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电子自旋共振。第二部分:环境科学中的一种诊断方法。

Electron spin resonance. Part two: a diagnostic method in the environmental sciences.

机构信息

University of Reading.

出版信息

Sci Prog. 2011;94(Pt 4):339-413. doi: 10.3184/003685011X13130481780217.

Abstract

A review is presented of some of the ways in which electron spin resonance (ESR) spectroscopy may be useful to investigate systems of relevance to the environmental sciences. Specifically considered are: quantititave ESR, photocatalysis for pollution control; sorption and mobility of molecules in zeolites; free radicals produced by mechanical action and by shock waves from explosives; measurement of peroxyl radicals and nitrate radicals in air; determination of particulate matter polyaromatic hydrocarbons (PAH), soot and black carbon in air; estimation of nitrate and nitrite in vegetables and fruit; lipid-peroxidation by solid particles (silica, asbestos, coal dust); ESR of soils and other biogenic substances: formation of soil organic matter carbon capture and sequestration (CCS) and no-till farming; detection of reactive oxygen species in the photosynthetic apparatus of higher plants under light stress; molecular mobility and intracellular glasses in seeds and pollen; molecular mobility in dry cotton; characterisation of the surface of carbon black used for chromatography; ESR dating for archaeology and determining seawater levels; measurement of the quality of tea-leaves by ESR; green-catalysts and catalytic media; studies of petroleum (crude oil); fuels; methane hydrate; fuel cells; photovoltaics; source rocks; kerogen; carbonaceous chondrites to find an ESR-based marker for extraterrestrial origin; samples from the Moon taken on the Apollo 11 and Apollo 12 missions to understand space-weathering; ESR studies of organic matter in regard to oil and gas formation in the North Sea; solvation by ionic liquids as green solvents, ESR in food and nutraceutical research.

摘要

本文综述了电子自旋共振(ESR)光谱在环境科学相关体系研究中的一些应用。具体包括:定量 ESR、光催化用于污染控制;沸石中分子的吸附和迁移;机械作用和爆炸冲击波产生的自由基;空气中过氧自由基和硝酸盐自由基的测量;空气中颗粒物质多环芳烃(PAH)、烟尘和黑碳的测定;蔬菜和水果中硝酸盐和亚硝酸盐的估计;固体颗粒(二氧化硅、石棉、煤粉)的脂质过氧化;土壤和其他生物物质的 ESR:土壤有机物质的形成、碳捕获和封存(CCS)和免耕农业;高光胁迫下高等植物光合作用装置中活性氧物种的检测;种子和花粉中的分子迁移和细胞内玻璃;干棉花中的分子迁移;用于色谱的炭黑表面特性;考古学中的 ESR 测年和测定海水水位;通过 ESR 测量茶叶质量;绿色催化剂和催化介质;石油(原油)研究;燃料;甲烷水合物;燃料电池;光伏;烃源岩;干酪根;碳质球粒陨石,寻找外星起源的 ESR 标志物;阿波罗 11 号和 12 号任务从月球采集的样本,以了解太空风化;北海水域油气形成中有机质的 ESR 研究;离子液体作为绿色溶剂的溶剂化作用,食品和营养研究中的 ESR。

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本文引用的文献

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Electron spin resonance. Part one: a diagnostic method in the biomedical sciences.
Sci Prog. 2011;94(Pt 1):16-96. doi: 10.3184/003685011X12982218769939.
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