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Influence of diatomite addition on membrane fouling and performance in a submerged membrane bioreactor.

Bioresource technology (2010-08-06)
Xiao-Li Yang, Hai-Liang Song, Ji-Lai Lu, Da-Fang Fu, Bing Cheng
RESUMO

This paper examined the effect of diatomite addition on membrane fouling and process performance in an anoxic/oxic submerged membrane bioreactor (A/O MBR). Particle size distribution, molecular weight distribution and microbial activity have been investigated to characterize the sludge mixed liquor. Results show that diatomite addition is a reliable and effective approach in terms of both membrane fouling mitigation and pollutants removal improvement. The MBR system with diatomite addition of 50 mg/L enhanced the removal of COD, TN and TP by 0.9%, 6.9% and 31.2%, respectively, as compared to the control MBR (without diatomite addition). The NH(4)-N removal always maintained at a high level of over 98% irrespective of diatomite addition. Due to the hybrid effect of adsorption and co-precipitation on fine colloids and dissolved organic matter (DOM) from the addition of diatomite, a reduction in foulants amount, an increase in microbial floc size and an improvement in sludge settleability have been achieved simultaneously. As a result, the membrane fouling rate was mitigated successfully.

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Sigma-Aldrich
Celite® 545, filter aid, treated with sodium carbonate, flux calcined
Sigma-Aldrich
Terra de diatomáceas, fluxo calcinado, Celite® 545
Sigma-Aldrich
Terra de diatomáceas, fluxo calcinado, filter aid, flux calcined, treated with sodium carbonate
Sigma-Aldrich
Terra de diatomáceas, fluxo calcinado
Sigma-Aldrich
Terra de diatomáceas, fluxo calcinado, filter aid, acid washed, treated with sodium carbonate, flux calcined
Sigma-Aldrich
Terra de diatomáceas, fluxo calcinado, filter aid, flux calcined
Supelco
Celite® 545 AW, reagent grade
Sigma-Aldrich
Terra de diatomáceas, fluxo calcinado, meets USP/NF testing specifications
Sigma-Aldrich
Terra de diatomáceas, fluxo calcinado, filter aid, treated with sodium carbonate, calcined