Environmental Science and Technology Research Center, Department of Environmental Health Engineering, School of Public Health, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.
Department of Environmental Health Engineering, School of Health, Rafsanjan University of Medical Sciences, Rafsanjan, Iran.
Ecotoxicol Environ Saf. 2019 Apr 30;171:798-804. doi: 10.1016/j.ecoenv.2019.01.056. Epub 2019 Jan 17.
To manage the pistachio de-hulling waste (PW), investigated the co-composting process using a mixture of PW and cattle manure (CM) (5.5:10 dry weight) as well as PW and municipal dewatering sewage sludge (DSS) (1:10 dry weight) at the laboratory scale for 60 days. Compost toxicity was evaluated using the seed germination index (GI). The maximum temperatures in co-composting processes of PW+CM (51.9 °C) and PW+DSS (49.9 °C) were reported on the seventh day. The increase of temperature was higher in PW+CM and remained in the thermophilic phase for five days. In both reactors, the pH rates decreased, increased, and finally remained neutral. The C/N ratio decreased in both reactors, but the reduction rate was faster in the PW+DSS reactor. Sodium (Na%) and potassium (K%) contents were increased, while the concentrations of Cu, Zn, Fe, and Mn were decreased during the processes. The numbers of parasite eggs in the final composts of the reactors containing PW+CM and PW+DSS were zero and 8 Number/4gDW, respectively. The amounts of Salmonella were zero in the final products of reactors containing PW+CM and PW+DSS. The results of GI showed that the final compost of PW+CM process was not toxic for the plants, whereas the PW+DDS final compost was toxic. In conclusion, the co-compost product of the PW+CM reactor had higher quality than the PW+DSS reactor. So, it is suitable for PW management.
为了管理开心果去壳废物 (PW),研究了在实验室规模下使用 PW 与牛粪 (CM) (干重比 5.5:10) 以及 PW 与城市脱水污水污泥 (DSS) (干重比 1:10) 的混合物进行共堆肥的过程,共 60 天。使用种子发芽指数 (GI) 评估堆肥毒性。PW+CM (51.9°C) 和 PW+DSS (49.9°C) 共堆肥过程中的最高温度在第 7 天报告。PW+CM 的升温更高,并且在高温阶段持续了五天。在两个反应器中,pH 值先降低后升高,最后保持中性。两个反应器中的 C/N 比都降低了,但 PW+DSS 反应器的降低速度更快。钠 (Na%) 和钾 (K%) 含量增加,而铜、锌、铁和锰的浓度在过程中降低。含有 PW+CM 和 PW+DSS 的反应器的最终堆肥中寄生虫卵的数量均为零和 8 个/4gDW。PW+CM 和 PW+DSS 反应器最终产物中的沙门氏菌数量均为零。GI 的结果表明,PW+CM 过程的最终堆肥对植物没有毒性,而 PW+DDS 最终堆肥是有毒的。总之,PW+CM 反应器的共堆肥产品质量高于 PW+DSS 反应器。因此,它适合 PW 管理。