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首页> 外文期刊>Catalysts >Kinetics and Nanoparticle Catalytic Enhancement of Biogas Production from Wastewater Using a Magnetized Biochemical Methane Potential (MBMP) System
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Kinetics and Nanoparticle Catalytic Enhancement of Biogas Production from Wastewater Using a Magnetized Biochemical Methane Potential (MBMP) System

机译:使用磁化生物化学甲烷电位(MBMP)系统从废水中产生的动力学和纳米粒子催化增强

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This study presents magnetized nanoparticles (NPs) as a catalyst to accelerate anaerobic digestion (AD) potential for clean and ecofriendly energy (biogas) from wastewater settings. The effects of iron oxides (Ms) and aluminum sulphate (Alum) were investigated using two chronological experiments: (i) the Jar test technique to generate residue slurry as organic fertilizer potential and (ii) a magnetized biochemical methane potential (MBMP) system for biogas production at mesophilic conditions for 21 days. X-ray diffraction and Fourier Transform Infrared spectroscopy were carried out to establish the Ms Crystallite and active functional groups respectively. Scanning electronic microscopy coupled with energy dispersive X-ray spectrometer and elemental analysis were used to track and confirm NPs inclusion after the post-AD process. Coagulation at 50 mg/L and magnetic exposure time of 30 min showed above 85% treatability performance by Ms as compared to 70% for Alum. Owing to the slow kinetics of the AD process, additional NPs content in the digesters coupled with an external magnetic field improved their performance. Cumulative biogas yields of 1460 mL/d 610 mL/d 505 mL/d for Ms Control Alum respectively representing 80% 61% 52% of CH 4 were attained. The modified Gompertz model shows that the presence of NPs shortens the lag phase of the control system with kinetics rate constants of 0.285 1/d (control) to 0.127 1/d (Ms) 0.195 1/d (Alum).
机译:该研究呈磁化纳米颗粒(NPS)作为催化剂,以加速废水环境中清洁和生态繁体能量(沼气)的厌氧消化(AD)电位。使用两次时间实验研究了氧化铁(MS)和硫酸铝(ALUM)的影响:(i)罐试验技术,以产生残留浆料作为有机肥料电位和(ii)磁化生化甲烷电位(MBMP)系统沼气在嗜渗疾病中产生21天。进行X射线衍射和傅里叶变换红外光谱分析以分别建立MS微晶和活性官能团。扫描电子显微镜与能量分散X射线光谱仪和元素分析用于跟踪并确认在广告后工艺后的NPS包含。在50mg / L的凝结和30分钟的磁曝光时间显示出高于85%的处理性能,与ALUM的70%相比,MS为70%。由于广告过程的慢速动力学,消化器中的额外NPS含量与外部磁场相结合,提高了它们的性能。累积沼气产量为1460mL / d> 610ml / d> 505ml / d用于分别表示80%61%> 52%的CH 4的Alum。修饰的Gompertz模型表明,NPS的存在缩短了控制系统的滞后阶段,其动力学速率常数为0.2851 / d(对照)至0.127 1 / d(MS)<0.195 1 / D(ALUM)。

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