首页> 外文会议>International Symposium on Forest Industry Wastewater; 20030602-04; Seattle,WA(US) >Spectroscopic evidence of silica-lignin complexes: implications for treatment of non-wood pulp wastewater
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Spectroscopic evidence of silica-lignin complexes: implications for treatment of non-wood pulp wastewater

机译:二氧化硅-木质素复合物的光谱证据:对非木浆废水处理的意义

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This research examined the hypothesis that lignin compounds form aqueous complexes with silica increasing its solubility, thereby inhibiting its precipitation. An experimental program using four lignin model compounds was conducted to test the hypothesis. Laser Raman spectroscopy (LRS) was used to characterize, qualitatively, the interaction between lignin and aqueous silica, and to identify the possibility of silica-lignin complexation. Solubility studies were then performed by analyzing the solubility of silica in presence and absence of lignin within the relevant pH range to confirm the results of LRS, and to obtain a quantitative assessment of the relative solubility. The findings have established the formation of silica-ferulic, silica-vanillic, and silica-4-methoxycinnamic acid complexes, but no evidence was detected for the formation of silica-veratryl alcohol complex. In fact, the black liquor undoubtedly contains much more complex lignin materials than the simple model compounds used in this work. The more complex lignin compounds are likely to have an even greater tendency to form silica complexes, thus contributing to the initial hypothesis. This finding provides a fundamental understanding as to why previous efforts to precipitate silica by lowering the pH from 10-11 (for black liquor) to less than 9 did not achieve satisfactory silica separation, and why alternative strategies need to be investigated.
机译:这项研究检验了以下假设:木质素化合物与二氧化硅形成水性络合物,从而增加了其溶解度,从而抑制了其沉淀。进行了使用四种木质素模型化合物的实验程序以检验该假设。激光拉曼光谱法(LRS)用于定性表征木质素和含水二氧化硅之间的相互作用,并确定二氧化硅与木质素络合的可能性。然后通过在相关pH范围内分析存在和不存在木质素的情况下二氧化硅的溶解度来进行溶解度研究,以确认LRS的结果,并获得相对溶解度的定量评估。该发现已经确定了二氧化硅-阿魏酸,二氧化硅-香草酸和二氧化硅-4-甲氧基肉桂酸复合物的形成,但是没有发现形成二氧化硅-藜芦醇复合物的证据。实际上,黑液无疑包含比该工作中使用的简单模型化合物复杂得多的木质素材料。较复杂的木质素化合物很可能具有形成二氧化硅复合物的更大趋势,因此有助于最初的假设。这一发现为为什么以前通过将pH从10-11(对于黑液)降低到9以下来沉淀二氧化硅的努力未能获得令人满意的二氧化硅分离以及为什么需要研究替代策略提供了基本的理解。

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