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Nitrogen transformations during co-composting of herbal residues spent mushrooms and sludge

机译:草药残渣用过的蘑菇和污泥共同堆肥过程中的氮转化

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摘要

Sewage sludge composting is an important environmental measure. The reduction of nitrogen loss is a critical aim of compost maturation, and the addition of spent mushrooms (SMs) and herbal residues (HRs) may be helpful. To evaluate the nitrogen transformations during co-composting of sewage sludge, SMs, and HRs, windrows were constructed in a residual processing plant. Dewatered sewage sludge and sawdust were mixed with SMs and HRs at two proportions on a fresh weight basis, 3:1:1 (sewage sludge:sawdust:SMs or HRs) and 3:1:2 (sewage sludge:sawdust:SMs or HRs). The mixture was then composted for 40 d. Changes in the physicochemical characteristic of sewage sludge during composting were recorded and analyzed. Addition of SMs and HRs accelerated the temperature rise, mediating a quicker composting maturation time compared to control. The addition also resulted in lower nitrogen losses and higher nitrate nitrogen levels in the compost products. Among the windrows, SM and HR addition improved the nitrogen status. The total nitrogen (TN) and nitrogen losses for SM and HR treatments ranged from 22.45 to 24.99 g/kg and from 10.2% to 22.4% over the control values (18.66–21.57 g/kg and 40.5%–64.2%, respectively). The pile with the highest proportion of SMs (3:1:2 (sewage sludge:sawdust:SMs)) had the highest TN level and the lowest nitrogen loss. The germination index (GI) values for all samples at maturity were above 80%, demonstrating optimal maturity. The addition of SMs and HRs augments sewage composting.
机译:污泥堆肥是一项重要的环境措施。减少氮素流失是堆肥成熟的关键目标,添加废蘑菇(SMs)和草药残留物(HRs)可能会有所帮助。为了评估污水污泥,SM和HR混合堆肥过程中的氮转化,在剩余的加工厂中建造了草料堆。将脱水的污水污泥和锯末与SM和HR按新鲜重量按两种比例混合:3:1:1(污水污泥:木屑:SM或HR)和3:1:2(污水污泥:木屑:SM或HR) )。然后将混合物堆肥40 d。记录并分析堆肥过程中污水污泥的理化特性变化。与对照相比,添加SM和HR加速了温度升高,介导了更快的堆肥成熟时间。该添加还导致堆肥产品中较低的氮损失和较高的硝酸盐氮含量。在料堆中,SM和HR的添加改善了氮的状况。 SM和HR处理的总氮(TN)和氮损失量比对照值(分别为18.66–21.57 g / kg和40.5%–64.2%)在22.45至24.99 g / kg和10.2%至22.4%之间。 SM比例最高的堆(3:1:2(污泥:木屑:SMs))的总氮含量最高,氮损失最低。所有样品在成熟时的发芽指数(GI)值均高于80%,这表明其具有最佳的成熟度。增加SM和HR可增加污水堆肥。

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