National Oceanography Centre, European Way, SO14 3ZH, Southampton, U.K.
University of Southampton, Waterfront Campus, European Way, SO14 3ZH, Southampton, U.K.
Environ Sci Technol. 2021 Nov 2;55(21):14968-14978. doi: 10.1021/acs.est.1c03517. Epub 2021 Oct 13.
We report a new, autonomous Lab-on-Chip (LOC) microfluidic pH sensor with a 6000 m depth capability, ten times the depth capability of the state of the art autonomous spectrophotometric sensor. The pH is determined spectrophotometrically using purified -Cresol Purple indicator dye offering high precision (<0.001 pH unit measurement reproducibility), high frequency (every 8 min) measurements on the total proton scale from the surface to the deep ocean (to 600 bar). The sensor requires low power (3 W during continuous operation or ∼1300 J per measurement) and low reagent volume (∼3 μL per measurement) and generates small waste volume (∼2 mL per measurement) which can be retained during deployments. The performance of the LOC pH sensor was demonstrated on fixed and moving platforms over varying environmental salinity, temperature, and pressure conditions. Measurement accuracy was +0.003 ± 0.022 pH units ( = 47) by comparison with validation seawater sample measurements in coastal waters. The combined standard uncertainty of the sensor pH measurements was estimated to be ≤0.009 pH units at pH 8.5, ≤ 0.010 pH units at pH 8.0, and ≤0.014 pH units at pH 7.5. Integrated on autonomous platforms, this novel sensor opens new frontiers for pH observations, especially within the largest and most understudied ecosystem on the planet, the deep ocean.
我们报告了一种新的、自主式芯片实验室(LOC)微流控 pH 传感器,其深度能力为 6000 米,是最先进的自主分光光度传感器深度能力的十倍。pH 值通过使用纯化的 - 甲酚紫指示剂染料分光光度法确定,该方法具有高精度(<0.001 pH 单位测量重现性)、高频(每 8 分钟从表面到深海(至 600 巴)进行总质子尺度测量)。该传感器需要低功耗(连续运行时为 3 W 或每次测量约 1300 J)和低试剂体积(每次测量约 3 μL),并产生小的废物量(每次测量约 2 mL),可在部署期间保留。LOC pH 传感器在不同的环境盐度、温度和压力条件下在固定和移动平台上进行了性能测试。与沿海水域的验证海水样本测量相比,测量精度为+0.003 ± 0.022 pH 单位( = 47)。该传感器 pH 测量的合并标准不确定度估计为在 pH 8.5 时≤0.009 pH 单位,在 pH 8.0 时≤0.010 pH 单位,在 pH 7.5 时≤0.014 pH 单位。集成在自主式平台上,这种新型传感器为 pH 观测开辟了新的领域,特别是在地球上最大、研究最少的生态系统——深海中。