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Ammonia recovery from food waste digestate using solar heat-assisted stripping-absorption

机译:使用太阳能热辅助剥离吸收的食物垃圾消化氨恢复

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The highest costs of stripping-absorption processes for ammonia recovery are related to energy (for heating and air supply) and chemical addition (for pH adjustment). In this paper, a simplified system that used no chemicals, and a renewable source of energy for heating, was tested to recover nitrogen as ammonium sulfate from food waste digestate. pH adjustment was achieved by CO2 stripping, and vacuum tube solar collectors were used to provide heating. The effect of different temperatures (25 degrees C and 45 degrees C) and gas to liquid ratios (1700 and 2600) on ammonia removal and recovery were assessed. Ammonia removal efficiencies higher than 91% were achieved for all evaluated experimental conditions. The solar heater showed adequate capacity to increase the temperature of the liquid digestate by 21 degrees C and maintain the temperature at 45 degrees C throughout the experiment. Tests carried out at 45 degrees C achieved the highest ammonia removal efficiency (98%) at the lowest evaluated G/L ratio (1700). Better absorption efficiencies could potentially have been achieved if lower inlet airflow rates and packing material had been used in the absorption column. (C) 2020 Elsevier Ltd. All rights reserved.
机译:氨恢复的剥离吸收过程的最高成本与能量(用于加热和空气供应)和化学添加(用于调节)。在本文中,测试了一种使用化学物质的简化系统,以及用于加热的可再生能源来源,以回收来自食品废物消化的硫酸铵作为硫酸铵。通过CO 2汽提来实现pH调节,并且使用真空管太阳能收集器提供加热。评估不同温度(25℃和45℃)和气体对液体比率(1700和2600)对氨的去除​​和恢复的影响。对于所有评估的实验条件,实现了高于91%的氨去除效率。太阳能加热器显示出足够的能力,使液体消化的温度达到21℃,并在整个实验中将温度保持在45℃。以45摄氏度进行的测试以最低评估的G / L比(1700)实现最高氨去除效率(98%)。如果在吸收柱中使用较低的入口气流速率和包装材料,则可能实现更好的吸收效率。 (c)2020 elestvier有限公司保留所有权利。

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