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Effect of Laccase Oxidation Pre-treatment on Coffee (Coffea arabica) Bean Processing Waste for Composting Substrate

机译:涂层氧化预处理对堆肥基材咖啡(Coffea Arabica)豆类处理废物的影响

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Laccase oxidation pre-treatment on coffee pulp and husk in this study was expected to improve the quality of compost by removing phenol compounds which can be toxic for microorganisms. The purpose of this study was to determine the effect of pre-treatment of laccase oxidation on coffee bean processing waste (Coffea arabica) consisted pulp and husk by determining the total phenol, reducing sugar, organic materials and compost quality. Optimization of laccase production was carried out on 5 types of fermentation medium. All parameters except organic materials were measured spectrophotometrically. The results showed that the highest laccase activity (1081.2 U/ml) was achieved by E medium fermentation which contained 0.45 g of rice husk and 0.1 g glucose as carbon source, some of minerals and without the addition of sawdust and CuSO_4. The lowest total phenol and reducing sugar were achieved coffee pulp and husk with laccase oxidation and ABTS pre-treatment as 0.007 ± 0.07 mg/ml and 3.29 ± 0.19 ppm respectively. It can be concluded that indeed pre-treatment of laccase oxidation did not affect the levels of organic matters. All experiment group of pre-treatment showed higher of Total Plate Counts (TPC) comparing to the control. However, the initial oxidation treatment did not have an effect on the levels of N, P, K, C, and the C / N ratio of compost produced when compared to controls. The results of this study could contribute to the process of making compost with the best quality that is environmentally friendly.
机译:预期通过除去可对微生物有毒有毒的酚化合物来改善钙浆和稻壳上的幼瞳氧化预处理。本研究的目的是确定通过测定总酚,还原糖,有机材料和堆肥质量,确定幼豆处理废物(Coffea Arabica)对咖啡豆处理废物(Coffea Arabica)的疗效。在5种类型的发酵培养基上进行漆酶生产的优化。分光光度法测量除有机材料外的所有参数。结果表明,通过含有0.45g稻壳和0.1g葡萄糖作为碳源的含有0.45g米壳,一些矿物质,并且在没有添加锯末和cuso_4的情况下,含有0.45g麦克饼和0.1g葡萄糖的含量,并且没有添加。将最低总酚和还原糖用漆酶氧化和稻草脱落,分别预处理为0.007±0.07mg / ml和3.29±0.19ppm。可以得出结论,漆酶氧化的确实预治疗不会影响有机物质的水平。与对照相比,所有实验组的预处理均显示出较高的总板数(TPC)。然而,与对照相比,初始氧化处理没有对N,P,K,C的水平和C / N比的影响。该研究的结果可能有助于使堆肥与环保性质的最佳品质。

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