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Autonomous sensors powered by a benthic microbial fuel cell provide long-term monitoring of the northeast pacific oxygen minimum zone

机译:由底栖微生物燃料电池供电的自主传感器可对东北太平洋的氧气最小区域进行长期监控

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An autonomous sensor platform powered by a benthic microbial fuel cell (BMFC) has been developed and deployed to supply hourly dissolved oxygen (O2), temperature and conductivity measurements from a remote location in the core of the oxygen minimum zone of the northeast Pacific. The platform uses a compact acoustic modem to both store and transmit sensor and energy harvesting measurements. Initial results from the first 150 days of operation are reported. The platform's sensor measurements compare well to data from a nearby cabled benthic experiment package maintained as a component of the “Endurance Array” of the U.S. Ocean Observatories Initiative. The promising performance of our platform makes it a candidate for an expanded O2 observing system needed to provide global O2 inventories through time. Only through analyses of wide-spread long-term measurements can ocean scientists corroborate model predictions that key sectors of the ocean are losing oxygen due to climate change.
机译:已经开发并部署了由底栖微生物燃料电池(BMFC)驱动的自主传感器平台,以从氧气中心的远程位置提供每小时溶解的氧气(O 2 ),温度和电导率测量值东北太平洋的最小区域。该平台使用紧凑的声学调制解调器来存储和传输传感器和能量收集测量值。报告最初运行150天的初步结果。该平台的传感器测量结果与来自附近的电缆底栖实验包的数据进行了很好的比较,该实验包是美国海洋观测计划的“耐力阵列”的一部分。我们平台的前途光明的性能使其成为扩展的O2观测系统的候选者,该系统可以随时提供全球O2清单。只有通过对广泛的长期测量进行分析,海洋科学家才能证实模型预测:由于气候变化,海洋的关键部分正在失去氧气。

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