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Mechanism of Chrome-free Tanning with Tetra-hydroxymethyl Phosphonium Chloride

机译:四羟甲基氯化os无铬鞣制机理

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摘要

Tetra-hydroxymethyl phosphonium chloride (THPC) has been considered as an important chrome-free tanning agent.To understand the THPC tanning mechanism,the structure,charge distribution,activity and tanning ability of each phosphorous compound in THPC tanning system were studied,by ~(31)P NMR,FT-IR spectroscopy,differential scanning calorimetry (DSC) and computational chemistry method,etc.When pH raised to 6.0,the decomposition of THPC would take place,which results in a production of free formaldehyde,tri-hydroxymethyl phosphonium (TrHP) and tri-hydroxymethyl phosphine oxide (TrHPO).At pH 9.0,THPC will be converted completely to TrHP and most TrHP is further oxidized into TrHPO.It is possible that,in reaction of phosphorous compounds and collagens,both P-C and C-O bonds would break simultaneously or individually.From molecular charge distribution and bond polar properties,it is deduced that,if P-C bonds break,the activity is in order of TrHP>THPC>TrHP,whereas if C-O bonds break,the order is TrHP>THPC>TrHPO.It is more possible that P-C bonds will break in reaction with collagen,and TrHPO may be more active in the THPC tanning system.The results of tanning and DSC also prove the above conclusion.Furthermore,the fact that the shrinkage temperature of THPC tanned leather was below 70°C when basified to pH 5.0 or lower suggests that the hydroxymethyl groups of THPC and TrHP are less possible to combine directly with amino groups of collagen.
机译:四羟甲基氯化chloride(THPC)被认为是一种重要的无铬鞣剂。为了解THPC的鞣制机理,研究了THPC鞣制体系中每种磷化合物的结构,电荷分布,活性和鞣制能力,通过〜 (31)P NMR,FT-IR光谱,差示扫描量热法(DSC)和计算化学方法等。当pH升高至6.0时,THPC发生分解,从而生成游离甲醛,三羟甲基pH 9.0时,THPC将完全转化为TrHP,大多数TrHP进一步被氧化为TrHPO。在磷化合物和胶原蛋白的反应中,PC和从分子电荷分布和键的极性性质来看,如果PC键断裂,则其活性依次为TrHP> THPC> TrHP,而如果CO键断裂,则OR键的活性依次为TrHP> THPC> TrHP。分别是TrHP> THPC> TrHPO。在THPC鞣制系统中,PC键可能会与胶原反应而断裂,而TrHPO可能更活跃。鞣制和DSC的结果也证明了上述结论。碱化至pH 5.0或更低时,THPC鞣制皮革的收缩温度低于70°C,这表明THPC和TrHP的羟甲基不太可能直接与胶原蛋白的氨基结合。

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