College of Natural Resources and Environment, Northwest A&F University, Yangling, Shaanxi Province 712100, PR China.
College of Natural Resources and Environment, Northwest A&F University, Yangling, Shaanxi Province 712100, PR China; Department of Biotechnology, Amicable Knowledge Solution University, Satna, India.
Bioresour Technol. 2017 Nov;243:520-527. doi: 10.1016/j.biortech.2017.06.158. Epub 2017 Jun 30.
In this study, the pilot scale co-composting of sewage sludge (SS)+wheat straw amended with 10% (dry weight ratio of basis) of three different additives (zeolite, Ca-bentonite and medical stone) was conducted for 56days to evaluate the greenhouse gases (GHGs) and nitrogen conservation efficacy and its correlation with analyzed physicochemical, gaseous and biological parameters. The results indicated that all of three additives could adequately buffer pH, considerably increase temperature, and enhance organic matter degradation as well as reduce ammonia and GHGs emission. Particularly, zeolite amended treatment showed the maximum reduction of CH emission by 88.45% and less amount of nitrogen loss by 28.80%, meanwhile reduced the maturity period by 2weeks. In addition, the redundancy analysis was confirmed most significant relationship between biological, GHGs, bacterial community and nutrients concentration in 10% zeolite applied treatment than other treatments. The result suggested 10% zeolite could be a suitable additive to improve the quality of sewage sludge composting.
本研究采用中试规模,将污水污泥(SS)与 10%(以干重为基础的比例)三种不同添加剂(沸石、钙膨润土和麦饭石)的小麦秸秆进行共堆肥,以评估温室气体(GHGs)和氮素保存效果及其与分析的物理化学、气态和生物参数的相关性。结果表明,所有三种添加剂都能充分缓冲 pH 值,显著提高温度,促进有机质降解,减少氨和 GHGs 的排放。特别是沸石处理组对 CH4 排放的最大减排率达到 88.45%,氮素损失减少 28.80%,同时将成熟周期缩短了 2 周。此外,冗余分析还证实了添加 10%沸石处理组与其他处理组相比,生物、GHGs、细菌群落和养分浓度之间存在最显著的关系。结果表明,10%沸石可用作改善污水污泥堆肥质量的合适添加剂。