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首页> 外文期刊>American Journal of Analytical Chemistry >The Study of a Simple Pine-Oil Based Laboratory Prepared and Commercial Detergents Using Conductivity Measurements
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The Study of a Simple Pine-Oil Based Laboratory Prepared and Commercial Detergents Using Conductivity Measurements

机译:基于电导率测量的简单的基于松油的实验室制备和商用洗涤剂的研究

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摘要

Detergents are very important substances in everyday life as they are used in laundry services. This manuscript reports the study of the commercial and laboratory prepared pine oil-based detergents employing the critical micelle concentration (CMC) phenomenon using conductivity measurements. The two samples showed the CMC values of 0.0725 g/cm3 and 0.0920 g/cm3 for laboratory and commercial samples respectively. The effect of ionic strength was investigated using NaCl and it demonstrated a drop of CMC value of about CMC by 40% (laboratory sample) and 70% (commercial sample) while the equi-molar naphthalene increased the CMC values by about 50% (laboratory sample) and 12% (commercial sample) relative to their corresponding values under distilled water. The combined effect of equi-molar NaCl and naphthalene lowered the CMC by 5% (laboratory sample) and 30% (commercial sample). These differences could signify the superiority of the laboratory sample in that it is somehow buffered against drastic changes in the CMC under different conditions. The relationship between conductivity and the CMC values does not show sufficient linearity (R2 < 0.8403) suggesting different mechanisms of interactions between NaCl and naphthalene. Overall, the results are gratifying to the small-scale manufacturer who supplied the preparation protocol for laboratory sample preparation, in two respects: they inspire some degree of confidence in his product as well as enabling the manufacturer to employ the same protocol for his quality control practices as such improve product consistency and hence profitability.
机译:洗涤剂在洗衣服务中是日常生活中非常重要的物质。该手稿报道了使用电导率测量方法通过临界胶束浓度(CMC)现象对商业和实验室制备的松油基洗涤剂进行的研究。对于实验室样品和商业样品,两个样品的CMC值分别为0.0725 g / cm3和0.0920 g / cm3。使用NaCl研究了离子强度的影响,结果表明CMC值分别下降了约40 %(实验室样品)和70 %(商业样品),而等摩尔萘将CMC值提高了约50 %(实验室样品)和12 %(商业样品)相对于蒸馏水的相应值。等摩尔NaCl和萘的组合作用使CMC降低了5%(实验室样品)和30%(商业样品)。这些差异可以表明实验室样品的优越性,因为它可以缓冲不同条件下CMC的急剧变化。电导率和CMC值之间的关系没有显示出足够的线性(R2 <0.8403),表明NaCl和萘之间相互作用的机理不同。总体而言,该结果令提供了实验室样品制备准备方案的小规模制造商从两个方面感到满意:它们激发了对其产品的某种程度的信心,并使制造商能够采用相同的方案进行质量控制这样的做法可以提高产品的一致性,从而提高盈利能力。

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