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生物炭可减少家禽粪便与小麦秸秆堆肥过程中气相和液相中的氨排放。

Biochar to reduce ammonia emissions in gaseous and liquid phase during composting of poultry manure with wheat straw.

作者信息

Janczak Damian, Malińska Krystyna, Czekała Wojciech, Cáceres Rafaela, Lewicki Andrzej, Dach Jacek

机构信息

Faculty of Agronomy and Bioengineering, Poznań University of Life Sciences, Wojska Polskiego 50, 60-637 Poznań, Poland.

Institute of Environmental Engineering, Częstochowa University of Technology, Brzeźnicka 60A, 42-200 Częstochowa, Poland.

出版信息

Waste Manag. 2017 Aug;66:36-45. doi: 10.1016/j.wasman.2017.04.033. Epub 2017 Apr 25.

Abstract

Composting of poultry manure which is high in N and dense in structure can cause several problems including significant N losses in the form of NH through volatilization. Biochar due to its recalcitrance and sorption properties can be used in composting as a bulking agent and/or amendment. The addition of a bulking agent to high moisture raw materials can assure optimal moisture content and enough air-filled porosity but not necessarily the C/N ratio. Therefore, amendment of low C/N composting mixtures with biochar at low rates can have a positive effect on composting dynamics. This work aimed at evaluating the effect of selected doses of wood derived biochar amendment (0%, 5% and 10%, wet weight) to poultry manure (P) mixed with wheat straw (S) (in the ratio of 1:0.4 on wet weight) on the total ammonia emissions (including gaseous emissions of ammonia and liquid emissions of ammonium in the collected condensate and leachate) during composting. The process was performed in 165L laboratory scale composting reactors for 42days. The addition of 5% and 10% of biochar reduced gaseous ammonia emission by 30% and 44%, respectively. According to the obtained results, the measure of emission through the condensate would be necessary to assess the impact of the total ammonia emission during the composting process.

摘要

氮含量高且结构致密的家禽粪便堆肥会引发若干问题,包括以氨的形式通过挥发造成大量氮损失。生物炭因其难降解性和吸附特性,可在堆肥中用作膨松剂和/或改良剂。向高水分原料中添加膨松剂可确保最佳含水量和充足的空气孔隙率,但不一定能保证碳氮比。因此,以低比例用生物炭改良低碳氮比的堆肥混合物,会对堆肥动态产生积极影响。这项工作旨在评估选定剂量(0%、5%和10%,湿重)的木材衍生生物炭改良剂添加到与小麦秸秆(S)混合(湿重比为1:0.4)的家禽粪便(P)中,对堆肥过程中总氨排放(包括收集的冷凝液和渗滤液中氨的气态排放和铵的液态排放)的影响。该过程在165升实验室规模的堆肥反应器中进行42天。添加5%和10%的生物炭分别使气态氨排放减少了30%和44%。根据所得结果,有必要通过冷凝液来测量排放,以评估堆肥过程中总氨排放的影响。

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