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首页> 外文期刊>Water, Air, and Soil Pollution >Removal of Organic Pollutants from Effluent of Anaerobic Digester Using Hydrochars Produced from Faecal Simulant and Sewage Sludge
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Removal of Organic Pollutants from Effluent of Anaerobic Digester Using Hydrochars Produced from Faecal Simulant and Sewage Sludge

机译:使用粪便模拟器和污水污泥产生的氢螺旋桨从厌氧消化器的流出物中除去有机污染物

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Hydrochars produced from hydrothermal carbonisation of faecal simulant (FS) at 180 degrees C for 30 min and sewage sludge treated via CAMBI process at 165 degrees C for 30 min were used for adsorption of organic pollutants in effluent from an anaerobic digester (AD). The adsorption potential of the hydrochars investigated was compared with that of a commercial powdered activated carbon (PAC). It was found that the CAMBI and FS hydrochars were effective only after chemical activation. KOH activation increased chemical oxygen demand (COD) removal from 33.0 to 59.6% and 75.2% for FS and CAMBI, respectively. Extra activation with HCl improved the adsorption efficiency of FS, increasing COD removal to 79.3%, but not for the CAMBI hydrochar even though its surface area was increased. Acidic pH aided organics removal for both hydrochars. PAC adsorption capacity was the highest ( 90%), and this was not affected by pH. All the adsorbents could successfully remove the organics in a very short time as 30 min. The optimum dosage of the hydrochars to reach a high uptake of organics was 30.0 g/L. The adsorption reaction followed a pseudo-second-order kinetic model for all the hydrochars. The adsorption onto the hydrochars correlated well with Temkin isotherm model and followed a type II and IV isotherm type, except PAC which was described by the Langmuir isotherm with a high adsorption capacity of 400.0 mg/g. The study demonstrated that hydrochars of FS and CAMBI activated with KOH are efficient and sustainable adsorbents for the removal of organics from AD effluent.
机译:在180℃下,从粪便模拟剂(FS)的水热碳化碳化氢碳化液30分钟,通过CAMBI处理处理30分钟30分钟的污水污泥用于吸附来自厌氧消化器(AD)的流出物中的有机污染物。研究了研究的羟基的吸附潜力与商业粉末活性炭(PAC)进行了比较。发现CAMBI和FS Hydrochars仅在化学活化后有效。 KOH活化将化学需氧量增加(COD)分别从33.0分别从33.0分别移除至59.6%和75.2%的FS和CAMBI。额外的活化HCl改善了FS的吸附效率,将COD去除增加到79.3%,但即使其表面积增加,也不适用于CAMBI氢淀粉。酸性pH辅助有机物去除水质。 PAC吸附能力最高(> 90%),这不受pH的影响。所有吸附剂都可以在30分钟内成功地除去有机物。羟基妥克达到高吸收有机物的最佳剂量为30.0克/升。吸附反应遵循所有水质的伪二阶动力学模型。用Temkin等温线模型的吸附与Temkin等温线孔隙均匀,然后是II型和IV等温型,除PAC以朗米尔等温线描述为400.0mg / g的高吸附容量。该研究表明,用KOH活化的FS和CAMBI的羟丙特是有效且可持续的吸附剂,用于从AD流出物中去除有机物。

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