WordNet
- in or to a high position, amount, or degree; "prices have gone up far too high"
- a state of altered consciousness induced by alcohol or narcotics; "they took drugs to get a high on"
- a state of sustained elation; "Im on a permanent high these days"
- an air mass of higher than normal pressure; "the east coast benefits from a Bermuda high"
- a lofty level or position or degree; "summer temperatures reached an all-time high"
- a high place; "they stood on high and observed the countryside"; "he doesnt like heights" (同)heights
- at a great altitude; "he climbed high on the ladder" (同)high up
- used of sounds and voices; high in pitch or frequency (同)high-pitched
- happy and excited and energetic (同)in high spirits
- slightly and pleasantly intoxicated from alcohol or a drug (especially marijuana) (同)mellow
- in a rich manner; "he lives high" (同)richly, luxuriously
- (literal meaning) being at or having a relatively great or specific elevation or upward extension (sometimes used in combinations like `knee-high'
- far up toward the source; "he lives high up the river"
- greater than normal in degree or intensity or amount; "a high temperature"; "a high price"; "the high point of his career"; "high risks"; "has high hopes"; "the river is high"; "he has a high opinion of himself"
- the totality of surrounding conditions; "he longed for the comfortable environment of his living room"
- the area in which something exists or lives; "the country--the flat agricultural surround" (同)environs, surroundings, surround
- the degree of hotness or coldness of a body or environment (corresponding to its molecular activity)
- the somatic sensation of cold or heat
PrepTutorEJDIC
- 『高い』,高い所にある / 《数の後に置いて》高さが…ある / (数量・程度などが標準より)『高い』,大きい,激しい / (身分・地位が)『高い』,高貴な / 『気高い』,高潔な / (声の調子が)『高い』,鋭い / 値段の高い,金の掛かる,ぜいたくな / 楽しい,陽気な,上得意の / (時・季節が)盛りの,たけなわの / (色が)濃い,赤い / 《話》(酒・麻薬などに)酔って / 『高く』,高い所に / (価値・程度などが)高く,高度に,激しく / 〈C〉《話》高水準,高値 / 〈U〉(自動車の)高速ギア / 〈C〉《話》(麻薬などによる)酔った状態
- 『環境』,周囲の状況;《the~》自然環境
- 〈C〉〈U〉『温度』,気温 / 〈C〉〈U〉(人・動物の)『体温』 / 《a ~》平常より高い熱,高熱
- 《話》(あいさつとして)『やあ』,こんにちは / 《英》(注意を促す発声として)おい,ちょっと(hey)
UpToDate Contents
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English Journal
- Highly sensitive and selective optofluidics-based immunosensor for rapid assessment of Bisphenol A leaching risk.
- Long F1, Zhu A2, Zhou X3, Wang H4, Zhao Z3, Liu L3, Shi H5.Author information 1School of Environment and Natural Resources, Renmin University of China, Beijing, China. Electronic address: longf04@ruc.edu.cn.2Department of Chemistry, Massachusetts Institute of Technology, Cambridge, MA, USA.3State Key Joint Laboratory of ESPC, School of Environment, Tsinghua University, Beijing, China.4School of Environment and Natural Resources, Renmin University of China, Beijing, China.5State Key Joint Laboratory of ESPC, School of Environment, Tsinghua University, Beijing, China. Electronic address: hanchang@mails.thu.edu.cn.AbstractBisphenol A (BPA), a xenoestrogenic endocrine-disrupting chemical, is used in many consumer products worldwide and is widely detected in the environment and in food. Combining the advantages of evanescent wave fiber optic sensor and microfluidic technology, an all-fiber optofluidics-based bioassay platform (AFOB) was developed for the rapid immunoassay and assessment of BPA. The captured molecular BPA-bovine serum albumin was covalently immobilized on the surface of the fiber optic sensor. A mixture of different concentrations of BPA and a certain concentration of fluorescence-labeled anti-BPA monoclonal antibodies after pre-reaction was introduced to the optofluidic cell. A higher concentration of BPA reduced the fluorescence-labeled antibodies bound to the sensor surface and thus reduced fluorescence signals. Under optimal conditions, the BPA quantified as 0.5-100μg/L, with a detection limit of 0.06μg/L. The high selectivity of the sensor was evaluated in terms of its response to several potentially interfering chemicals. The potential interference of an environmental sample matrix was assessed by spiked samples, and the recovery of BPA ranged from 90% to 120% with relative standard deviation values of <9.1%. The AFOB and high-performance liquid chromatography had a desired correlation (R(2)=0.9958). The sensing platform was successfully used to assess BPA leaching from polycarbonate bottles at 45°C and 80°C, indicating that more BPA was substantially leached at elevated temperature and extend time. Thus, the developed sensing strategy can be an alternative method to rapidly analyze and assess the migration mechanism and fate of BPA or other pollutants.
- Biosensors & bioelectronics.Biosens Bioelectron.2014 May 15;55:19-25. doi: 10.1016/j.bios.2013.11.069. Epub 2013 Dec 4.
- Bisphenol A (BPA), a xenoestrogenic endocrine-disrupting chemical, is used in many consumer products worldwide and is widely detected in the environment and in food. Combining the advantages of evanescent wave fiber optic sensor and microfluidic technology, an all-fiber optofluidics-based bioassay p
- PMID 24355461
- Separation, enrichment and determination of ciprofloxacin using thermoseparating polymer aqueous two-phase system combined with high performance liquid chromatography in milk, egg, and shrimp samples.
- Chen B, Han J, Wang Y, Sheng C, Liu Y, Zhang G, Yan Y.Author information School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China.AbstractAqueous two-phase systems (ATPS) are potential industrial technology in separation and enrichment areas. However, the main problem is that ATPS could not be recycled, which results in a high cost and pollution of the environment. In this work, a new ATPS which formed by thermoseparating polymer EOPO with phosphate was developed for the separation and enrichment of ciprofloxacin (CIP). In the first procedure, the single factors have been discussed. The results showed that when the amounts of EOPO (80%, w/w) and K2HPO4 (55%, w/w) were 3.0 mL, 7.0 mL, respectively, pH=11, the extraction efficiency of CIP could reach 97.7%. In the second extraction, with the temperature induced, the extraction efficiency of CIP showed 85.6%. Additionally, the phase components were successfully recycled and reused for more than two times. The new method was successfully applied to the determination of CIP in real samples with detection limits of 6.8 ng g(-1).
- Food chemistry.Food Chem.2014 Apr 1;148:105-11. doi: 10.1016/j.foodchem.2013.10.011. Epub 2013 Oct 11.
- Aqueous two-phase systems (ATPS) are potential industrial technology in separation and enrichment areas. However, the main problem is that ATPS could not be recycled, which results in a high cost and pollution of the environment. In this work, a new ATPS which formed by thermoseparating polymer EOPO
- PMID 24262533
- Removal of sulfamethoxazole sulfonamide antibiotic from water by high silica zeolites: A study of the involved host-guest interactions by a combined structural, spectroscopic, and computational approach.
- Blasioli S1, Martucci A2, Paul G3, Gigli L4, Cossi M5, Johnston CT6, Marchese L7, Braschi I8.Author information 1Department of Agricultural Sciences, University of Bologna, Viale G. Fanin 44, 40127 Bologna, Italy. Electronic address: sonia.blasioli@unibo.it.2Department of Physics and Earth Sciences, University of Ferrara, Via G. Saragat, 1, 44100 Ferrara, Italy. Electronic address: annalisa.martucci@unife.it.3Dipartimento di Scienze e Innovazione Tecnologica, Università del Piemonte Orientale A. Avogadro, Viale T. Michel 11, 15121 Alessandria, Italy; Centro Interdisciplinare Nano-SiSTeMI, Università del Piemonte Orientale A. Avogadro, Viale T. Michel 11, 15121 Alessandria, Italy. Electronic address: geo.paul@mfn.unipmn.it.4Department of Physics and Earth Sciences, University of Ferrara, Via G. Saragat, 1, 44100 Ferrara, Italy. Electronic address: 90647@studenti.unimore.it.5Dipartimento di Scienze e Innovazione Tecnologica, Università del Piemonte Orientale A. Avogadro, Viale T. Michel 11, 15121 Alessandria, Italy; Centro Interdisciplinare Nano-SiSTeMI, Università del Piemonte Orientale A. Avogadro, Viale T. Michel 11, 15121 Alessandria, Italy. Electronic address: maurizio.cossi@mfn.unipmn.it.6Department of Agronomy, Purdue University, 915 West State Street, West Lafayette, IN 47907-2053, USA. Electronic address: cliffjohnston@purdue.edu.7Dipartimento di Scienze e Innovazione Tecnologica, Università del Piemonte Orientale A. Avogadro, Viale T. Michel 11, 15121 Alessandria, Italy; Centro Interdisciplinare Nano-SiSTeMI, Università del Piemonte Orientale A. Avogadro, Viale T. Michel 11, 15121 Alessandria, Italy. Electronic address: leonardo.marchese@mfn.unipmn.it.8Department of Agricultural Sciences, University of Bologna, Viale G. Fanin 44, 40127 Bologna, Italy; Centro Interdisciplinare Nano-SiSTeMI, Università del Piemonte Orientale A. Avogadro, Viale T. Michel 11, 15121 Alessandria, Italy. Electronic address: ilaria.braschi@unibo.it.AbstractSulfonamide antibiotics are persistent pollutants present in surface and subsurface waters in both agricultural and urban environments. Sulfonamides are of particular concern in the environment because they are known to induce high levels of bacterial resistance. Adsorption of sulfamethoxazole sulfonamide antibiotic into three high silica zeolites (Y, mordenite, and ZSM-5) with pore opening sizes comparable to sulfamethoxazole dimensions is reported. Sulfamethoxazole was almost completely removed from water by zeolite Y and MOR in a few minutes. Adsorption onto ZSM-5 showed an increased kinetics with increasing temperature. Antibiotic sorption was largely irreversible with little antibiotic desorbed. Sulfamethoxazole incorporation and localization into the pore of each zeolite system was defined along with medium-weak and cooperative host-guest interactions in which water molecules play a certain role only in zeolite Y and mordenite.
- Journal of colloid and interface science.J Colloid Interface Sci.2014 Apr 1;419:148-59. doi: 10.1016/j.jcis.2013.12.039. Epub 2013 Dec 24.
- Sulfonamide antibiotics are persistent pollutants present in surface and subsurface waters in both agricultural and urban environments. Sulfonamides are of particular concern in the environment because they are known to induce high levels of bacterial resistance. Adsorption of sulfamethoxazole sulfo
- PMID 24491342
Japanese Journal
- 海外企業で材料開発研究に従事して (ミニ特集 若手研究者からみた研究教育のグローバル化とこれからの日本の材料科学)
- Application of Temperature Stress to Root Zone of Spinach (3) Effective Method for Short Term Application of Low and High Temperature Stresses to Roots
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