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Nitrogen recovery from wastewater using gas-permeable membranes: Impact of inorganic carbon content and natural organic matter

机译:使用透气膜从废水中回收氮:无机碳含量和天然有机物的影响

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摘要

Gas-permeable membranes coupled with low-rate aeration is useful to recover ammonia (NH4+) from livestock effluents. In this study, the role of inorganic carbon (bicarbonate, HCO3-) to enhance the N recovery process was evaluated using synthetic effluents with various NH4+ to HCO3- molar ratios of 0.5, 1.0,1.5 and 2.0. The study also evaluated the effect of increased organic matter on the NH4+ recovery using humic acids (3000-6000 mg L-1), and the N recovery from high-strength swine manure. The release of hydroxide from the HCO3- with aeration increased the wastewater pH and promoted gaseous ammonia formation and membrane uptake. At the same time, the recovery of gaseous ammonia (NH3) through the membrane acidified the wastewater. Therefore, an abundant inorganic carbon supply in balance with the NH4+ is needed for a successful operation of the technology. NH4+ removal efficiencies 96% were obtained with NH4+ to HCO3- ratios = 1. However, higher molar ratios inhibited the N recovery process resulting in lower efficiencies (65%). Fortunately, most swine manures contain ample supply of endogenous inorganic carbon and the process can be used to more economically recover the ammonia using the natural inorganic carbon instead of expensive alkali chemicals. In 4 days, the recovered NH4+ from swine manure contained 48,000 mg L-1. Finally, it was found the process was not inhibited by the increasing levels of organic matter in the wastewater evaluated. Published by Elsevier Ltd.
机译:透气膜与低速曝气结合可用于从畜禽粪便中回收氨(NH4 +)。在这项研究中,使用各种NH4 +与HCO3-摩尔比为0.5、1.0、1.5和2.0的合成废水评估了无机碳(碳酸氢盐,HCO3-)在增强N回收过程中的作用。该研究还评估了有机物增加对使用腐殖酸(3000-6000 mg L-1)回收NH4 +和从高强度猪粪中回收氮的影响。曝气从HCO3-中释放出氢氧化物提高了废水的pH值,并促进了气态氨的形成和膜的吸收。同时,通过膜回收气态氨(NH3)使废水酸化。因此,成功地操作该技术需要与NH4 +保持平衡的大量无机碳供应。当NH4 +与HCO3-的比率<= 1时,NH4 +的去除效率> 96%。但是,较高的摩尔比会抑制N的回收过程,从而降低效率(<65%)。幸运的是,大多数猪粪中都含有充足的内源性无机碳,该工艺可用于使用天然无机碳代替昂贵的碱性化学品更经济地回收氨。在4天之内,从猪粪中回收的NH4 +含量为48,000 mg L-1。最后,发现该过程不受所评估废水中有机物含量增加的抑制。由Elsevier Ltd.发布

著录项

  • 来源
    《Water Research》 |2018年第15期|201-210|共10页
  • 作者单位

    Miguel Hernandez Univ UMH, Orihuela Polytech Sch, Res Grp Appl Agrochem & Environm, Carretera Beniel Km 3-2, Alicante 03312, Spain;

    ARS, USDA, Coastal Plains Soil Water & Plant Res Ctr, 2611 W Lucas St, Florence, SC 29501 USA;

    Univ Alicante, Univ Inst Water & Environm Sci, Carretera San Vicente Del Raspeig S-N, Alicante 03690, Spain;

    Pablo de Olavide Univ, Dept Biol Mol & Biochem Engn, Carretera Utrera,Km 1, Seville 41013, Spain;

    Miguel Hernandez Univ UMH, Orihuela Polytech Sch, Res Grp Appl Agrochem & Environm, Carretera Beniel Km 3-2, Alicante 03312, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ammonia recovery; Ammonia capture; Gas-permeable membranes; Livestock wastewater; Ammonia emissions control;

    机译:氨回收氨捕集透气膜畜禽废水氨排放控制;

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