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本文引用的文献

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A microsensor for nitrate based on immobilized denitrifying bacteria.基于固定化脱氮菌的硝酸盐微传感器。
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2
Effects of Waterborne Copper, Cyanide, Ammonia, and Nitrite on Stress Parameters and Changes in Susceptibility to Saprolegniosis in Rainbow Trout (Oncorhynchus mykiss).水中铜、氰化物、氨和亚硝酸盐对虹鳟(Oncorhynchus mykiss)应激参数和水霉病易感性变化的影响。
Appl Environ Microbiol. 1995 Jun;61(6):2108-12. doi: 10.1128/aem.61.6.2108-2112.1995.
3
Microscale distribution of nitrification activity in sediment determined with a shielded microsensor for nitrate.用硝酸盐屏蔽微传感器测定沉积物中硝化活性的微观分布。
Appl Environ Microbiol. 1993 Oct;59(10):3287-96. doi: 10.1128/aem.59.10.3287-3296.1993.
4
Microelectrode measurements of the activity distribution in nitrifying bacterial aggregates.微电极法测定硝化细菌聚集体中的活性分布。
Appl Environ Microbiol. 1993 Feb;59(2):573-9. doi: 10.1128/aem.59.2.573-579.1993.
5
Microelectrode measurements of nitrate gradients in the littoral and profundal sediments of a meso-eutrophic lake (lake vechten, the Netherlands).微电极法测定中营养型湖泊(荷兰福登湖)浅湖和深湖沉积物中的硝酸盐梯度。
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Combined oxygen and nitrous oxide microsensor for denitrification studies.用于反硝化研究的联合氧气和氧化亚氮微传感器。
Appl Environ Microbiol. 1988 Sep;54(9):2245-9. doi: 10.1128/aem.54.9.2245-2249.1988.
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Metabolism and detoxification of nitrite by trout hepatocytes.虹鳟鱼肝细胞对亚硝酸盐的代谢与解毒作用。
Biochim Biophys Acta. 1996 Mar 15;1289(2):270-4. doi: 10.1016/0304-4165(95)00166-2.
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Ion-selective microelectrodes for measurement of intracellular ion concentrations.用于测量细胞内离子浓度的离子选择性微电极。
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Melanocyte lineage-specific antigen gp100 is recognized by melanoma-derived tumor-infiltrating lymphocytes.黑色素细胞谱系特异性抗原gp100可被黑色素瘤来源的肿瘤浸润淋巴细胞识别。
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10
Soil and sediment bacteria capable of aerobic nitrate respiration.能够进行好氧硝酸盐呼吸的土壤和沉积物细菌。
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一种用于环境生物膜分析的亚硝酸盐微传感器。

A nitrite microsensor for profiling environmental biofilms.

出版信息

Appl Environ Microbiol. 1997 Mar;63(3):973-7. doi: 10.1128/aem.63.3.973-977.1997.

DOI:10.1128/aem.63.3.973-977.1997
PMID:16535560
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1389125/
Abstract

A highly selective liquid membrane nitrite microsensor based on the hydrophobic ion-carrier aquocyanocobalt(III)-hepta(2-phenylethyl)-cobrynate is described. The sensor has a tip diameter of 10 to 15 (mu)m. The response is log-linear in freshwater down to 1 (mu)M NO(inf2)(sup-) and in seawater to 10 (mu)M NO(inf2)(sup-). A method is described for preparation of relatively large polyvinyl chloride (PVC)-gelled liquid membrane microsensors with a tip diameter of 5 to 15 (mu)m, having a hydrophilic coating on the tip. The coating and increased tip diameter resulted in more sturdy sensors, with a lower detection limit and a more stable signal than uncoated nitrite sensors with a tip diameter of 1 to 3 (mu)m. The coating protects the sensor membrane from detrimental direct contact with biomass and can be used for all PVC-gelled liquid membrane sensors meant for profiling microbial mats, biofilms, and sediments. Thanks to these improvements, liquid membrane sensors can now be used in complex environmental samples and in situ, e.g., in operating bioreactors. Examples of measurements in denitrifying, nitrifying, and nitrifying/denitrifying biofilms from wastewater treatment plants are shown. In all of these biofilms high nitrite concentrations were found in narrow zones of less than 1 mm.

摘要

一种基于疏水性离子载体 AquaCyanocobalt(III)-hepta(2-苯乙基)cobrynate 的高选择性液体膜亚硝酸盐微传感器被描述。传感器的尖端直径为 10 到 15 微米。在淡水和海水中,响应呈对数线性,在淡水中下限为 1 微摩尔每升亚硝酸盐,在海水中下限为 10 微摩尔每升亚硝酸盐。描述了一种用于制备相对较大的聚氯乙烯 (PVC)-凝胶化液体膜微传感器的方法,其尖端直径为 5 到 15 微米,尖端有亲水涂层。该涂层和增大的尖端直径使传感器更坚固,检测下限更低,信号更稳定,与尖端直径为 1 到 3 微米的未涂层亚硝酸盐传感器相比。该涂层可防止传感器膜与生物量的有害直接接触,并可用于所有旨在对微生物垫、生物膜和沉积物进行剖面分析的 PVC 凝胶化液体膜传感器。由于这些改进,液体膜传感器现在可以用于复杂的环境样本和原位,例如在运行的生物反应器中。展示了来自废水处理厂的反硝化、硝化和硝化/反硝化生物膜的测量示例。在所有这些生物膜中,都发现亚硝酸盐浓度在不到 1 毫米的狭窄区域内很高。