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首页> 外文期刊>Waste Disposal & Sustainable Energy >Treatment of wastewater from food waste hydrothermal carbonization via Fenton oxidization combined activated carbon adsorption
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Treatment of wastewater from food waste hydrothermal carbonization via Fenton oxidization combined activated carbon adsorption

机译:餐厨垃圾水热炭化水热炭化联合活性炭吸附法处理

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摘要

Hydrothermal carbonization (HTC) of food waste can produce hydrochar for further utilization as high-quality fuel or carbon materials, but the by-product of liquid effluent, named HTC wastewater, has a high chemical oxygen demand (COD) content and other organic pollutants. This study focused on the feasibility of Fenton oxidation combined with activated carbon (AC) to reduce COD in HTC wastewater. The effects of different parameters including pH, dosage of hydrogen peroxide, molar ratio of Fe~(2+)/H2O2, and reaction time were tested and discussed. Eventually, through the optimized Fenton oxidation (pH = 3, H2O2 dosage=1.5 mol/L, Fe~(2+)/H2O2 =1:15, reaction time = 60 min) combined optimized AC adsorption process (AC dosage = 30 g/L), the COD value reduced from 42,000 mg/L to 3075 mg/L, indicating a COD removal efficiency of 92.7% and a color removal ratio of 91.9%, respectively. The comparison of GC/MS (gas chromatography mass spectrometer) and FTIR (Fourier transform infrared spectrometer) of liquid residual from different treatment methods also indicated that the types of organic substances in HTC wastewater were significantly reduced through Fenton oxidation and AC adsorption.
机译:水热碳化(HTC)的食物浪费为进一步利用生产hydrochar高质量的燃料或碳材料,但是的副产品液态流出物,名叫HTC废水化学需氧量高和其他有机污染物(COD)内容。研究集中于芬顿的可行性氧化与活性炭(AC)相结合减少HTC废水中COD。不同的参数包括pH值、剂量过氧化氢,摩尔比率的Fe ~(2 +) /过氧化氢,和反应时间进行了测试和讨论。最终,通过优化芬顿氧化(pH = 3,过氧化氢用量= 1.5 mol / L,Fe ~(2 +) /过氧化氢= 1:15,反应时间= 60分钟)结合优化交流(AC吸附过程剂量= 30 g / L), COD值降低42000 mg / L到3075 mg / L,表明鳕鱼去除效率92.7%,除颜色分别的比例91.9%。GC / MS(气相色谱质谱仪)和红外光谱(傅里叶变换红外光谱仪)液体残留从不同的治疗方法还表示,有机的类型物质在HTC废水明显减少通过芬顿氧化和交流吸附。

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