Co-composting poultry carcasses with wood-based, distillers’ grain and cow manure biochar to increase core compost temperatures and reduce leachate's COD

生物炭 堆肥 修正案 家禽粪便 肥料 曝气 渗滤液 制浆造纸工业 鸡粪 化学 环境科学 废物管理 动物科学 农学 环境化学 热解 营养物 生物 有机化学 政治学 法学 工程类
作者
Yuchuan Wang,Neslihan Akdeniz
出处
期刊:Waste Management [Elsevier BV]
卷期号:161: 84-91 被引量:6
标识
DOI:10.1016/j.wasman.2023.02.024
摘要

Composting has been recognized as a viable method to dispose of animal carcasses. Common concerns related to the composting process include low core temperatures, leachate generation, and ammonia emissions. This study tested co-composting full-size poultry carcasses with commercially available biochars at an aeration rate of 0.8 L∙min-1. Biochars prepared by gasifying wood pallets, distillers' grains, and cow manure were added to the composting bins at the 13% rate (by volume). Results showed that poultry carcasses with wood-based and cow manure biochar increased temperatures by 2.0 to 3.3 °C. All biochar-amended bins met the time-temperature criteria to eliminate avian influenza (H7N1) viruses, which could not be achieved without biochar addition. Wood-based biochar amendment lowered the cumulative chemical oxygen demand of the leachate samples by 87% (P = 0.02). At the rate studied, the biochar amendment did not significantly affect ammonia emissions (P = 0.56). BET surface area of wood-based biochar was 1.4 and 28 times greater than that of cow manure and distillers' grain biochar, respectively. Compared to no biochar addition, wood-based biochar resulted in significantly higher compost temperatures (P = 0.02), lower leachate COD values (P = 0.02), and a higher total nitrogen content (P = 0.01) while it did not cause an increase in sodium content (P = 0.94) of the finished compost. In conclusion, amending the poultry carcass composting process with wood-based biochar (13% by volume) is recommended, especially to eliminate disease-causing agents.
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