Biochar physicochemical properties: pyrolysis temperature and feedstock kind effects
Физико-химические свойства биоугля: влияние температуры пиролиза и вида исходного сырья
2020-02-05
SCID: 54.1/aa7q4zds
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biochar physicochemical propertiescation exchange capacityfeedstock typepyrolysis temperaturesoil fertility
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Abstract (AI)
Abstract Biochar is a pyrogenous, organic material synthesized through pyrolysis of different biomass (plant or animal waste). The potential biochar applications include: (1) pollution remediation due to high CEC and specific surface area; (2) soil fertility improvement on the way of liming effect, enrichment in volatile matter and increase of pore volume, (3) carbon sequestration due to carbon and ash content, etc. Biochar properties are affected by several technological parameters, mainly pyrolysis temperature and feedstock kind, which differentiation can lead to products with a wide range of values of pH, specific surface area, pore volume, CEC, volatile matter, ash and carbon content. High pyrolysis temperature promotes the production of biochar with a strongly developed specific surface area, high porosity, pH as well as content of ash and carbon, but with low values of CEC and content of volatile matter. This is most likely due to significant degree of organic matter decomposition. Biochars produced from animal litter and solid waste feedstocks exhibit lower surface areas, carbon content, volatile matter and high CEC compared to biochars produced from crop residue and wood biomass, even at higher pyrolysis temperatures. The reason for this difference is considerable variation in lignin and cellulose content as well as in moisture content of biomass. The physicochemical properties of biochar determine application of this biomaterial as an additive to improve soil quality. This review succinctly presents the impact of pyrolysis temperature and the type of biomass on the physicochemical characteristics of biochar and its impact on soil fertility.
Key Findings
1
Biochar physicochemical properties vary widely with pyrolysis temperature and feedstock type, including pH, surface area, pore volume, CEC, volatile matter, ash, and carbon content.
2
Biochars made from animal litter and solid waste have lower surface area, carbon, and volatile-matter contents but higher CEC than those made from crop residues and wood, even at higher temperatures.
3
Differences among feedstocks are linked to variation in lignin, cellulose, and moisture contents, and these properties determine biochar suitability for improving soil fertility.
4
Increasing pyrolysis temperature produces biochar with higher specific surface area, porosity, pH, ash, and carbon content, but lower CEC and volatile matter.
5
The temperature-related changes are attributed mainly to more extensive decomposition of organic matter during high-temperature pyrolysis.
Research Object
Biochar produced from different biomass feedstocks under varying pyrolysis temperatures
Research Subject
Effects of pyrolysis temperature and feedstock type on biochar physicochemical properties and their implications for soil fertility
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2020-02-05
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