Noor Rana Shahzad, Shah Adnan Noor, Tahir Muhammad Bilal, Umair Muhammad, Nawaz Muhammad, Ali Amjed, Ercisli Sezai, Abdelsalam Nader R, Ali Hayssam M, Yang Seung Hwan, Ullah Sami, Assiri Mohammed Ali
Department of Agriculture, Biological, Environment and Energy Engineering, College of Engineering, Northeast Agricultural University, Harbin 150030, China.
Faculty of Agricultural Engineering and Technology, PMAS-Arid Agriculture University, Rawalpindi 46000, Pakistan.
ACS Omega. 2024 Feb 16;9(8):8632-8653. doi: 10.1021/acsomega.3c06516. eCollection 2024 Feb 27.
Agriculture waste has increased annually due to the global food demand and intensive animal production. Preventing environmental degradation requires fast and effective agricultural waste treatment. Aerobic digestion or composting uses agricultural wastes to create a stabilized and sterilized organic fertilizer and reduces chemical fertilizer input. Indeed, conventional composting technology requires a large surface area, a long fermentation period, significant malodorous emissions, inferior product quality, and little demand for poor end results. Conventional composting loses a lot of organic nitrogen and carbon. Thus, this comprehensive research examined sustainable and adaptable methods for improving agricultural waste composting efficiency. This review summarizes composting processes and examines how compost additives affect organic solid waste composting and product quality. Our findings indicate that additives have an impact on the composting process by influencing variables including temperature, pH, and moisture. Compost additive amendment could dramatically reduce gas emissions and mineral ion mobility. Composting additives can (1) improve the physicochemical composition of the compost mixture, (2) accelerate organic material disintegration and increase microbial activity, (3) reduce greenhouse gas (GHG) and ammonia (NH) emissions to reduce nitrogen (N) losses, and (4) retain compost nutrients to increase soil nutrient content, maturity, and phytotoxicity. This essay concluded with a brief summary of compost maturity, which is essential before using it as an organic fertilizer. This work will add to agricultural waste composting technology literature. To increase the sustainability of agricultural waste resource utilization, composting strategies must be locally optimized and involve the created amendments in a circular economy.
由于全球粮食需求和集约化动物生产,农业废弃物每年都在增加。防止环境退化需要快速有效的农业废弃物处理方法。好氧消化或堆肥利用农业废弃物来制造稳定且经过消毒的有机肥料,并减少化肥投入。的确,传统堆肥技术需要大面积场地、较长的发酵周期、大量恶臭排放、产品质量较差,而且对不佳的最终结果需求很少。传统堆肥会损失大量有机氮和碳。因此,这项综合研究考察了提高农业废弃物堆肥效率的可持续且适用的方法。本综述总结了堆肥过程,并研究了堆肥添加剂如何影响有机固体废物堆肥及产品质量。我们的研究结果表明,添加剂通过影响温度、pH值和湿度等变量对堆肥过程产生影响。添加堆肥添加剂可显著减少气体排放和矿物离子迁移。堆肥添加剂可以(1)改善堆肥混合物的物理化学组成,(2)加速有机物质分解并增加微生物活性,(3)减少温室气体(GHG)和氨(NH)排放以减少氮(N)损失,以及(4)保留堆肥养分以增加土壤养分含量、成熟度和植物毒性。本文最后简要总结了堆肥成熟度,这在将其用作有机肥料之前至关重要。这项工作将丰富农业废弃物堆肥技术文献。为提高农业废弃物资源利用的可持续性,堆肥策略必须在当地进行优化,并将所产生的改良剂纳入循环经济之中。