...
首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Liquid manure storage temperature is affected by storage design and management practices-A modelling assessment
【24h】

Liquid manure storage temperature is affected by storage design and management practices-A modelling assessment

机译:液体粪便储存温度受到存储设计和管理实践的影响 - 建模评估

获取原文
获取原文并翻译 | 示例

摘要

A numerical model was used to predict effects of different liquid manure storage designs and management practices on manure temperature (T-m). Manure storage designs included various tank diameters, proportion of the storage above-ground, addition of a roof, and floating covers (synthetic or straw). Manure management practices included the frequency of manure removal, manure agitation, and the depth of manure remaining after removal. Results showed that smaller diameter tanks with a greater depth had lower peak T-m. There was no appreciable effect on T-m from constructing a storage tank above-ground vs in-ground. Adding a roof decreased peak T-m, for spring manure removal, but not autumn removal. Floating synthetic covers with high solar absorptivity (i.e. dark colour) greatly increased peak T-m whereas straw covers had the opposite effect-decreasing peak T-m . Removing manure twice per year (spring and autumn) or once annually in spring led to shallower manure depth in summer and greater peak T-m in contrast, once annual autumn removal had greater depth and lower peak T-m in summer. Manure agitation during the warm season increased peak T(m )substantially for autumn manure removal, and slightly for spring removal. Leaving less manure in storage after spring removal led to a more rapid increase in T-m and a higher peak T(m )in summer. Overall, the study highlights that manure storage design and management practices can greatly affect T-m with peak T-m being increased or decreased up to 8 degrees C in some scenarios. These findings emphasize that T-m is dynamic and that air temperature is an overly simplistic surrogate for T-m . Thus, it is important that studies examining greenhouse gas emissions from liquid manure also measure manure temperature. Insights from the study may guide future research linking liquid manure storage design and management to T(m )and related effects on greenhouse gases such as methane.
机译:使用数值模型来预测不同液体粪便存储设计和管理实践对粪便温度(T-M)的影响。粪便存储设计包括各种罐式直径,储存的比例 - 地上,添加屋顶,浮动盖(合成或稻草)。粪便管理实践包括粪便移除,粪便搅拌和饲养后粪便深度的频率。结果表明,具有更大深度的较小直径槽具有较低的T-M。没有明显的影响T-M从地面上面的储存罐构建储存罐。添加屋顶减少T-M,用于春季粪便去除,但不是秋天去除。浮动合成盖具有高太阳能吸收率(即暗颜色)大大增加了峰T-M,而秸秆覆盖物具有相反的效果降低峰T-M。每年两次去除粪便(春季和秋季)或春天每年一次导致夏季较浅的粪便深度,相比之下,夏季每年秋季去除一度秋季秋季秋季的峰值较大。在温暖季节期间粪肥搅拌会增加峰值T(m),用于秋季粪便去除,略微去除春季粪便。在春天移除后留下较少的粪便导致夏季在T-M和较高的峰值T(m)中更快地增加。总的来说,该研究突出显示粪便存储设计和管理实践在某些情况下,峰值T-M的峰值T-M增加或减少8℃。这些发现强调T-M是动态的,并且空气温度是T-M的过度简单的代理。因此,重要的是研究从液体粪便中检查温室气体排放也测量粪便温度。研究中的见解可能引导将来的研究将液体粪便存储设计和管理连接到T(m)和对温室气体等温室气体的相关影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号