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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Synthesis of ammonia molecularly imprinted adsorbents and ammonia adsorption separation during sludge aerobic composting
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Synthesis of ammonia molecularly imprinted adsorbents and ammonia adsorption separation during sludge aerobic composting

机译:氨分子印迹吸附剂的合成和污泥有氧堆肥期间的氨吸附分离

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摘要

Ammonia (NH3) is the predominant harmful odor emitted from sludge aerobic composting plants, however, this NH3 could be recycled and used as energy or nitrogen fertilizer. Therefore, the aim of this study was to use molecular imprinting technology to prepare an adsorbent that could separate NH3 from mixed gases. An NH3 molecular imprinted polymer (NH3-MIP) was prepared by precipitation polymerization and optimal synthesis was determined by testing several different ratios of reaction components. NH3 adsorption capacity of the optimal NH3-MIP was 1.62 times that of non-imprinted material. NH3 separation factors increased from 154 (dimethyl sulfides) and 217 (dimethyl disulfides) for non-imprinted material, to 213 (dimethyl sulfides) and 302 (dimethyl disulfides) for the NH3-MIP. The adsorption mechanism was identified as physical adsorption and hydrogen bonding between H-O on the -COOH in NH3-MIP and the nitrogen in NH3. Effective desorption at 150 degrees C with vacuum maintained over 95% of the NH3 adsorption capacity.
机译:氨(NH3)是污泥有氧堆肥植物排放的主要有害气味,但是,该NH3可以再循环并用作能量或氮肥。因此,本研究的目的是使用分子印迹技术制备可以将来自混合气体分离NH 3的吸附剂。通过沉淀聚合制备NH 3分子印迹聚合物(NH 3 -MIP),通过测试几种不同的反应组分比例测定最佳合成。 NH3最佳NH3-MIP的吸附能力为非印迹材料的1.62倍。 NH3分离因子从154(二甲基硫化物)和217(二甲基二硫化物)增加到非印迹材料,NH 3-MIP的213(二甲基硫化物)和302(二甲基二硫化物)。吸附机理在NH3-MIP中的-COOH上的H-O与NH 3中的氮气之间的物理吸附和氢键合。在150摄氏度下有效解吸,真空保持超过95%的NH 3吸附能力。

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