Department of Chemical Engineering, COMSATS University Islamabad (CUI), Lahore Campus, Defense Road, Off Raiwind Road, Lahore, Pakistan.
Department of Chemical Engineering, COMSATS University Islamabad (CUI), Lahore Campus, Defense Road, Off Raiwind Road, Lahore, Pakistan.
Chemosphere. 2023 May;324:138197. doi: 10.1016/j.chemosphere.2023.138197. Epub 2023 Feb 23.
The intensification of biochar into fluidized bed membrane bioreactor was investigated to mitigate membrane fouling. Different biochars from algal biomass were produced and used as biomaterials for wastewater treatment. In this study, different macroalgal biochar was synthesized at different pyrolysis temperatures and characterized using Scanning Electron Microscopy (SEM), X-ray Diffraction (XRD), Brunauer Emmett-Teller (BET) and Fourier transform infrared spectroscopy (FTIR) techniques to implicate their effect on membrane fouling reduction in fluidized bed membrane bioreactor. The combined effect of macroalgal biochars and biocarriers with gas sparging was evaluated for fouling mitigation. Macroalgal biochar curtailed membrane fouling effectively at low gas sparging rate. Transmembrane pressure (TMP) was reduced to 0.053 bar; under the fluidization of biochar-650 and biocarriers with gas sparging; from 0.27 bar (gas sparging only). Combined effect of gas sparging, biocarriers and biochar-650 instigated 92.1% fouling reduction in comparative to gas sparging alone. Mechanical scouring driven by biocarriers could reduce fouling due to removing surface deposit of foulants from membrane surface effectively and biochar can efficiently adsorb foulants because of its active functional groups resulting in reduction of colloidal fouling. The addition of divalent ions (Ca) further enhanced the fouling reduction in fluidized bed membrane bioreactor.
研究了将生物炭强化到流化床膜生物反应器中以减轻膜污染。使用不同的藻类生物质生产了不同的生物炭,并将其用作废水处理的生物材料。在这项研究中,不同的大型海藻生物炭在不同的热解温度下合成,并使用扫描电子显微镜 (SEM)、X 射线衍射 (XRD)、BET 和傅里叶变换红外光谱 (FTIR) 技术进行了表征,以说明它们对减轻流化床膜生物反应器中膜污染的影响。评估了大型海藻生物炭和生物载体与气体喷射的组合效应对减轻污染的作用。大型海藻生物炭在低气体喷射速率下有效地减少了膜污染。通过在生物炭-650 和生物载体的流化下进行气体喷射,可将跨膜压力 (TMP) 从 0.27 降低到 0.053 巴;从 0.27 巴(仅气体喷射)。与单独气体喷射相比,气体喷射、生物载体和生物炭-650 的组合效应促使污染减少了 92.1%。生物载体驱动的机械冲刷可以有效地从膜表面去除污染物的表面沉积物,从而减少污染,生物炭可以通过其活性官能团有效地吸附污染物,从而减少胶体污染。添加二价离子 (Ca) 进一步增强了流化床膜生物反应器中的污染减少。