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Modelling the recovery of biocompounds from peach waste assisted by pulsed electric fields or thermal treatment

机译:从脉冲电场或热处理辅助桃子废物恢复生物化合物的恢复

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The recovery of non-purified bioactive extracts (70% ethanol) from peach pomace (PP) was assisted by conventional thermal treatment (CTT, 50 degrees C up to 90 min) or pulsed electric fields (PEF, specific energy input, Ev, of 0.0014-2.88 kJ/kg). The maximum concentration of biocompounds and antioxidant activity, assessed with spectrophotometric and HPLC methods, was obtained upon 40 min by CTT and 0.0014 kJ/kg by PEF, which took 16 is. A two-step mechanism was proposed when CTT was applied, considering a first step (zero-order kinetic) in which the PP biocompounds were released into the extraction media and a second degradation stage (first-order). A significant relationship was found between E(V )and PP biocompound degradation during PEF extraction, and a two-term degradation model was proposed to explain obtained data.The CTT or PEF-assisted recovery of biocompounds from PP was adequately explained by the proposed mechanistic and empirical kinetic models, which are feasible tools to understand the involved phenomena in the extraction procedures.
机译:通过常规的热处理(CTT,50℃至90分钟)或脉冲电场(PEF,特定能量输入,EV,EV)辅助来自桃焊珠(PP)的非纯化生物活性提取物(PP)的回收率(PP)的回收0.0014-2.88 kj / kg)。用分光光度法和HPLC方法评估的生物化合物和抗氧化剂活性的最大浓度在CTT和0.0014kJ / kg的40分钟后得到,PEF培养16是。当施加CTT时,提出了一种两步机制,考虑到其中PP生物化合物被释放到提取介质和第二降解阶段(一阶)时的第一步(零阶动力学)。在PEF提取过程中E(V)和PP生物化合物劣化之间发现了显着的关系,并提出了双级降解模型来解释获得的数据。通过所提出的机制得到充分解释的CTT或PEF辅助回收来自PP的生物化合物和经验动力学模型,这是了解提取程序中所涉及的现象的可行工具。

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