The aim of the present study was to design, develop and evaluate hand operated and power driven crackers for walnuts. Kaghazi (thin shelled) and medium shelled walnuts after subjecting to pre-optimized soaking conditions were cracked by developed crackers. Different parameters were evaluated to check the performance of the power operated cracker and hand operated cracker in comparison to manual cracking. 100% shelling coefficient and cracking coefficient value of 1 were recorded in manual and hand operated cracking methods in both Kaghazi and medium shelled walnuts. The coefficient of wholeness was recorded highest in hand operated cracking method in both Kaghazi and medium shelled walnuts. The throughput capacity and effective throughput capacity was highest and labour requirement was least in power operated walnut cracking method followed by manual cracking and hand operated cracking methods in both Kaghazi and medium shelled walnuts. In both Kaghazi and medium shelled walnuts, the butter ball ? kernel halve recovery and cracking efficiency was recorded maximum in hand operated cracking method. The economic analysis reveals that both hand operated and power operated crackers can be useful for small to medium scale walnut growers and processing industries.
High amylose rice (HAR) and carboxymethyl cellulose (CMC) are the preferred choices for enhancement of resistant starch content and lowering of glycemic index in dairy desserts. The effects of different levels of skimmed milk powder (SMP): HAR flour (45:55 to 75:25) and CMC (0.1 to 1%) were investigated on physical characteristics of dry-mix and on texture profile parameters, resistant starch (RS), predicted glycemic index (pGI), glycemic load (GL) and overall acceptability of phirni (a traditional milk pudding). Design expert predicted SMP (70): HAR (30) and CMC (0.8%) as optimum levels for reducing the pGI and maximizing the RS content and other quality characteristics in phirni. RS content of phirni (4.38%) prepared from optimized dry-mix (ODM) was higher while pGI (48.12) and GL (7.50) were lower as compared to phirni prepared from market dry-mix (MDM). The visco-thermal properties of ODM and MDM also showed significant variations. Storage modulus (Gʹ) and loss modulus (Gʹʹ) indicated that ODM phirni was less solid than MDM phirni. Scanning electron micrographs showed fused structures in ODM, while coarse sheet like structures were observed across the surface of MDM. Thus, ODM can be a promising substitute for the available milk desserts for diabetic patients.
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