本平台为互联网非涉密平台,严禁处理、传输国家秘密或工作秘密

片烟制丝耐加工性评价方法及醇化过程中片烟制丝耐加工性变化

Method for evaluating primary processing resistance of tobacco strips and variation in primary processing resistance during tobacco strip aging

  • 摘要: 为找出醇化片烟制丝耐加工性较强的醇化周期,探究烟叶物理特性指标与烟丝结构之间的相关关系,以烟叶穿透强度作为片烟制丝耐加工性评价方法的关键物理特性指标,通过优化醇化片烟穿透强度检测方法的参数,建立了制丝耐加工性评价方法,并分析了醇化过程中不同等级片烟穿透强度的变化规律及变化程度。结果表明:①片烟样品的穿透强度与整丝率、长丝率均存在极显著正相关关系,与短丝率存在极显著负相关关系(P<0.01),可作为评价醇化片烟制丝耐加工性的关键物理特性指标。②明确了醇化片烟穿透强度测定方法的参数:在保证双侧90%置信区间的前提下,所需最少样本量为64,样品尺寸以(2~3)cm×(2~3)cm为宜。③在片烟醇化18-27月期间,3个产地不同等级片烟样品穿透强度降幅平均值由大到小依次为B2F等级、C2F等级、C4F等级,B2F和C2F等级样品穿透强度在醇化27月时下降幅度达到差异显著水平(P<0.05),C4F等级样品穿透强度在醇化24月时下降幅度达到差异显著水平(P<0.05)。④以提高制丝的经济性和控制物理质量为目的,对C4F等穿透强度较低的片烟应在醇化24月之内进行制丝加工,对B2F等穿透强度较高的片烟应在醇化27月之内进行制丝加工。

     

    Abstract: To identify the optimum aging cycle for aged tobacco strips with high primary processing resistance and to investigate the correlations between the physical properties of tobacco leaves and the structure of cut tobacco, the penetrability of tobacco leaves was selected as the key physical property index for evaluating the primary processing resistance of tobacco strips. By optimizing the parameters of the penetrability detection method for aged tobacco strips, a method for evaluating the primary processing resistance was established. The variation patterns and degrees of penetrability of tobacco strips of different grades during aging were analyzed. The results showed that: 1) The penetrability of tobacco strip samples was extremely significantly positively correlated with the proportions of integral and long tobacco strands, while it was extremely significantly negatively correlated with the proportion of short tobacco strands (P < 0.01), indicating that the penetrability could be used as a key physical property index for evaluating the primary processing resistance of aged tobacco strips. 2) The parameters for measuring the penetrability of aged tobacco strips were determined. Under the premise of ensuring a 90% confidence interval on both sides, the minimum sample size was 64, with sample dimensions recommended to be (2-3) cm × (2-3) cm. 3) Within the aging period of 18-27 months, the tobacco sample grades in the order of the average decrease in penetrability of tobacco strip samples from three areas were B2F > C2F > C4F. The decrease in the penetrability of the samples of B2F and C2F grades reached a statistically significant level (P < 0.05) at the 27th month of aging, while the decrease in penetrability of the samples of C4F grade reached a statistically significant level (P < 0.05) at the 24th month of aging. 4) To improve the economic and control physical quality indexes of primary tobacco processing, the aged tobacco strips with lower penetrability, such as C4F, the primary processing should be carried out within 24 months of aging. For aged tobacco strips with higher penetrability, such as B2F, primary processing should be carried out within 27 months of aging.

     

/

返回文章
返回