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Biochar lowers ammonia emission and improves nitrogen retention in poultry litter composting

机译:生物炭降低了家禽垃圾堆肥中的氨气排放并改善了氮的保留

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摘要

The poultry industry produces abundant quantities of nutrient-rich litter, much of which is composted before use as a soil amendment. However, a large proportion of nitrogen (N) in poultry litter is lost via volatilisation during composting, with negative environmental and economic consequences. This study examined the effect of incorporating biochar during composting of poultry litter on ammonia (NH_3) volatilisation and N retention. Biochars produced at 550 ℃ from greenwaste (GWB) and poultry litter (PLB) feedstocks were co-composted with a mixture of raw poultry litter and sugarcane straw [carbon (C):N ratio 10:1] in compost bins. Ammonia emissions accounted for 17% of the total N (TN) lost from the control and 12-14% from the biochar-amended compost. The TN emitted as NH_3, as a percentage of initial TN, was significantly lower (P< 0.05) i.e. by 60% and 55% in the compost amended with GWB and PLB, respectively, relative to the control. The proportion of N retained in the finished compost, as a percentage of initial TN, was 84%, 78% and 67% for the GWB, PLB and nil biochar control, respectively. Lower concentration of dissolved organic C (DOC) together with higher activity of beta-glucosidase and leucine-aminopeptidase were found in the GWB-amended compost (cf. control). It is hypothesized that lower NH_3 emission in the GWB-amended compost was caused not just by the higher surface area of this biochar but could also be related to greater incorporation of ammonium (NH_4~+) in organic compounds during microbial utilisation of DOC. Furthermore, the GWB-amended compost retained more NH_4~+ at the end of composting than the PLB-amended compost. Results showed that addition of biochar, especially GWB, generated multiple benefits in composting of poultry litter: decrease of NH_3 volatilisation, decrease in NH_3 toxicity towards microorganisms, and improved N retention, thus enhancing the fertiliser value of the composted litter. It is suggested that the latter benefit is linked to a beneficial modification of the microbial environment.
机译:家禽业生产大量的营养丰富的垃圾,其中大部分在用作土壤改良剂之前都会被堆肥。但是,在堆肥过程中,家禽垫料中的大部分氮(N)会因挥发而损失掉,对环境和经济造成负面影响。这项研究检查了家禽垃圾堆肥过程中掺入生物炭对氨气(NH_3)挥发和氮保留的影响。在550℃下,由绿色废物(GWB)和家禽垫料(PLB)原料产生的生物炭与家禽垫料和甘蔗秸秆的混合物[碳(C):N的比例为10:1]混合堆肥。氨气排放量占对照损失的总N(TN)的17%,经生物炭改性的堆肥损失的12-14%。相对于对照,以NH_3排放的TN占初始TN的百分比显着降低(P <0.05),即分别用GWB和PLB修正的堆肥分别降低了60%和55%。对于GWB,PLB和零生物炭控制而言,最终堆肥中保留的N占初始TN的百分比分别为84%,78%和67%。在经GWB修正的堆肥中发现较低浓度的溶解有机C(DOC)以及较高的β-葡萄糖苷酶和亮氨酸-氨基肽酶活性(参见对照)。据推测,GWB改良堆肥中较低的NH_3排放不仅是由于该生物炭的较高表面积引起的,而且还可能与微生物对DOC的利用过程中有机化合物中铵盐(NH_4〜+)的大量掺入有关。此外,GWB改良堆肥在堆肥结束时比PLB改良堆肥保留更多的NH_4〜+。结果表明,添加生物炭,尤其是GWB,对家禽垫料的堆肥产生了多种好处:减少NH_3挥发,减少NH_3对微生物的毒性和改善氮素保留,从而提高了堆肥垫料的肥料价值。建议后者的益处与微生物环境的有益改变有关。

著录项

  • 来源
    《Waste Management》 |2017年第3期|129-137|共9页
  • 作者单位

    School of Environment and Rural Science, Agronomy and Soil Science, University of New England, Armidale, NSW 2351, Australia,Ministry of Food and Agriculture (MOFA), Accra Metropolitan Assembly, Ghana;

    School of Environment and Rural Science, Agronomy and Soil Science, University of New England, Armidale, NSW 2351, Australia,NSW Department of Primary Industries, Trevenna Rd., Armidale, NSW 2351, Australia;

    School of Environment and Rural Science, Agronomy and Soil Science, University of New England, Armidale, NSW 2351, Australia,NSW Department of Primary Industries, Wollongbar Primary Industries Institute, 1243 Bruxner Highway, Wollongbar, NSW 2477, Australia;

    School of Environment and Rural Science, Agronomy and Soil Science, University of New England, Armidale, NSW 2351, Australia,NSW Department of Primary Industries, Elizabeth Macarthur Agricultural Institute, Woodbridge Rd., Menangle, NSW 2568, Australia;

    School of Environment and Rural Science, Agronomy and Soil Science, University of New England, Armidale, NSW 2351, Australia;

    NSW Department of Primary Industries, Tamworth Agricultural Institute, 4 Marsden Park Road, Calala, NSW 2340;

    CREA - Centro di Ricerca per lo Studio delle Relazioni tra Pianta e Suolo, Via Trieste 23, 34170 Gorizia, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ammonium; Greenwaste; Volatilisation; Microbial function;

    机译:铵;浪费挥发微生物功能;

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