Oliveira Luiz C A, Gonçalves Maraísa, Oliveira Diana Q L, Guerreiro Mário C, Guilherme Luiz R G, Dallago Rogério M
Universidade Federal de Lavras, Depto. de Química, Caixa Postal 37, CEP 37200.000, Lavras-MG, Brazil.
J Hazard Mater. 2007 Mar 6;141(1):344-7. doi: 10.1016/j.jhazmat.2006.06.111. Epub 2006 Jul 1.
The industrial tanning of leather usually produces considerable amounts of chromium-containing solid waste and liquid effluents and raises many concerns on its environmental effect as well as on escalating landfill costs. Actually, these shortcomings are becoming increasingly a limiting factor to this industrial activity that claims for alternative methods of residue disposals. In this work, it is proposed a novel alternative destination of the solid waste, based on the removal of organic contaminants from the out coming aqueous-residue. The adsorption isotherm pattern for the wet blue leather from the Aurea tanning industry in Erechim-RS (Brazil) showed that these materials present high activity on adsorbing the reactive red textile dye as well as other compounds. The adsorbent materials were characterized by IR spectroscopy and SEM and tested for the dye adsorption (reactive textile and methylene blue dyes). The concentrations of dyes were measured by UV-vis spectrophotometry and the chromium extraction from leather waste was realized by basic hydrolysis and determined by atomic absorption. As a low cost abundant adsorbent material with high adsorption ability on removing dye methylene blue (80mgg(-1)) and textile dye reactive red (163mgg(-1)), the leather waste is revealed to be a interesting alternative relatively to more costly adsorbent materials.
皮革的工业鞣制通常会产生大量含铬固体废物和液体废水,这引发了人们对其环境影响以及填埋成本不断上升的诸多担忧。实际上,这些缺点正日益成为这项工业活动的限制因素,该工业活动需要替代的残渣处理方法。在这项工作中,基于从产出的水相残渣中去除有机污染物,提出了一种新型的固体废物处置方式。来自巴西南里奥格兰德州埃雷欣市奥雷亚鞣革工业的蓝湿皮的吸附等温线模式表明,这些材料对吸附活性红色纺织染料以及其他化合物具有高活性。通过红外光谱和扫描电子显微镜对吸附剂材料进行了表征,并测试了其对染料(活性纺织染料和亚甲基蓝染料)的吸附性能。通过紫外可见分光光度法测量染料浓度,并通过碱性水解实现从皮革废料中提取铬,然后用原子吸收法进行测定。皮革废料作为一种低成本且丰富的吸附剂材料,对去除亚甲基蓝染料(80mg g⁻¹)和活性红色纺织染料(163mg g⁻¹)具有高吸附能力,与成本更高的吸附剂材料相比,它是一种有趣的替代物。