[Characterization of VOCs Emissions from Caged Broiler House in Winter].

Tian-Tian Cao, Yun-Hao Zheng, Yu Zhang, Yue Wang, Qun-Xin Cong, Yuan-Hao Wang, Hong-Min Dong
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Abstract

Volatile organic compound (VOCs) emissions from poultry and livestock facilities affect the surrounding environmental quality and human health. However, VOCs emissions from broiler houses have been less characterized, and studies of related dominant odorants, carcinogenic risk, and ozone formation potential are still lacking. To fill this research gap, VOCs pollutants emitted from a broiler house were investigated in this study. The VOCs emission characteristics of the broiler house during three different periods of broiler growth (early, middle, and later) were analyzed using gas chromatography-mass spectrometry. The results showed that 77 types of VOCs were detected, including 16 types of halogenated hydrocarbons, 21 types of alkanes, 5 types of olefins, 12 types of aromatic hydrocarbons, 15 types of oxygenated volatile organic compounds (OVOCs), and 8 types of sulfides. During the entire 42-day growth period, the concentrations of halogenated hydrocarbons, alkanes, olefin, aromatic hydrocarbons, and OVOCs in the broiler house showed few changes. However, with the growth of broilers, the intake of sulfur-containing amino acids and the fecal emission coefficient increased, resulting in the gradual conversion of the VOCs to sulfide. Therefore, emissions of sulfur-containing VOCs increased in the early and middle growth periods. Moreover, the increase in ventilation in the house during the later growth period resulted in a decrease in the sulfur-containing VOCs concentrations. The dominant odorants in the broiler house were naphthalene, ethyl acetate, acetaldehyde, carbon disulfide, dimethyl disulfide, methanethiol, methanethiol, and thiophene. Methanethiol had the highest odorous values, ranging from 2172.4 to 19090.9. Meanwhile, there were acceptable levels of carcinogenic risk in the early and middle growth periods, with a lifetime cancer risk (LCR) of 7.7×10-6 and 4.5×10-6, respectively. The average ozone formation potential (OFP) was (1458.9±787.4) μg·m-3. The results of this study can provide a scientific basis for the monitoring of malodorous substances and formulation of emission reduction strategies in broiler production.

[冬季笼式肉鸡舍挥发性有机化合物排放特征]。
家禽和牲畜设施排放的挥发性有机化合物(VOCs)影响周围环境质量和人类健康。然而,肉鸡舍挥发性有机化合物的排放特征较少,相关的主要气味、致癌风险和臭氧形成潜力的研究仍然缺乏。为了填补这一研究空白,本研究对肉鸡舍的VOCs污染物排放进行了研究。采用气相色谱-质谱联用技术分析了肉鸡生长早期、中期和后期3个不同时期鸡舍VOCs排放特征。结果表明,共检测到77种VOCs,其中卤代烃16种、烷烃21种、烯烃5种、芳烃12种、含氧挥发性有机物15种、硫化物8种。在整个42 d的生长期内,肉鸡鸡舍内卤化烃、烷烃、烯烃、芳烃和OVOCs的浓度变化不大。然而,随着肉鸡的生长,含硫氨基酸的摄入量和粪便排放系数的增加,导致挥发性有机化合物逐渐转化为硫化物。因此,在生长前期和中期,含硫VOCs的排放量有所增加。此外,在生长后期,室内通风的增加导致含硫VOCs浓度的降低。肉鸡舍的主要气味剂为萘、乙酸乙酯、乙醛、二硫化碳、二甲基二硫化碳、甲硫醇、甲硫醇和噻吩。甲烷硫醇的恶臭值最高,为2172.4 ~ 19090.9。与此同时,在生长早期和中期有可接受的致癌风险水平,终生癌症风险(LCR)分别为7.7×10-6和4.5×10-6。平均臭氧形成势(OFP)为(1458.9±787.4)μg·m-3。本研究结果可为肉鸡生产中恶臭物质的监测和减排策略的制定提供科学依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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