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Cocomposting of beet vinasse and grape marc in windrows and static pile systems

机译:甜菜酒和葡萄渣在堆肥和静态堆肥系统中协同堆肥

摘要

Two composts were obtained by cocomposting a concentrated depotassified beet vinasse and grape marc using an aerated static pile and a windrow system. The composting mixtures comprised grape marc (83%) and vinasse (17%) for the aerated static pile system and grape marc (77%), vinasse (20%) and phosphate rock (3%) for the windrow. Changes in temperature followed a similar path for both mixtures, however the thermophilic phase was longer in the aerated static pile (25 days) than in the windrow (10 days). This fact caused differences in both organic matter degradation, weight losses (21% for static pile and 10% for windrow) and gas losses during the process. Nevertheless, the composts obtained by the two systems had a high fertilizer nutrient value (18.2 g kg-1 N; 3.1 g kg-1 P; 13.6 g kg-1 K, C/N 16.1 for compost obtained in static pile and 20.6 g kg-1 N; 13.7 g kg-1 P; 13.1 g kg-1 K; C/N 18 for compost obtained in windrow). A high degree of stability was reached in both composting systems (124 cmolc kg-1 CEC for static pile and 153 cmolc kg-1 CEC for windrow at 80 days of composting). The chemical and physical properties of both vinasse composts suggest their possible use as soil conditioner
机译:通过使用充气的静态堆和堆肥系统将浓缩的去钾化甜菜酒糟和葡萄渣混合堆肥,获得了两种堆肥。充气堆肥的堆肥混合物包括葡萄渣(83%)和酒糟(17%),堆肥草料包括葡萄渣(77%),酒糟(20%)和磷矿石(3%)。两种混合物的温度变化都遵循相似的路径,但是充气的静态堆(25天)中的热相要长于堆料堆(10天)中的热相。这一事实导致了有机物降解,重量损失(静态堆肥为21%,堆肥为10%)和过程中的气体损失方面的差异。尽管如此,通过两种系统获得的堆肥仍具有较高的肥料营养价值(18.2 g kg-1 N; 3.1 g kg-1 P; 13.6 g kg-1 K,静态堆肥获得的C / N 16.1和20.6 g kg-1 N; 13.7 g kg-1 P; 13.1 g kg-1 K;堆肥中获得的堆肥的C / N 18)。在两种堆肥系统中都达到了很高的稳定性(堆肥80天时,静态堆肥为124 cmolc kg-1 CEC,对于堆肥堆为153 cmolc kg-1 CEC)。两种酒糟堆肥的化学和物理特性表明它们可用作土壤改良剂

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