生物炭与家禽窝产仔处理(PLT)添加剂对肉鸡窝产仔质量和禽鸟生产性能的影响

IF 1.6 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Journal of Applied Poultry Research Pub Date : 2024-10-26 DOI:10.1016/j.japr.2024.100499
Maryam K. Mohammadi-Aragh , Katie L. Norris , Gary D. Chesser Jr. , John W. Lowe , Jeffrey D. Evans , Joseph L. Purswell , John E. Linhoss
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引用次数: 0

摘要

肉鸡产仔管理对禽类整体健康和生产性能至关重要。不良的凋落物条件会导致氨(NH3)挥发和水分增加,这对鸟类的生产力和福利产生负面影响。家禽垃圾处理®(PLT)是一种用于减少氨(NH3)挥发的垃圾修正剂;然而,PLT不处理凋落物含水量(MC)。生物炭(BC)是一种具有高表面积的多孔材料,可以吸收水分并减轻NH3的挥发。本研究的目的是评估在42天的鸡群生长过程中,BC和PLT对肉鸡MC、NH3挥发和生产性能的影响。鸟类饲养在1.52米× 2.74米的围栏内,围栏内装有用过的垃圾、喂食器和饮水线。还评估了水活度、pH值和养分含量。表面施加PLT和BC,剂量分别为0.73 kg∙m-2和30% (vol/vol)。对照组为未改良的凋落物。在第0、17、29和41天采集凋落物样本。分别于第0、14、28、41天测定NH3。凋落物处理和生长时间显著影响NH3挥发和MC,总体而言,PLT的NH3浓度最低。在第41天,BC的NH3最高(104 ppm)。bc处理凋落物MC最低,NH3最高,plt处理凋落物NH3挥发最低。凋落物处理对鸟的生产性能没有影响,说明这些修改对鸟的生产性能没有负面影响。BC可促进低MC;但其对NH3挥发的影响还需进一步研究。
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Comparison of biochar and Poultry Litter Treatment (PLT) amendments on broiler litter quality and bird performance
Broiler litter management is critical for overall bird health and performance. Poor litter conditions can result in increased ammonia (NH3) volatilization and moisture, which negatively impact bird productivity and welfare. Poultry Litter Treatment® (PLT) is a litter amendment that has been applied to reduce ammonia (NH3) volatilization; however, PLT does not address litter moisture content (MC). Biochar (BC) is a porous material with a high surface area that may absorb moisture and mitigate NH3 volatilization. The objectives of this study were to evaluate the effects of BC and PLT on MC, NH3 volatilization, and broiler performance during a 42-day flock grow-out. Birds were reared in 1.52 m x 2.74 m pens containing used litter, feeders, and a drinker line. Water activity, pH, and nutrient content were also evaluated. PLT and BC were surface applied at 0.73 kg∙m-2 and 30 % (vol/vol). A control of non-amended litter was included. Litter samples were collected at d 0, 17, 29, and 41. NH3 was measured on d 0, 14, 28, and 41. Litter treatment and grow-out time significantly impacted NH3 volatilization and MC. Overall, PLT had the lowest NH3 concentrations. On d 41, BC had the highest NH3 (104 ppm). BC-treated litter had the lowest MC and highest NH3, while PLT-treated litter was lowest in NH3 volatilization. Litter treatment had no effect on bird performance, indicating these amendments did not negatively affect bird performance. BC may promote lower MC; however, further research is needed to understand its effects on NH3 volatilization.
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来源期刊
Journal of Applied Poultry Research
Journal of Applied Poultry Research 农林科学-奶制品与动物科学
CiteScore
4.10
自引率
10.50%
发文量
80
审稿时长
104 days
期刊介绍: The Journal of Applied Poultry Research (JAPR) publishes original research reports, field reports, and reviews on breeding, hatching, health and disease, layer management, meat bird processing and products, meat bird management, microbiology, food safety, nutrition, environment, sanitation, welfare, and economics. As of January 2020, JAPR will become an Open Access journal with no subscription charges, meaning authors who publish here can make their research immediately, permanently, and freely accessible worldwide while retaining copyright to their work. Papers submitted for publication after October 1, 2019 will be published as Open Access papers. The readers of JAPR are in education, extension, industry, and government, including research, teaching, administration, veterinary medicine, management, production, quality assurance, product development, and technical services. Nutritionists, breeder flock supervisors, production managers, microbiologists, laboratory personnel, food safety and sanitation managers, poultry processing managers, feed manufacturers, and egg producers use JAPR to keep up with current applied poultry research.
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