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作 者:饶中秀 黄凤球[1] 董春华[1] 李龙涛 褚飞[1] RAO Zhong-xiu;HUANG Feng-qiu;DONG Chun-hua;LI Long-tao;CHU Fei(Hunan Soil and Fertilizer Institute,Changsha 410125,PRC)
出 处:《Agricultural Science & Technology》2023年第3期22-28,共7页农业科学与技术(英文版)
基 金:Supported by Hunan Agricultural Science and Technology Innovation Fund Project(2020CX65)。
摘 要:为明确餐厨垃圾的生物转化效率及其残渣的肥料化利用潜力,分析探讨了通过养殖蝇蛆和黑水虻幼虫降解餐厨垃圾的料虫转化率、养分转化率、残渣理化性质、盐分残留量及养分资源供给能力等。结果表明:蝇蛆和黑水虻幼虫的料虫转化率约10%;蝇蛆对餐厨垃圾的养分转化率在12.53%—29.45%之间,养分转化率高低表现为钾>氮>有机质>磷,而黑水虻幼虫对餐厨垃圾的养分转化率在14.64%—41.94%之间,养分转化率高低表现为钾>磷>氮>有机质;蝇蛆和黑水虻幼虫虫体中氮、磷、钾总含量在12%左右,蛋白质含量分别为58.88%和47.56%。生物转化后残渣pH值接近中性,氮、磷、钾总养分含量>8%、有机质含量>50%,均满足有机肥料标准要求且活性有机质含量较高;残渣中含有少量钠盐和氯离子,应尽量避免长期直接施用带来的潜在风险。To investigate the bioconversion efficiency of kitchen waste and the fertilization potential of relative residues,the waste-insect conversion rate and the nutrient conversion rate of housefly larvae and black soldier fly larvae were analyzed.The sodium and chloride ion in residues,the physical and chemical properties and nutrient supply capacity of residues were also analyzed.The results indicated that the waste-insect conversion rate of housefly larvae and black soldier fly larvae was 10%.The nutrient conversion rate of housefly larvae was 12.53%-29.45%,ordered in potassium>nitrogen>organic matter>phosphorus.And that of black soldier fly larvae was 14.64%-41.94%,ordered in potassium>phosphorus>nitrogen>organic matter.The total content of N,P and K in housefly larvae and black soldier fly larvae was about 12%,the content of protein was 58.88%and 47.56%,respectively.The pH value of residues after bioconversion was close to neutral,and the total content of N,P and K was>8%,the content of organic matter was>50%,which met the conditions of organic fertilizer.Further,high content of active organic matter was detected in residues.In addition,it was suggested that potential risk of long-term or direct application should be avoid due to Na+and Cl-in residues.The results could provide reference for thorough understanding of bioconversion technology on kitchen waste and fertilizer utilization of its residues.
分 类 号:X799.3[环境科学与工程—环境工程]
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