronomic and environmental uses. Based on biochar properties, research needs are identified and directions for future trials are delineated.
Key Findings
1
Chicken manure and coffee husk biochars had high ash contents and alkaline phases, including KHCO3 and CaCO3, making them potential liming agents for acidic soils.
2
Chicken manure and coffee husk biochars produced at 350 and 450°C exhibited high cation exchange capacity, supporting their use for increasing soil nutrient retention.
3
High calcium and potassium contents in chicken manure and coffee husk biochars could partly replace conventional Ca and K fertilizers, indicating substantial agronomic value.
4
Increasing pyrolysis temperature to 750°C strongly reduced the adsorptive capacities of chicken manure and coffee husk biochars; agronomic value was primarily governed by feedstock nutrient richness.
5
Wood- and sugarcane-derived biochars showed greater potential for carbon storage in tropical soils because of higher aromaticity, carbon concentration, and lower H/C ratios.
Research Object
Biochars produced from wood, sugarcane bagasse, coffee husk, and chicken manure at different pyrolysis temperatures
Research Subject
The biochars’ physicochemical properties and their agronomic and environmental potential, including carbon storage, liming, nutrient supply and retention, and adsorption capacity
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2017-05-11
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