Effect of Improved Hive Cover Designs on Internal Microclimate and Colony Establishment of West African Honeybees (Apis mellifera adansonii L.) in Awka, Nigeria

B. Ononye, C. E. Akunne, E. O. Ogbuefi, T. E. Okeke, K. P. Okafor, E. I. Azaka, G. E. Obiyo, C. O. Aniefuna, P. C. Akwuaka, C. A. Chidi
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Abstract

Hive cover designs majorly affects the microclimate and colony establishment of African honeybee colonies in Nigeria. It became pertinent therefore to assess the effect of modified hive cover designs on the internal microclimate and colony establishment of West African honeybee (Apis mellifera adansonii L.) Colonies in Awka, Nigeria. Four insulating materials were used to construct the covers of twelve modified frame bar hives and designated: Control (plywood); T1 (warped boards); T2 (PVC) and T3 (foam). Each hive treatment was replicated three times. Data on ambient and hive microclimate as well as the colonization of honeybees’ colonies were observed and reported. The results indicated that the control had the highest temperature (31.86 ºC) while T1 (30.40ºC) had the least. The hive temperature was higher in March, 2023 (32.72°C) while August (29.87°C) had the least. The highest relative humidity (73.18%) was recorded in T1 while the control had the least (64.38%). The hive temperature and relative humidity was significantly affected by hive cover designs and different months of the study period (P<0.05). The highest colonization by African honeybees was observed in the control (100%) but none occurred in T2 (0.00%). Colonization of the Control hives occurred in July, October, and November, 2022 while that of T1 and T3 occurred in December, 2022. Colony establishment of African honeybees was not significantly affected by hive cover designs (p=0.26) and different months of the study period (p=0.24). It was concluded that beekeepers should adopt the insulation of hiver covers with plywood wood since it had 100% colonization of West African honeybees’.
改进蜂箱盖设计对尼日利亚Awka地区西非蜜蜂内部小气候和群体建立的影响
蜂箱盖设计主要影响尼日利亚非洲蜂群的小气候和群体建立。因此,评价改良蜂箱盖设计对西非蜜蜂(Apis mellifera adansonii L.)内部小气候和群体建立的影响是有意义的。在尼日利亚的Awka的殖民地。使用了四种绝缘材料来建造12个改进框架棒箱的外壳,并指定为:Control(胶合板);T1(翘曲板);T2 (PVC)和T3(泡沫塑料)。每个蜂箱处理重复三次。对环境和蜂房小气候以及蜂群的定植情况进行了观察和报道。结果表明,对照组温度最高(31.86℃),T1温度最低(30.40℃)。蜂箱温度以2023年3月最高(32.72°C), 8月最低(29.87°C)。T1相对湿度最高(73.18%),对照最低(64.38%)。蜂箱盖设计和不同月份对蜂箱温度和相对湿度有显著影响(P<0.05)。非洲蜜蜂在对照组的定殖率最高(100%),但在T2中没有发生(0.00%)。对照蜂箱的殖民化发生在2022年7月、10月和11月,T1和T3蜂箱的殖民化发生在2022年12月。蜂箱盖设计(p=0.26)和研究周期的不同月份对非洲蜜蜂的群体建立无显著影响(p=0.24)。结论是,养蜂人应采用胶合板木隔热蜂巢盖,因为它有100%的西非蜜蜂殖民化。
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