The Univ. of Georgia, Dep. of Biological and Agricultural Engineering, Driftmier Engineering Center, Athens, GA 30602, USA.
J Environ Qual. 2010 Jul-Aug;39(4):1236-42. doi: 10.2134/jeq2009.0337.
Poultry litter (PL) is a potentially underused fertilizer because it contains appreciable amounts of N, P, K, and micronutrients. However, treatments like composting to reduce potential pathogens, weed seeds, and odor often result in high losses of N through NH3 volatilization. Biochar (BC) has been shown to act as an absorber of NH3 and water-soluble NH4+ and might therefore reduce losses of N during composting of manure. We produced three PL compost mixtures that consisted of PL without added BC (BCO), PL + 5% BC (BC5), and PL + 20% BC (BC20). The BC was produced from pine chips and used without further modifications. Three replicates of each treatment were placed in nine bioreactors to undergo composting for 42 d. The entire composting experiment was repeated three times in a complete-block design. Moisture content, temperature, pH, mass loss, gas (NH3, CO2, H2S) emissions, C, and nutrient contents were measured periodically throughout the experiments. Results showed no difference in PL mass loss with BC addition. Moisture content decreased, pH increased significantly, and peak CO2 and temperatures were significantly higher with BC20 compared with BC0. These results indicate a faster decomposition of PL if amended with BC. Ammonia concentrations in the emissions were lower by up to 64% if PL was mixed with BC (BC20), and total N losses were reduced by up to 52%. Biochar might be an ideal bulking agent for composting N-rich materials.
家禽粪便(PL)是一种潜在的未充分利用的肥料,因为它含有相当数量的 N、P、K 和微量元素。然而,为了减少潜在的病原体、杂草种子和气味而进行的处理,如堆肥,通常会导致大量的 N 通过 NH3 挥发而损失。生物炭(BC)已被证明可以作为 NH3 和水溶性 NH4+ 的吸收剂,因此可能会减少堆肥过程中 manure 中 N 的损失。我们制作了三种 PL 堆肥混合物,分别为不添加 BC 的 PL(BCO)、添加 5% BC 的 PL(BC5)和添加 20% BC 的 PL(BC20)。BC 由松木屑制成,未经进一步修改即使用。每个处理重复三次,共九个生物反应器进行 42 天的堆肥。整个堆肥实验在完整块设计中重复了三次。在实验过程中定期测量水分含量、温度、pH 值、质量损失、气体(NH3、CO2、H2S)排放、C 和养分含量。结果表明,添加 BC 对 PL 质量损失没有影响。水分含量降低,pH 值显著升高,与 BCO 相比,BC20 的 CO2 和温度峰值显著升高。这些结果表明,如果用 BC 改良 PL,则 PL 的分解速度会更快。如果 PL 与 BC(BC20)混合,排放物中的氨浓度可降低高达 64%,总 N 损失可降低高达 52%。生物炭可能是富氮材料堆肥的理想膨松剂。