Figaro S, Louisy-Louis S, Lambert J, Ehrhardt J-J, Ouensanga A, Gaspard S
Laboratoire COVACHIMM, EA 3592, Département de chimie, Université des Antilles et de la Guyane, BP 250, 97157 Pointe à Pitre Cedex. Guadeloupe, French West Indies.
Water Res. 2006 Oct;40(18):3456-66. doi: 10.1016/j.watres.2006.07.037. Epub 2006 Sep 20.
Due to high levels of residual chemical oxygen demand (COD) in the effluent of molasses spentwash (MSW) after anaerobic treatment, acceptable COD levels for discharge cannot be achieved without some form of post-treatment. In this study, the particulate composition of molasses spentwash after anaerobic digestion (MSWD), is characterised as to its particle size distribution, using micro- and ultrafiltration and three activated carbons are characterised as to their ability to reduce significantly the COD of MSWD effluent. The activated carbons tested as adsorbent, were characterised by XPS spectroscopy, elemental analysis, surface area, pore size distribution, and acid-base titration using the Boehm's method. Adsorption of phenol, used here as a reference compound, and of some organic compounds contained in MSWD (gallic acid, tannic acid, and melanoidin, respectively), was studied. It was clearly demonstrated that an activated carbon with a significant distribution of both micropores and mesopores and a significant amount of macropores that are assumed to act as conduits providing access to micro- and mesopores, have a good adsorption efficiency for compounds such as tannic acid and melanoidins. It is a good adsorbent for melanoidin and coloured compounds of MSWD, which represents a large source of the aqueous pollution in sugar cane industries.
由于糖蜜废醪液(MSW)厌氧处理后的出水化学需氧量(COD)残留水平较高,若不进行某种形式的后处理,就无法达到可接受的排放COD水平。在本研究中,利用微滤和超滤对厌氧消化后的糖蜜废醪液(MSWD)的颗粒组成进行了粒度分布表征,并对三种活性炭降低MSWD出水COD的能力进行了表征。用作吸附剂的活性炭通过X射线光电子能谱(XPS)、元素分析、表面积、孔径分布以及采用博姆法的酸碱滴定进行表征。研究了用作参考化合物的苯酚以及MSWD中所含的一些有机化合物(分别为没食子酸、单宁酸和类黑素)的吸附情况。结果清楚地表明,一种同时具有大量微孔和中孔且有大量大孔(假定这些大孔作为通道提供进入微孔和中孔的途径)分布的活性炭,对单宁酸和类黑素等化合物具有良好的吸附效率。它是MSWD中类黑素和有色化合物的良好吸附剂,而MSWD是甘蔗工业中水污染的一个主要来源。