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Chemical Composition of the Neochetina eichhorniae and Neochetina bruchi and Their Potential for Use as Livestock Feed
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作者 Ian Kimani Guchu Monica Ayieko Lorna-Grace Okotto 《Advances in Entomology》 2023年第1期38-46,共9页
Neochetina eichhorniae and Neochetina bruchi have been used for over four decades as Eichhorniae crassipes classical biological control agents globally. Despite the success of bio-control against the water hyacinth gl... Neochetina eichhorniae and Neochetina bruchi have been used for over four decades as Eichhorniae crassipes classical biological control agents globally. Despite the success of bio-control against the water hyacinth globally at different levels and environmental sustainability, biological control against water hyacinth seems to have overlooked the socio-economic sustainability in assisting the ravaged communities, gain resilience and adapt to the challenges of the invasive alien species. This manuscript evaluates the potential to draw out more from biological control of the water hyacinth by evaluating the potential to utilize Neochetina eichhorniae and Neochetina bruchi as feed. The live insects of the two species were collected from the water hyacinth marts in the nearby L. Victoria in Siaya county, Kenya. Where they were then transferred for semi-cultivation in localized ponds for reproduction and closer monitoring. The ponds having been set up in completely randomized design while in the open within the same climatic region mimicked the water quality and most abiotic conditions of the lake necessary for the insects’ and host plant acclimatization and reproduction. The samples for proximate analysis were collected from these ponds as per the research and experimental design. The chemical compositions of the Neochetina bruchi, N. eichhorniae and their larvae composite, satisfactorily compared to basic fish feed requirements, specifically as a protein source having crude protein (CP) percentage per DM of 55.0350 ± 0.025, 54.4350 ± 0.035 and 62.2750 ± 0.025 respectively. 展开更多
关键词 BIO-CONTROL Eichhornia crassipes ENTOMOPHAGY Neochetina bruchi Neochetina eichorniae PROXIMATE
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生物浮岛与漂浮植物对开放池塘水质净化效果 被引量:13
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作者 刘旻慧 闻学政 +6 位作者 张志勇 王岩 刘海琴 张迎颖 宋伟 严少华 秦红杰 《水生生物学报》 CAS CSCD 北大核心 2017年第6期1318-1326,共9页
采用自主研发流量可控的密闭漂浮性水槽开展河道原位模拟实验,研究了挺水植物菖蒲(种植于浮岛上)与漂浮植物凤眼莲对受到城市污水污染的开放池塘水质净化效果以及系统中氮磷等污染物的归趋。结果表明,菖蒲和凤眼莲对水体藻类密度和叶绿... 采用自主研发流量可控的密闭漂浮性水槽开展河道原位模拟实验,研究了挺水植物菖蒲(种植于浮岛上)与漂浮植物凤眼莲对受到城市污水污染的开放池塘水质净化效果以及系统中氮磷等污染物的归趋。结果表明,菖蒲和凤眼莲对水体藻类密度和叶绿素a削减率达到90%以上,对COD_(Mn)浓度削减率达到45%以上。经过10 m长水槽后,种植了凤眼莲的水槽水体其TN和TP浓度分别由3.71和0.24 mg/L降低至1.71和0.09 mg/L,而设置有菖蒲浮岛的水槽其水体TN和TP浓度则分别降低至2.69和0.16 mg/L。在水体N、P的总削减量中,凤眼莲吸收作用分别占84.31%和77.52%,而在菖蒲浮岛系统中,菖蒲的吸收作用仅分别占7.72%和8.55%,菖蒲净化系统中氮、磷的物理沉淀量显著高于凤眼莲组,分别达到35.26%和51.58%,但仍有57%和39%以上的氮和磷去向未知,推测可能与浮岛上生长的生物膜有关。研究结果可为选用凤眼莲和浮岛植物修复技术进行污染水体生态修复理论研究与实践运用提供借签和参考。 展开更多
关键词 菖蒲 凤眼莲 水质净化 植物修复
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种植凤眼莲河道的水流三维数值模拟
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作者 范济神 邱耿耀 赵振兴 《水利水电科技进展》 CSCD 北大核心 2012年第3期10-13,23,共5页
采用VOF法对种植凤眼莲的河道的自由水面进行跟踪,将凤眼莲聚集带简化为多孔介质区域,在考虑惯性损失的情况下按不分区和分区2种方案分别对河道水流进行三维数值模拟。数值模拟结果与试验结果的对比表明:分区方案在模拟水位壅高、流速... 采用VOF法对种植凤眼莲的河道的自由水面进行跟踪,将凤眼莲聚集带简化为多孔介质区域,在考虑惯性损失的情况下按不分区和分区2种方案分别对河道水流进行三维数值模拟。数值模拟结果与试验结果的对比表明:分区方案在模拟水位壅高、流速分布、紊动特性等方面均比不分区方案更符合实际情况;用分区多孔介质模型模拟凤眼莲河道水流是可行的。 展开更多
关键词 凤眼莲河道 VOF法 多孔介质 三维数值模拟
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