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Sequential Use of Bentpnltes and Solar Photocatalysis to Treat Winery Wastewater

机译:依次使用Bentpnltes和太阳光催化处理酿酒厂废水

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The sequential use of low-cost adsorbent bentonites and solar photocatalysis to treat winery wastewater has been studied. Three commercial sodium-bentonites (MB-M, MB-G, and MB-P) and one calcium-bentonite (Bengel) were characterized and used in this study. These clay materials were useful to totally remove turbidity (90-100%) and, to a lesser extent, color, polyphenols (PPh), and soluble chemical oxygen demand (CODs) from winery wastewater. Both surface area and cation exchange capacity (CEC) of bentonite had a positive impact on treatment efficiency. The effect of pH on turbidity removal by bentonites was studied in the 3.5-12 pH range. The bentonites were capable of greatly removing turbidity from winery wastewater at pH 3.5-5.5, but removal efficiency decreased with pH increase beyond this range. Settling characteristics (i.e., sludge volume index (SVI) and settling rate) of bentonites were also studied. Best settling properties were observed for bentonite doses around 0.5 g/L. The reuse of bentonite for winery wastewater treatment was found not to be advisable as the turbidity and PPh removal efficiencies decreased with successive uses. The resulting wastewater after bentonite treatment was exposed to solar radiation at oxic conditions in the presence of Fe(III) and Fe(III)/H2O2 catalysts. Significant reductions of COD, total organic carbon (TOC), and PPh were achieved by these solar photocatalytic processes.
机译:研究了低成本吸附性膨润土的顺序使用和太阳光催化处理酒厂废水的方法。在本研究中,表征并使用了三种市售钠膨润土(MB-M,MB-G和MB-P)和一种钙膨润土(Bengel)。这些粘土材料可用于从酿酒厂废水中完全去除浊度(90-100%),并在较小程度上去除颜色,多酚(PPh)和可溶性化学需氧量(COD)。膨润土的表面积和阳离子交换容量(CEC)均对处理效率产生积极影响。在3.5-12 pH范围内研究了pH对膨润土去除浊度的影响。膨润土能够在pH为3.5-5.5的情况下从酿酒厂废水中极大地去除浊度,但随着pH值超出此范围,去除效率会降低。还研究了膨润土的沉降特性(即污泥体积指数(SVI)和沉降速率)。对于约0.5 g / L的膨润土,观察到最佳沉降性能。发现不建议将膨润土再用于酿酒厂废水处理,因为混浊度和PPh去除效率会随着连续使用而降低。在Fe(III)和Fe(III)/ H2O2催化剂的存在下,将膨润土处理后产生的废水在有氧条件下暴露于太阳辐射下。通过这些太阳能光催化过程,可显着减少COD,总有机碳(TOC)和PPh。

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