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Composting of vinasse and cotton gin waste by using two different systems

机译:通过使用两种不同的系统对酒糟和轧花废料进行堆肥

摘要

Two composts were obtained by co-composting of a concentrated depotassified beet vinasse and cotton gin waste using two different aeration systems: static aerated pile (forced aeration provided by a blower whom operated in the positive mode) and windrow (turned pile). The composting mixtures were cotton gin trash (55%) and vinasse (45%) (dry weight). In static pile, the total amount of vinasse was added at the beginning of the process whereas, in windrow two additions of vinasse were performed. Differences in temperature changes between both composting systems were found: a faster increase of temperature in the windrow (54°C at 7 days) than in the static pile (45°C at 21 days) was observed. Probably in the static pile system, the compaction of the substrates made difficult the correct distribution of the air inside the pile. Moreover, after the second addition of vinasse a new thermophilic phase was started in windrow. The different aeration systems and the way of addition of vinasse could cause differences in organic matter (OM) degradation and in weight (22.6% for the static pile and 26.7% for the windrow) and gas losses during the process. Nevertheless, the composts obtained by the two systems had a high fertilizer value (25.1 g kg-1 N; 3.2 g kg-1 P2O5; 21.4 g kg-1 K2O; C/N8) for compost obtained in static pile and (16.2 g kg-1 N; 3.4 g kg-1 P2O5; 16.1 g kg-1 K2O; C/N 12) for compost obtained in the windrow). A high degree of stability was reached in the final composts. Composting of vinasse with cotton gin waste serves two objectives, disposal of wastes and recycling of waste components.
机译:通过使用两种不同的曝气系统将浓缩的去钾甜菜酒糟和轧花废料共同堆肥,可得到两种堆肥:静态曝气堆(由以正向模式运行的鼓风机提供的强制曝气)和堆垛(翻堆)。堆肥的混合物是轧花轧棉垃圾(55%)和酒糟(45%)(干重)。在静态堆中,酒醋的总量是在过程开始时添加的,而在杂料堆中,酒醋要进行两次添加。发现两种堆肥系统之间的温度变化不同:观察到堆肥(7天时为54°C)比静态堆(21天时为45°C)的温度升高更快。可能是在静态堆垛系统中,基材的压实使得堆垛内部空气的正确分配变得困难。此外,在第二次添加Vinasse之后,在料堆中开始了一个新的嗜热相。在此过程中,不同的曝气系统和酒糟的添加方式可能会导致有机物(OM)降解和重量(静态堆为22.6%,堆肥为26.7%)的差异以及气体损失。尽管如此,通过两种系统获得的堆肥在静态堆肥中的肥料价值很高(25.1 g kg-1 N; 3.2 g kg-1 P2O5; 21.4 g kg-1 K2O; C / N8),肥料价值很高(16.2 g kg-1 N; 3.4 g kg-1 P2O5; 16.1 g kg-1 K2O; C / N 12)用于堆肥中获得的堆肥。最终的堆肥达到了高度的稳定性。酒糟与轧花废料的堆肥有两个目标,即废物处理和废物成分的回收。

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