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Preparation and Application of Biochar from Brewery`s Spent Grain and Sewage Sludge

机译:啤酒厂废渣和污泥生物炭的制备及应用

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Brewery`s spent grain (BSG) and sewage sludge (SS) were used as raw material at the temperature from 400°C to 700 °C and limited oxygen (O2<5%) conditions to prepare biochar (BC). One aim is to examine the BC characterization prepared under different temperatures and various proportions of SS. Another aim is to find the optimum preparation conditions of BC for treating wastewater. Results showed BC had more obvious physical and chemical variation between 400°C and 500°C than temperature 600°C and 700°C. pH was followed by 700°C > 600°C > 500°C >400°C increased from 6.0 to 10.1. FT-IR results showed: BC rich in carboxyl and phenolic hydroxyl which were surface oxygen functional groups. Electron microscope scanning (EMS) analysis results indicated: when the temperature was 400°C, the surface of BC formed tiny holes, but was fuzzy; with the pyrolysis temperature increasing, plug of the hole opened and walls became thinner. BC adsorption results showed: under same pyrolysis temperature, adsorption effects were best under the proportion of SS 80% for ammonia-nitrogen, 100% for phosphorus-containing wastewater, and 10% for chromium (VI) wastewater. BC prepared under higher temperature had the better removal effect for wastewater.
机译:以啤酒厂的废谷物(BSG)和污水污泥(SS)为原料,在400°C至700°C的温度和有限的氧气(O2 <5%)条件下制备生物炭(BC)。一个目的是研究在不同温度和不同比例的SS下制备的BC特性。另一个目的是找到用于处理废水的BC的最佳制备条件。结果表明,在600°C和700°C的温度下,BC在400°C和500°C之间具有更明显的物理和化学变化。随后将pH从700升高到600°C,从600升高到10.1,温度从600升高到10.1。 FT-IR结果表明:BC富含羧基和酚羟基,它们是表面氧官能团。电子显微镜扫描(EMS)分析结果表明:温度为400℃时,BC表面形成细小孔,但表面模糊。随着热解温度的升高,孔的塞子打开,壁变薄。 BC吸附结果表明:在相同的热解温度下,氨氮的SS比例为80%,含磷废水的比例为100%,铬(VI)的比例为10%时,吸附效果最佳。高温制备的BC对废水的去除效果更好。

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