首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Engineered hydrochar composites for phosphorus removal/recovery: Lanthanum doped hydrochar prepared by hydrothermal carbonization of lanthanum pretreated rice straw
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Engineered hydrochar composites for phosphorus removal/recovery: Lanthanum doped hydrochar prepared by hydrothermal carbonization of lanthanum pretreated rice straw

机译:用于除磷/回收磷的工程水煤复合材料:通过镧预处理的稻草的水热碳化制备的掺镧水煤炭

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摘要

Engineered hydrochar composites (EHC) were synthesized by hydrothermal carbonization (HTC) of lanthanum pretreated rice straw. The as-prepared composite with about 30% lanthanum content showed greater P removal potential than La(OH)_3, indicating the synergistic effect of hydrochar and lanthanum in P removal. The adsorption results showed that EHC showed great P adsorption capacities (>50 mg P g~(-1)) in the pH range of 2.5-10.5, and the presence of competing anions had little negative effects on P adsorption on EHC. The equilibrium time for P adsorption on EHC was considerably reduced under acid condition (12 h) compared to alkaline condition (48 h). The maximum adsorption capacity was 61.57 mg P g~(-1) according to Langmuir isotherms. These results suggested that EHC was highly effective in P adsorption in a wide range of pH and the presence of competing anions, thus EHC could be a promising adsorbent for phosphorus removal/recovery from wastewater.
机译:通过镧预处理的稻草的水热碳化(HTC)合成了工程化的水焦复合材料(EHC)。所制备的具有约30%镧含量的复合材料显示出比La(OH)_3更大的P去除潜力,表明水煤和镧在P去除中具有协同作用。吸附结果表明,EHC在2.5-10.5的pH范围内对P的吸附能力强(> 50 mg P g〜(-1)),竞争性阴离子的存在对EHC的P吸附几乎没有负面影响。与碱性条件(48 h)相比,酸性条件(12 h)下P吸附在EHC上的平衡时间大大减少。根据Langmuir等温线,最大吸附容量为61.57 mg P g〜(-1)。这些结果表明,EHC在广泛的pH值和竞争性阴离子的存在下对P的吸附非常有效,因此EHC可能是一种有望用于废水中磷的去除/回收的吸附剂。

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