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Optimizing a wool dyeing process with reactive dye by liposome microencapsulation

机译:通过脂质体微囊化用活性染料优化羊毛染色工艺

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Phospholipids mixture from commercial soybean lecithin (SBL) was prepared as acetone insoluble fraction (AIF) which was acetylated at 70%.Phospholipids composition was elucidated with TLC-Densitometry.The acetylated AIF was used for preparing liposomes for encapsulating reactive dye for wool and wool blends dyeing.Ultrasonic irradiation was used in preparing liposomes.Particle size measurements-of the liposomes encapsulating the dye at different concentrations were measured.Maximum particle size of about 16 nm was obtained at liposome concentration of 4 g/1.Dyeing was conducted under different parameters in presence and absence of microencapsulated (MS) dye.The colour strength values,exhaustion,levelling and fixation percent were higher in presence of liposome and tensoactive product than those of conventional dyeing process.These more satisfactory results of wool dyeing encouraged the application of the optimum conditions of wool dyeing on wool blend fabrics with efficiency dye uptake and levelling.Moreover,microencapsulation with liposomes as a new efficient technology for dyeing process prevents environmental pollution.
机译:以丙酮不溶性组分(AIF)为原料,以70%的乙酰化率制备商业大豆卵磷脂(SBL)的磷脂混合物,用薄层色谱-光密度法(TLC-Densitometry)阐明了磷脂的组成,并用该乙酰化的AIF制备脂质体,用于包裹羊毛和羊毛的活性染料。超声染色制备脂质体,测量了不同浓度包封染料的脂质体的粒径,在4 g / 1的脂质体中最大粒径约为16 nm,在不同的条件下进行染色在存在和不存在微囊化(MS)染料的情况下,其参数。在脂质体和张力活性产物存在下,色强度值,吸收,流平和固色百分比均高于常规染色方法。高效染料吸收的羊毛混纺织物上羊毛染色的最佳条件此外,脂质体微囊化技术是一种新型的高效染色技术,可防止环境污染。

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