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将聚氧化苯乙烯剂量计与中性密度滤光片水下部署,以测量长期太阳 UVB 暴露。

Underwater deployment of the polyphenylene oxide dosimeter combined with a neutral density filter to measure long-term solar UVB exposures.

机构信息

CSIRO Land and Water, Highett, Victoria 3190, Australia.

出版信息

J Photochem Photobiol B. 2012 Jul 2;112:31-6. doi: 10.1016/j.jphotobiol.2012.04.004. Epub 2012 Apr 12.

DOI:10.1016/j.jphotobiol.2012.04.004
PMID:22551692
Abstract

Numerous studies have conclusively shown how solar ultraviolet radiation (UV) (290-400 nm) has a negative impact upon underwater ecosystems. As a consequence of this, UV must be accurately evaluated in aquatic locations by employing a non-invasive measurement technique in order to better understand the damage it causes on both a macro and micro scale and provide solutions on how to manage its impact over both short and long time scales. Specifically, the UVB (290-320 nm) has the highest potential for causing stress to marine organisms. This manuscript details the deployment of a cost-effective and easily useable UVB detection dosimeter based on polyphenylene oxide (PPO) combined with a neutral density filter (NDF) derived from polyethylene. A long-term calibration regime performed over an extensive solar zenith angle range (SZA) in summer at a semi-tropical location showed that the PPO dosimeter used in conjunction with a polyethylene NDF could measure UVB exposures underwater up to 125 h in daylight (11-12 days approximately) before reaching near total saturation, providing an exposure limit as much as seven times greater that what was previously achievable with PPO dosimeters deployed without an NDF and approximately 42 times larger than those measured previously with polysulphone dosimeters.

摘要

大量研究已经明确表明,太阳紫外线辐射(UV)(290-400nm)对水下生态系统有负面影响。因此,必须在水生环境中准确评估 UV,采用非侵入式测量技术,以便更好地了解其在宏观和微观尺度上造成的破坏,并提供管理其短期和长期影响的解决方案。具体来说,UVB(290-320nm)对海洋生物造成的压力最大。本文详细介绍了一种基于聚苯醚(PPO)的经济高效且易于使用的 UVB 检测剂量计的部署情况,该剂量计结合了源自聚乙烯的中性密度滤光片(NDF)。在亚热带地区夏季进行的大范围太阳天顶角(SZA)的长期校准实验表明,与聚乙烯 NDF 结合使用的 PPO 剂量计可在日光下测量水下 UVB 暴露长达 125 小时(约 11-12 天),直到接近完全饱和,这提供了比以前没有使用 NDF 部署的 PPO 剂量计更大的暴露极限,大约是先前使用聚砜剂量计测量值的 42 倍。

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