Effective Utilization of Marine Fish Industrial Processing Waste Through Co-composting Method for Producing Organic Soil Input

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Abstract

Marine fish processing industries located in the urban region involves fish processing activities that generate a considerable amount of leftover biological residues such as solid wastes and protein-rich effluents, which are ineffectively discarded in water bodies and landfills affecting the coastal environment. The present study involves the biological treatment of industrial fish processing wastes through the co-composting method to convert the fish wastes into organic input. Fish wastes were mixed with rice husk as a bulking agent and allowed for organic matter stabilization through the co-composting process. The maturity of the co-compost was evaluated by spectroscopic techniques, nutrient analysis, and seed germination assay. UV-vis spectroscopic analysis revealed the presence of absorbance between 250 and 300 nm indicating the characteristics of increased concentration of aromatic compounds. The humification index (E4/E6) was calculated to be 1.2, which signified the characteristics of humified materials. Conventional fluorescence spectroscopic analysis detected emission spectra centered at 448 nm due to the development of aromatic structures as a result of increasing the humification process in the co-compost. The well-composted organic matter was found to contain macronutrients (N-1.35%; P-1.02%; K-0.51%) and micronutrients (Zn-74.07 mg/kg; Cu-16.37 mg/kg; Fe-176.07 mg/kg) respectively. Further, seed germination sassay showed growth promotion effects of the co-compost in seeds of Vigna radiata; Vigna mungo and Trigonella foenum-graecum, which confirmed the stability of the organic matter. The findings of the study conclude that the co-composting process of fish industrial processing wastes using rice husk could offer effective conversion of fish waste into organic co-compost for soil application.
通过共堆肥法有效利用海鱼工业加工废弃物生产有机土壤投入品
位于城市区域的海鱼加工业涉及鱼类加工活动,这些活动产生大量剩余的生物残留物,如固体废物和富含蛋白质的废水,这些生物残留物被无效地丢弃在影响沿海环境的水体和垃圾填埋场。本研究涉及通过共同堆肥法对工业鱼类加工废物进行生物处理,将鱼类废物转化为有机投入物。鱼废物与稻壳混合作为膨胀剂,并允许有机物质通过共同堆肥过程稳定。通过光谱技术、营养分析和种子发芽试验来评价混合堆肥的成熟度。紫外-可见光谱分析显示在250 ~ 300 nm之间存在吸光度,表明芳香化合物浓度增加的特征。腐殖化指数(E4/E6)为1.2,反映了腐殖化材料的特性。传统的荧光光谱分析检测到以448 nm为中心的发射光谱,这是由于共同堆肥中腐殖质化过程增加导致芳香结构的发展。堆肥良好的有机质中含有大量营养元素(N-1.35%;p - 1.02%;K-0.51%)和微量营养素(Zn-74.07 mg/kg;铜- 16.37毫克/公斤;Fe-176.07 mg/kg)。此外,种子萌发试验表明,混合堆肥对辐射豇豆种子有促进生长的作用;芒草和青藤,证实了有机物的稳定性。研究结果表明,利用稻壳对鱼类工业加工废弃物进行共堆肥处理,可有效地将鱼类废弃物转化为有机共堆肥,供土壤利用。
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