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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Removal of nitrogen and phosphorus pollutants from water by FeCl3-impregnated biochar
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Removal of nitrogen and phosphorus pollutants from water by FeCl3-impregnated biochar

机译:通过FECL3浸渍生物炭从水中除去氮和磷污染物

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摘要

Chemical fertilizers and pesticides used are currently increasing alongside the human population grew and agriculture spread, resulting in high nitrogen (TN) and phosphorus (TP) contents in farmland soil and the surrounding water-bodies. Fabricating economic but effective metal impregnated biochar, as a sorbent to remove inorganic pollutants from water, is important to prevent eutrophication. In the present work, iron-loaded biochar was prepared by impregnating by FeCl3 and following pyrolyzing at 550 degrees C. The chemical functional groups, surface morphologies, and internal crystal structures of the Fe-loaded biochar (Fe-B) were characterized by Fourier transform infrared spectroscopy (FT-IR), scanning electron microscopy (SEM), and X-ray diffraction, respectively. Results indicated that the preparing process induced a layer of Fe oxide at the surface of biochar, and changed the surface morphology and internal crystal structure. The FeCl3 content in soaking solution had remarkable effects on pore structure formation, surface morphology features and removal efficiencies of TN and TP from wastewater by biochar. The Langmuir model indicated that 1%-Fe impregnated biochar (B1) and the 10%-Fe impregnated biochar (B10) exhibited maximum adsorption capacity of TN and TP, which reached to more than 14 mg/g for TN and 90 mg/g for TP, respectively. B10 could remove over 85% of TP from artificial wastewater and less than 0.5% of TP was released in desorption experiments. Similarly, B1 could remove 60% of TN while only 1% was released in desorption experiments. B1 and B10 could remove 50% of TN and 80% of TP from the actual agricultural wastewater, respectively. This confirmed that Fe-impregnated biochar could effectively remove inorganic nutrients from wastewater and seal them in the prevention of secondary pollution. The Fe-B was characterized by FT-IR and SEM before and after its application as an adsorbent in agricultural wastewater, and results revealed that the removal of TN and TP was primarily attributed to the well-developed pore structure and the Fe oxides fixed on the surface of biochar. Inorganic nitrogen and phosphorus in wastewater are removed by surface complexation, coprecipitation, electrostatic interaction and ion exchange. In conclusion, the present work demonstrated that the Fe-B is an effective adsorbent for removing TN and TP pollutants from nutrient-rich wastewaters.
机译:使用的化肥和杀虫剂目前正在增加人民种群增长和农业传播,导致农田土壤和周围水体中的高氮(TN)和磷(TP)含量。制造经济但有效的金属浸渍生物炭,作为除去水的无机污染物的吸附剂,对预防富营养化是重要的。在本作本作中,通过FECL3浸渍并在550℃下浸渍来制备载载生物炭。化学官能团,表面形貌和Fe-B)的化学官能团(Fe-B)的内晶结构进行了傅立叶转化红外光谱(FT-IR),扫描电子显微镜(SEM)和X射线衍射。结果表明,制备方法在生物炭表面诱导了一层二氧化碳,并改变了表面形态和内晶结构。浸泡溶液中的FECL3含量对来自BioChar的废水的TN和TP的孔结构形成,表面形态特征和去除效应具有显着作用。 Langmuir模型表明,1%-FE浸渍的生物炭(B1)和10%-Fe浸渍的生物炭(B10)表现出TN和TP的最大吸附能力,其达到TN和90mg / g的14mg / g对于TP。 B10可以从人造废水中除去超过85%的TP,在解吸实验中释放了小于0.5%的TP。类似地,B1可以去除60%的TN,而在解吸实验中仅释放1%。 B1和B10分别可以分别从实际农业废水中去除50%的TN和80%TP。这证实了Fe浸渍的生物炭可以有效地除去废水中的无机营养物,并在预防二次污染中密封它们。 FT-IR和SEM的特征在于其在农业废水中作为吸附剂之前和之后,结果表明,TN和TP的去除主要归因于发达的孔结构和固定的Fe氧化物。生物炭表面。通过表面络合,共沉淀,静电相互作用和离子交换除去废水中的无机氮和磷。总之,本作者证明Fe-B是用于从富含营养的废水中去除TN和TP污染物的有效吸附剂。

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