2021
DOI: 10.1007/s11356-021-12796-y
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Preparation of porous carbon based on partially degraded raw biomass by Trichoderma viride to optimize its toluene adsorption performance

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Cited by 11 publications
(3 citation statements)
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“…There were broad and weak diffraction peaks at around 2y = 231 and 441, which correspond to the (002) and (100) crystal planes of graphitized carbon, respectively. 36,37 XRD results showed that the prepared porous carbon had an amorphous carbon structure. The Raman spectrum of porous carbon is shown in Fig.…”
Section: Njc Papermentioning
confidence: 98%
“…There were broad and weak diffraction peaks at around 2y = 231 and 441, which correspond to the (002) and (100) crystal planes of graphitized carbon, respectively. 36,37 XRD results showed that the prepared porous carbon had an amorphous carbon structure. The Raman spectrum of porous carbon is shown in Fig.…”
Section: Njc Papermentioning
confidence: 98%
“…Despite being the species reviewed here with less recent literature regarding its biocontrol traits, T. viride has been studied as a plant growth promoter or enhancer of desirable traits in plants [ 204 , 205 ] or as an important organism in bioremediation or preparation of surfaces for bioremediation of toxic organic compounds such as toluene [ 206 ] or TNT [ 207 ] or heavy metals such as lead [ 208 ]. These make an interesting Trichoderma species to study further in various possible applications, not limited to agricultural uses.…”
Section: Biocontrol Potential Of Registered Trichoderma ...mentioning
confidence: 99%
“…The as-synthesized novel GFS/MIL-100(Fe) was reusable and it still maintained a satisfactory dye removal efficiency even after a three-time reuse. & Wang et al (2021) showed that activated carbon made by corn bran with microbial pretreatment (Trichoderma viride) could boost its specific surface area and total pore volume as high as 1896 m 2 /g and 1.04 cm 3 /g, respectively.…”
Section: Highlights Of Selected Papersmentioning
confidence: 99%