Department of Agroforestry, Kwame Nkrumah University of Science and Technology, Kumasi, Ghana.
Department of Management, Birkbeck-University of London, London, UK.
Waste Manag. 2021 Apr 1;124:264-272. doi: 10.1016/j.wasman.2021.02.021. Epub 2021 Feb 24.
Climate change and environmental degradation have contributed in compromising the soil nutrient integrity of cocoa farmlands, yet sustainable nutrient recycling innovation in cocoa waste management has received less research attention. Utilizing experimentation methodology in an agroforestry system composed of cocoa (Theobroma cacao L.) and a Nitrogen-fixing Gliricidia sepium (Jacq. Kunth ex Walp.), the study examines how the soil nutritional level of farmland can be enhanced. The study confirms the proposition that the rate of decomposition and nutrients release from an innovative mixed waste sample (60% cocoa waste and 40% gliricidia waste in this case) is significantly higher in comparison with the traditional cocoa waste only sample. The results further established that innovative mixed waste sample had a faster decomposition rate (no biomass left at 216 days after laying) as compared to traditional cocoa waste which fully decomposed at 277 days after laying. A difference of 51 days after laying justifies the waste mixture decomposition as a sustainable nutrient recycling innovation within cocoa agroforestry waste management context. These results have implications for agroforestry waste management, soil nutrient recycling and cocoa industry performance.
气候变化和环境恶化已经影响到可可农田的土壤养分完整性,但可可废物管理中的可持续养分循环创新受到的关注较少。本研究利用实验方法,在由可可(Theobroma cacao L.)和固氮葛属(Gliricidia sepium (Jacq. Kunth ex Walp.)组成的农林复合系统中,研究了如何提高农田土壤营养水平。研究证实了这样一个假设,即与传统的仅可可废物样本相比,创新的混合废物样本的分解速度和养分释放速度更快。研究结果进一步表明,与传统的可可废物在放置 277 天后完全分解相比,创新的混合废物样本的分解速度更快(放置 216 天后没有生物质残留)。在放置 51 天后,废物混合物的分解证明了在可可农林复合废物管理背景下,这是一种可持续的养分循环创新。这些结果对农林复合废物管理、土壤养分循环和可可产业绩效具有重要意义。