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Adsorption behaviour of pymetrozine by four kinds of biochar from aqueous solution

机译:四种生物炭在水溶液中对吡咯嗪的吸附行为

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A laboratory experiment was performed to investigate the potential of biochar (BC) as an adsorbent for removing pymetrozine from aqueous solution. The adsorption data were well described by Langmuir isotherm, with maximum pymetrozine adsorption capacities of 13.8, 20.6, 11.0 and 18.8 mg g~(-1) for bush-, wheat straw-, peanut- and corn-derived BC in a single solution at 25 C, respectively. The functional groups of BCs were -NH (1628.25 cm ~(-1)), -OH (3443.78 cm~(-1)), -PO_4 (1089.2 cm ~(-1)) and -C-Cl (769.23 cm~(-1)), which were responsible for binding pymetrozine. The adsorption capacity of BC was increased by 7.2-106.4% at different solution pH (1, 3, 5 and 7). The removal efficiency increased with the addition of BCs and over 70% pymetrozine removal was observed upon addition of up to 8 g l~(-1). The rate of pymetrozine adsorption was fast, with 50-80% of the adsorption occurring in the first-120 minutes, followed by a much slower approach to equilibrium. The ΔG values decreased (increasingly negative) from -165.3% to 235.9% at 298 K compared with 318 K for the adsorption of pymetrozine onto different BCs in a single solution. The study results indicate that plant residue- or agricultural waste-derived BC can act as an effective surface sorbent, but their ability to treat mixed waste streams needs to be carefully evaluated on an individual basis.
机译:进行了一项实验室实验,以研究生物炭(BC)作为吸附剂从水溶液中去除pymetrozine的潜力。 Langmuir等温线很好地描述了吸附数据,单一溶液中,灌木,小麦秸秆,花生和玉米衍生的BC的最大pymetrozine吸附容量分别为13.8、20.6、11.0和18.8 mg g〜(-1)。 25℃。 BCs的官能团是-NH(1628.25 cm〜(-1)),-OH(3443.78 cm〜(-1)),-PO_4(1089.2 cm〜(-1))和-C-Cl(769.23 cm〜 (-1)),它们负责与pymetrozine结合。在不同溶液pH(1、3、5和7)下,BC的吸附能力提高了7.2-106.4%。随着BC的加入,去除效率提高,当加入至多8 g l〜(-1)时,观察到的吡咯嗪的去除率超过70%。 pymetrozine的吸附速度很快,在最初的120分钟内吸附了50-80%的吸附,然后缓慢得多的达到平衡。在单一溶液中,将pymetrozine吸附在不同BCs上的318 G与318 K相比,在298 K时ΔG值从-165.3%降低(逐渐为负)至235.9%。研究结果表明,源自植物残渣或农业废物的BC可以作为有效的表面吸附剂,但是它们对混合废物流的处理能力需要单独进行仔细评估。

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