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一种用于在低压下从低温冰中采集生物样本的原型融冰探针。

A Prototype Ice-Melting Probe for Collecting Biological Samples from Cryogenic Ice at Low Pressure.

作者信息

Davis Ashley

机构信息

Cytoskeleton, Inc. , Denver, Colorado.

出版信息

Astrobiology. 2017 Aug;17(8):709-720. doi: 10.1089/ast.2016.1514.

Abstract

In the Solar System, the surface of an icy moon is composed of irregular ice formations at cryogenic temperatures (<200 K), with an oxidized surface layer and a tenuous atmosphere at very low pressure (<10 atm). A lander mission, whose aim is to collect and analyze biological samples from the surface ice, must contain a device that collects samples without refreezing liquid and without sublimation of ice. In addition, if the samples are biological in nature, then precautions must be taken to ensure the samples do not overheat or mix with the oxidized layer. To achieve these conditions, the collector must maintain temperatures close to maintenance or growth conditions of the organism (<293 K), and it must separate or neutralize the oxidized layer and be physically gentle. Here, we describe a device that addresses these requirements and is compatible with low atmospheric pressure while using no pumps. The device contains a heated conical probe with a central orifice, which is forced into surface ice and directs the meltwater upward into a reservoir. The force on the probe is proportional to the height of meltwater (pressure) obtained in the system and allows regulation of the melt rate and temperature of the sample. The device can collect 5-50 mL of meltwater from the surface of an ice block at 233-208 K with an environmental pressure of less than 10 atm while maintaining a sample temperature between 273 and 293 K. These conditions maintain most biological samples in a pristine state and maintain the integrity of most organisms' structure and function. Key Words: Europa-Icy moon-Microbe-Eukaryote-Spacecraft. Astrobiology 17, 709-720.

摘要

在太阳系中,冰卫星的表面由低温(<200 K)下的不规则冰层构成,其表面有一层氧化层,且存在极低气压(<10 atm)的稀薄大气。一项旨在从表面冰层采集和分析生物样本的着陆器任务,必须包含一种能够在不使液体重新冻结且不使冰升华的情况下采集样本的装置。此外,如果样本本质上是生物性的,那么必须采取预防措施以确保样本不会过热或与氧化层混合。为实现这些条件,采集器必须保持接近生物体维持或生长条件的温度(<293 K),并且必须分离或中和氧化层,且操作要轻柔。在此,我们描述一种满足这些要求且在不使用泵的情况下与低气压兼容的装置。该装置包含一个带有中心孔的加热锥形探针,该探针被压入表面冰层,并将融化的水向上引导至一个储液器中。作用在探针上的力与系统中获得的融化水高度(压力)成正比,并允许调节样本的融化速率和温度。该装置能够在环境压力小于10 atm的情况下,从233 - 208 K的冰块表面采集5 - 50毫升融化水,同时将样本温度保持在273至293 K之间。这些条件能使大多数生物样本保持原始状态,并维持大多数生物体结构和功能的完整性。关键词:木卫二 - 冰卫星 - 微生物 - 真核生物 - 航天器。《天体生物学》17卷,709 - 720页 。

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