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Ammonium retention by oxidized biochars produced at different pyrolysis temperatures and residence times

机译:通过在不同热解温度和停留时间产生的氧化生物脉冲铵保留

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摘要

In order to investigate the effects of pyrolysis conditions and oxidation on the retention potential of ammonium by biochar in aqueous solution, biochars were produced from mixed maple wood at different pyrolysis temperatures (300, 400, 500, 600, 700 °C) and residence times (5, 60, 120, 400, 800 min) and adsorption and desorption was determined. Hydrogen peroxide was used to oxidize the biochars with pH values ranging from 7.6 to 2.7, with one set being adjusted to a pH of 7 afterwards. Without oxidation, varying either pyrolysis temperatures or residence times did not have a relevant effect on ammonium adsorption. When oxidized, however, ammonium adsorption was up to 3.6 and 1.6 times greater at lower higher pyrolysis temperatures and shorter longer residence times, respectively. Neutralizing the oxygen-containing surface functional groups on oxidized biochar to pH 7 further increased ammonium adsorption three to four-fold for biochars originally at a temperature of 500 °C and residence time of 5 min, but did not change adsorption of biochars pyrolyzed at 600 °C and above and residence times at 400 min and above. Adjusting the pH of unoxidized biochars had no effect on ammonium adsorption. Both pyrolysis temperature and residence time significantly influence the way oxidation changes the charge properties with respect to ammonium adsorption by woody biochar.
机译:为了探讨热解病症和氧化对水溶液中Biochar的铵的保留电位的影响,在不同热解温的混合枫木(300,400,500,600,700°C)和停留时间的混合枫木中产生生物脉。 (5,60,120,400,800分钟)和吸附和解放定。过氧化氢用于将Biochars氧化,pH值范围为7.6-2.7,然后将一个组调节至7的pH。没有氧化,改变热解温度或停留时间对铵吸附没有相关的影响。然而,当氧化时,在较高的热解温度下分别在较低的热解温度下较低的铵吸附量高达3.6%,较短的停留时间。中和在氧化生物炭上的含氧表面官能团到pH7进一步增加铵吸附3至4倍的生物脉,在500℃和5分钟的停留时间的温度下,但未改变在600处热解的生物脉冲的吸附°C及以上和400分钟和以上的停留时间。调整无氧化生物脉的pH对铵吸附没有影响。热解温度和停留时间都显着影响氧化方式改变了由木质生物炭的铵吸附的电荷性能。

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