Preparation of high-yield N-doped biochar from nitrogen-containing phosphate and its effective adsorption for toluene

利用含氮磷酸盐制备高产率氮掺杂生物炭及其对甲苯的有效吸附

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Abstract

Novel biochar was prepared from plant-based biomass by the addition of nitrogen-containing phosphates (NCPs), including ammonia phosphate (AP), ammonia polyphosphate (APP) and urea phosphate (UP). The results demonstrated that with the addition of NCPs, the yield of biochar could be significantly increased from about 30% to up to about 60%. The pore structure of the biochar was significantly improved, and the AP-prepared biochar obtained a higher S (BET) and V (tot) of 798 m(2) g(-1) and 0.464 cm(3) g(-1), respectively. Moreover, the surface chemistry of the NCP-prepared biochar was affected, and N heteroatoms could be successfully doped on the surface of biochar, up to 4.16%. Furthermore, through TG-FTIR and XPS analysis, some possible interactions between plant-based biomass and NCPs during the pyrolysis process were proposed to explore the mechanisms of the preparation process, including the P route and N route, in which the H(3)PO(4) and NH(3) gradually generated during the heating process played the dominant roles for the high yield N-doped biochar. All the NCP-prepared biochar presented good toluene adsorption capacities from 175.9 to 496.2 mg g(-1), which were significantly higher than that of blank char (6.5 mg g(-1)).

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