Center for Environmental Science, College of Natural and Computational Sciences, Addis Ababa University, Addis Ababa, Ethiopia.
Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei, Taiwan.
Sci Rep. 2023 Jul 27;13(1):12199. doi: 10.1038/s41598-023-39163-w.
Energy is the foundation of the global economy and is essential to human survival. Nevertheless, more than 60% of it comes from fossil fuels. That is not a replenished and scarce source. However, a sizable amount of organic waste is generated every minute throughout the world and can be used as a raw material to produce renewable energy. Among them, Coffee processing generates a huge amount of solid and liquid waste that is organic and can serve as raw material for biofuel production. Since coffee beans and powder are Ethiopia's main exports, coffee pulp is easily accessible. Therefore, the main goal of this project is to convert this waste, which largely consists of organic materials, into a valuable product called Methane. The purity and yield of methane productivity are significantly influenced by the type of additives we use. This work systematically investigates the effect of chemical and biological additives on the productivity and purity of the Biogas from the coffee pulp silage in batch systems under mesophilic temperature (38 °C) for different ensiling periods and additive proportions. The chemical additives recorded the maximum biogas production (2980 ml) at an ensiling period of 40 days with high purity of about 70% biogas. The minimum Biogas was recorded at the ensiling period of 10 days by the control (T1) treatments, which was 634 ml. This work proves that biological additives produced the highest quality and quantity of Biogas from coffee silage.
能源是全球经济的基础,也是人类生存所必需的。然而,超过 60%的能源来自化石燃料。这种能源不是可再生的,而且是稀缺的。然而,全世界每分钟都会产生大量的有机废物,这些废物可以作为生产可再生能源的原料。其中,咖啡加工会产生大量的固体和液体有机废物,这些废物可以作为生物燃料生产的原料。由于咖啡豆和咖啡粉是埃塞俄比亚的主要出口产品,咖啡浆很容易获得。因此,这个项目的主要目标是将这种主要由有机物质组成的废物转化为一种名为甲烷的有价值产品。添加剂的类型对沼气的产量和纯度有显著影响。本工作系统地研究了化学添加剂和生物添加剂对不同青贮期和添加剂比例下中温(38°C)批次系统中咖啡浆青贮物的沼气生产力和纯度的影响。化学添加剂在青贮期为 40 天时记录到最大的沼气产量(2980ml),沼气纯度约为 70%。对照组(T1)在青贮期为 10 天时记录到的沼气最小,为 634ml。这项工作证明,生物添加剂可以从咖啡渣中产生出质量和数量都很高的沼气。