Zucca Paolo, Rescigno Antonio, Pintus Manuela, Rinaldi Andrea C, Sanjust Enrico
Dipartimento di Scienze Biomediche, Università di Cagliari, Cittadella Universitaria, 09042, Monserrato, CA, Italy.
Chem Cent J. 2012 Dec 20;6(1):161. doi: 10.1186/1752-153X-6-161.
Synthetic dyes represent a broad and heterogeneous class of durable pollutants, that are released in large amounts by the textile industry. The ability of two immobilized metalloporphines (structurally emulating the ligninolytic peroxidases) to bleach six chosen dyes (alizarin red S, phenosafranine, xylenol orange, methylene blue, methyl green, and methyl orange) was compared to enzymatic catalysts. To achieve a green and sustainable process, very mild conditions were chosen.
IPS/MnTSPP was the most promising biomimetic catalyst as it was able to effectively and quickly bleach all tested dyes. Biomimetic catalysis was fully characterized: maximum activity was centered at neutral pH, in the absence of any organic solvent, using hydrogen peroxide as the oxidant. The immobilized metalloporphine kept a large part of its activity during multi-cycle use; however, well-known redox mediators were not able to increase its catalytic activity. IPS/MnTSPP was also more promising for use in industrial applications than its enzymatic counterparts (lignin peroxidase, laccase, manganese peroxidase, and horseradish peroxidase).
On the whole, the conditions were very mild (standard pressure, room temperature and neutral pH, using no organic solvents, and the most environmental-friendly oxidant) and a significant bleaching and partial mineralization of the dyes was achieved in approximately 1 h. Therefore, the process was consistent with large-scale applications. The biomimetic catalyst also had more promising features than the enzymatic catalysts.
合成染料是一类广泛且种类繁多的持久性污染物,由纺织工业大量排放。将两种固定化金属卟啉(结构模拟木质素过氧化物酶)对六种选定染料(茜素红S、番红精、二甲酚橙、亚甲基蓝、甲基绿和甲基橙)的漂白能力与酶催化剂进行了比较。为实现绿色可持续工艺,选择了非常温和的条件。
IPS/MnTSPP是最有前景的仿生催化剂,因为它能够有效且快速地漂白所有测试染料。对仿生催化进行了全面表征:最大活性集中在中性pH值、无任何有机溶剂、以过氧化氢为氧化剂的条件下。固定化金属卟啉在多循环使用过程中保持了大部分活性;然而,众所周知的氧化还原介质无法提高其催化活性。与酶类对应物(木质素过氧化物酶、漆酶、锰过氧化物酶和辣根过氧化物酶)相比,IPS/MnTSPP在工业应用中也更具前景。
总体而言,条件非常温和(标准压力、室温、中性pH值,不使用有机溶剂,且使用最环保的氧化剂),在约1小时内实现了染料的显著漂白和部分矿化。因此,该工艺符合大规模应用要求。仿生催化剂也比酶催化剂具有更具前景的特性。