Izydorczyk Grzegorz, Mikula Katarzyna, Skrzypczak Dawid, Witek-Krowiak Anna, Mironiuk Małgorzata, Furman Katarzyna, Gramza Mateusz, Moustakas Konstantinos, Chojnacka Katarzyna
Department of Advanced Material Technologies, Faculty of Chemistry, Wroclaw University of Science and Technology, Poland.
Department of Advanced Material Technologies, Faculty of Chemistry, Wroclaw University of Science and Technology, Poland.
J Hazard Mater. 2022 Feb 15;424(Pt A):127328. doi: 10.1016/j.jhazmat.2021.127328. Epub 2021 Sep 24.
Slaughterhouse waste and dead animals are mainly disposed of by incineration, which generates greenhouse gases and NO. These wastes are a source of nutrients that can be recovered by circular economy techniques if material recycling is given a priority over energy recovery. To valorize high-protein animal waste (containing bones, meat, feather) for fertilizer purposes, the waste was processed by acid solubilization and neutralized with potassium hydroxide solution, which yielded a liquid fertilizer with plant growth biostimulating properties (due to the amino acids presence). The composition analysis showed that new fertilizers met all quality requirements set by the law, contain ~0.5% m/m amino acids and are microbiologically pure. The fertilizer was enriched with microelements to the level of 0.2% m/m and tested for biological effectiveness in germination tests and field studies. Compared with the commercial formulation, the fertilizer increased stem length and chlorophyll content (by 8.2% and 27.0%, respectively), wheat crop yield and grain micronutrients density (Cu by 31.2%, Mn by 10.5%, Zn by 33.9%) and improved the wheat flour baking properties. The described solution propose a safe way to utilize hazardous waste via technological mobile installation, enabling no transportation of waste, which is an important aspect of sanitary-epidemiological risk minimization.
屠宰场废弃物和病死动物主要通过焚烧处理,这会产生温室气体和氮氧化物。如果将材料回收置于能量回收之上,这些废弃物就是可通过循环经济技术回收的营养物质来源。为了将高蛋白动物废弃物(包含骨头、肉、羽毛)用于肥料用途,该废弃物经过酸溶解处理并用氢氧化钾溶液中和,得到了一种具有植物生长生物刺激特性的液体肥料(由于含有氨基酸)。成分分析表明,新型肥料符合法律规定的所有质量要求,含有约0.5%(质量/质量)的氨基酸且微生物纯净。该肥料富含微量元素至0.2%(质量/质量)水平,并在发芽试验和田间研究中测试了其生物有效性。与商业配方相比,该肥料增加了茎长和叶绿素含量(分别增加了8.2%和27.0%),提高了小麦作物产量和籽粒微量元素密度(铜增加31.2%,锰增加10.5%,锌增加33.9%),并改善了小麦粉的烘焙特性。所描述的解决方案提出了一种通过技术移动装置安全利用危险废弃物的方法,无需运输废弃物,这是将卫生流行病学风险降至最低的一个重要方面。