five

Py-GC-MS of wheat straw

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Mendeley Data2026-04-09 收录
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Researchers aimed to demonstrate how four processing parameters (pyrolysis temperatures, material fineness, heating rate, and holding time) and their interactions affect 11 biochar variables, including yield at 500–700°C (micropores, mesopores, macropores, total pore volume), the ratio between mesovolume and total pore volume (SBE surface area), and perc (pore volume D) at 500–700°C (as well as the pore volume D and perc values). We want to learn how pyrolysis temperature, fineness of material, rate of heating, and retention time affect the surface morphology of biochars generated from agricultural biomass and how these variables interact with one another. Biochar may be made from a number of biomasses other than wood, and we demonstrated this by using farm biomass. Selecting pyrolysis processing parameters for the production of biochars that may be used as sorbents in various applications is now easier as a result of our findings. In addition, they serve as a point of reference for future studies. Researchers wanted to present a multivariate statistical approach to quantitatively and qualitatively analyze the main effects of four processing parameters (pyrolysis temperatures, material fineness, heating rate and holding time) and their interactions on 11 biochar variables (yield at 500–700°C, micropores, mesopores and macroporosity, total porosity and the ratio between mesopore volume and total porosity, SBE surface) and their interactions We want to learn how pyrolysis temperature, fineness of material, rate of heating, and retention time affect the surface morphology of biochars generated from agricultural biomass and how these variables interact with one another. Biochar may be made from a number of biomasses other than wood, and we demonstrated this by using farm biomass. Pyrolysis processing conditions for creating biochars that can be used in a number of applications are easier to select thanks to our discoveries. It is also a reference point for future research.
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Marcin Sajdak
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