首页> 外文期刊>Applied Engineering in Agriculture >Construction of an electrical device for sampling earthworm populations in the field.
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Construction of an electrical device for sampling earthworm populations in the field.

机译:用于野外采样sampling的电气设备的构造。

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Methods for the estimation of earthworm population densities range from laborious hand-sorting, through chemical applications, to electrical extraction. Of these methods, only the electrical extraction allows for sampling of earthworms without detrimental soil disturbance or contamination. However, a device to extract earthworms under controlled electronic conditions is not readily available to researchers. An improved design on the long-established electrical "octet" extraction device is presented. This improved design allows for hand-built construction of an apparatus that can be connected to external drive controls, including data loggers and PC-controlled drivers. This design also allows for modification of sampling settings to suit specific environmental conditions, with control of voltage, and operation with a static or dynamic electrical field being generated. Operational ability to extract earthworms was validated in field trials in both a forested area and an agricultural field. Earthworm sampling efficiencies calculated in comparison to hand-sorting averaged around 90% for the electrical device; however, because of limited field use in this instance, these efficiencies support the general functioning of the apparatus rather than an absolute assurance of quality. In using this hand-built device we established that this design is capable of extracting both native and exotic earthworms of various age and size class under various soil conditions, that soil disturbance and contamination can be avoided, and that the device can easily be transported into remote locations.
机译:估算population种群密度的方法范围很广,从费力的手工分拣到化学应用再到电萃取。在这些方法中,只有电提取可以对sampling进行采样,而不会造成有害的土壤干扰或污染。但是,研究人员不容易获得在受控电子条件下提取earth的设备。提出了对已建立很久的电气“八位字节”提取设备的改进设计。这种改进的设计允许手工构建可以连接到外部驱动器控件的设备,包括数据记录器和PC控制的驱动器。该设计还允许修改采样设置以适合特定的环境条件,并控制电压,并在产生静态或动态电场的情况下运行。在林区和农田中的田间试验均证实了提取earth的操作能力。与手工分类相比,电气设备的calculated采样效率平均约为90%;然而,由于在这种情况下现场使用受限,这些效率支持了设备的一般功能,而不是对质量的绝对保证。通过使用这种手工制作的设备,我们确定该设计能够在各种土壤条件下提取各种年龄和大小等级的本地和外来that,可以避免土壤干扰和污染,并且可以轻松地将其运输到偏远地区。

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