新利手机客户端化学气候变化

Here we present a collection of research papers, review articles, and themed collections published by the Royal Society of Chemistry, designed to answer a variety of questions related to the causes and impacts of climate change. From atmospheric chemistry to geochemical cycling and analytical techniques, this collection contains the latest research at the cutting edge.

“在2015年末率先达到在巴黎举行的联合国气候变化会议,应及时考虑在气候学化学的重要性,”意见新利手机客户端新利手机客户端Susan Solomon,顾问委员会的成员ENVIRON。科学:过程的影响, “This collection showcases the essential contributions of chemical science to understanding climate change. As the world weighs mitigation and adaptation options, chemists will be part of the search for solutions.”

“The chemical sciences play a pivotal role in a sustainable and prosperous future” saysDominic Tildesley,皇家化学学会会长“无论是开发新的抗生素打击的感染,废物转化能源,或开发新利手机客户端高效太阳能电池,化学家们设计和应用未来技术。”

You can read all of these articles for free until 20 December 2014! We truly hope you enjoy this collection.

了解更多关于我们的工作,支持化学科学界对解决方案的工作在气候变化,能源,食品,健康和水新利手机客户端.

Nina Notman meets some of the atmospheric chemists fitting the pieces of the climate change jigsaw together –find out more in Education in Chemistry.

Relevant Themed Issues:

分析方法themed collection onEmerging analytical methods for global energy and climate issues.

ChemSocRevthemed issued onAtmospheric chemistry.

ChemCommweb collection onCO2 separation, capture and reuse.

Photochemical & Photobiological Sciencescollection on the臭氧消耗和及其与气候变化相互作用的环境影响时间:2014年评估.

Faraday DiscussionsonTropospheric Aerosol – Formation, Transformation and Impacts.


Reviews and Perspectives:

Global air quality and climate
阿琳M.菲奥雷,费沙奈克,多米尼克五Spracklen,佳佳施泰纳,纳丁昂格尔,迈克尔·普拉瑟,丹伯格曼,菲利普J.卡梅隆 - 史密斯,艾琳Cionni,威廉·J·科林斯,斯蒂格Dalsøren,纯美艾林,格尔德A. Folberth, Paul Ginoux, Larry W. Horowitz, Béatrice Josse, Jean-François Lamarque, Ian A. MacKenzie, Tatsuya Nagashima, Fiona M. O’Connor, Mattia Righi, Steven T. Rumbold, Drew T. Shindell, Ragnhild B. Skeie, Kengo Sudo, Sophie Szopa, Toshihiko Takemura and Guang Zeng
Chem. Soc. Rev., 2012,41, 6663-6683
DOI:10.1039/C2CS35095E, Critical Review
From themed collectionAtmospheric chemistry

Air quality and climate – synergies and trade-offs
Erika von Schneidemesser and Paul S. Monks
ENVIRON。科学:过程的影响, 2013,15, 1315-1325
DOI:10.1039/C3EM00178D, Frontier
From themed collection环境科学:进程与影响新利手机客户端: 2013 Review Articles

过去的气候和环境,从极地冰芯和积雪空气的化学信号
Eric W. Wolff
Chem. Soc. Rev., 2012,41, 6247-6258
DOI:10.1039/C2CS35227C, Tutorial Review
From themed collectionAtmospheric chemistry

气候变化和顺应性的影响在沿海系统:海堤的情况下,
Louise B. Firth, Nova Mieszkowska, Richard C. Thompson and Stephen J. Hawkins
ENVIRON。科学:过程的影响, 2013,15, 1665-1670
DOI:10.1039/C3EM00313B, Frontier
From themed collection环境科学:进程与影响新利手机客户端: 2013 Review Articles

颗粒,空气质量,政策和卫生
Mathew R. Heal, Prashant Kumar and Roy M. Harrison
Chem. Soc. Rev., 2012,41, 6606-6630
DOI:10.1039/C2CS35076A, Critical Review
From themed collectionAtmospheric chemistry

Impact of a possible future global hydrogen economy on Arctic stratospheric ozone loss
Bärbel Vogel, Thomas Feck, Jens-Uwe Grooß and Martin Riese
Energy Environ. Sci., 2012,5,6445-6452
DOI:10.1039/C2EE03181G, Minireview

Productivity of aquatic primary producers under global climate change
Donat-P. Häder, Virginia E. Villafañe and E. Walter Helbling
Photochem. Photobiol. Sci., 2014,13,1370至92年
DOI:10.1039/C3PP50418B, Perspective

Ice nucleation by particles immersed in supercooled cloud droplets
B. J.默里,D.奥沙利文,J.D. Atkinson和M. E.韦伯
Chem. Soc. Rev., 2012,41, 6519-6554
DOI:10.1039/C2CS35200A, Critical Review
From themed collectionAtmospheric chemistry开放存取

Ocean-atmosphere trace gas exchange
Lucy J. Carpenter, Stephen D. Archer and Rachael Beale
Chem. Soc. Rev., 2012,41,6473-6506
DOI:10.1039 / C2CS35121H,述评
From themed collectionAtmospheric chemistry

The influence of glacial meltwater on alpine aquatic ecosystems: a review
Krista E. H. Slemmons, Jasmine E. Saros and Kevin Simon
ENVIRON。科学:过程的影响, 2013,15, 1794-1806
DOI:10.1039/C3EM00243H, Critical Review

Multiphase chemistry of atmospheric amines
Chong Qiu and Renyi Zhang
Phys. Chem. Chem. Phys., 2013,15, 5738-5752
DOI:10.1039 / C3CP43446J,视角


Original research articles:

Exploring the potential influence of climate change and particulate organic carbon scenarios on the fate of neutral organic contaminants in the Arctic environment
James M. Armitage and Frank Wania
ENVIRON。科学:过程的影响, 2013,15, 2263-2272
DOI:10.1039/C3EM00315A, Paper
From themed collectionOpen access articles from环境科学:进程与影响新利手机客户端

A reproducible method for the extraction, identification and quantification of the Arctic sea ice proxy IP25from marine sediments
Simon T. Belt, Thomas A. Brown, Alba Navarro Rodriguez, Patricia Cabedo Sanz, Andrew Tonkin and Rebecca Ingle
Anal. Methods, 2012,4, 705-713
DOI:10.1039/C2AY05728J, Paper

CO2浓度和pH会改变在储层温度和压力地下微生物生态
Djuna M. Gulliver, Gregory V. Lowry and Kelvin B. Gregory
RSC Adv., 2014,4,17443-17453
DOI:10.1039/C4RA02139H, Paper

在金属流动性的变化与小蠹虫诱导树死亡率
Kristin M. Mikkelson, Lindsay A. Bearup, Alexis K. Navarre-Sitchler, John E. McCray and Jonathan O. Sharp
ENVIRON。科学:过程的影响, 2014,16, 1318-1327
DOI:10.1039/C3EM00632H, Paper
From themed collection2014 Emerging Investigators

使用连续监测pH值的空间和时间上的变化的测定,溶解氧浓度在季节性缺氧半封闭海洋盆
Timothy Sullivan, Ciara Byrne, Luke Harman, John Davenport, Rob McAllen and Fiona Regan
Anal. Methods, 2014,6, 5489-5497
DOI:10.1039 / C3AY42162G,纸
From themed collectionEmerging analytical methods for global energy and climate issues

Temporal trends of selected POPs and the potential influence of climate variability in a Greenland ringed seal population
Frank Rigét, Katrin Vorkamp, Keith A. Hobson, Derek C. G. Muir and Rune Dietz
ENVIRON。科学:过程的影响, 2013,15,1706至1716年
DOI:10.1039/C3EM00189J, Paper

在大气中的石膏异构和多相形成通路
清心马泓,刘永春,刘畅和赵薇H.格拉辛
Phys. Chem. Chem. Phys., 2013,15, 19196-19204
DOI:10.1039/C3CP53424C, Paper

Volatile organic compounds in Arctic snow: concentrations and implications for atmospheric processes
Gregor Kos, Visahini Kanthasami, Nafissa Adechina and Parisa A. Ariya
ENVIRON。科学:过程的影响, 2014, Advance Article
DOI:10.1039/C4EM00410H, Paper

A simplified coulometric method for multi-sample measurements of total dissolved inorganic carbon concentration in marine waters
Natchanon Amornthammarong,彼得B.奥特纳,詹姆斯Hendee和Ryan伍斯利
Analyst, 2014,139, 5263-5270
DOI:10.1039/C4AN01049C, Paper

Full-color CO2gas sensing by an inverse opal photonic hydrogel
Wei Hong, Yuan Chen, Xue Feng, Yang Yan, Xiaobin Hu, Binyuan Zhao, Fan Zhang, Di Zhang, Zhou Xu and Yijian Lai
Chem. Commun., 2013,49, 8229-8231
DOI:10.1039/C3CC44825H, Communication

Analysis of secondary organic aerosols in air using extractive electrospray ionization mass spectrometry (EESI-MS)
兰伯特A. Doezema,邓丽君龙津,威廉·科迪,维罗尼卡Perraud,马修·道森L.迈克尔J. Ezell,约翰·格里夫斯,凯瑟琳R. Johnson和芭芭拉J.芬利森,皮茨
RSC Adv., 2012,2, 2930-2938
DOI:10.1039/C2RA00961G, Paper

The use of climatologies and Bayesian models to link observations to outcomes; an example from the Torres Strait
Scott Bainbridge and Ray Berkelmans
ENVIRON。科学:过程的影响, 2014,16, 1041-1049
DOI:10.1039/C3EM00675A, Paper

Gas–particle partitioning of atmospheric aerosols: interplay of physical state, non-ideal mixingand morphology
Manabu Shiraiwa, Andreas Zuend, Allan K. Bertram and John H. Seinfeld
Phys. Chem. Chem. Phys., 2013,15, 11441-11453
DOI:10.1039 / C3CP51595H,纸

Organic matrix effects on the formation of light-absorbing compounds from α-dicarbonyls in aqueous salt solution
格雷格T.德罗兹德和V.王菲麦克尼尔
ENVIRON。科学:过程的影响, 2014,16, 741-747
DOI:10.1039/C3EM00579H, Paper
From themed collectionAquatic photochemistry

在站北,北,东格陵兰有机氯农药(有机氯农药)的大气浓度的测量三年(2008- 2010年)
Rossana Bossi, Carsten Ambelas Skjøthb and Henrik Skovac
ENVIRON。科学:过程的影响, 2013,15,2213年至2219年
DOI:10.1039/C3EM00304C, Paper

Optical classification of algae species with a glass lab-on-a-chip
Allison Schaap, Thomas Rohrlack and Yves Bellouard
Lab Chip, 2012,12, 1527-1532
DOI:10.1039 / C2LC21091F,纸

Responses of欧洲白蜡树幼苗在城市和山区环境臭氧曝光基于生理特性及抗氧化活性
彼得亚·帕万瓦,尼科利娜Tzvetkova,Svetla Bratanova-Doncheva,内绍Chipev,萝卡Fikova和叶夫根Donev
ENVIRON。科学:过程的影响, 2013,15, 1452-1458
DOI:10.1039 / C3EM30614C,纸

Raman microspectroscopy and vibrational sum frequency generation spectroscopy as probes of the bulk and surface compositions of size-resolved sea spray aerosol particles
Andrew P. Ault, Defeng Zhao, Carlena J. Ebben, Michael J. Tauber, Franz M. Geiger, Kimberly A. Prather and Vicki H. Grassian
Phys. Chem. Chem. Phys., 2013,15,6206-6214
DOI:10.1039/C3CP43899F, Paper

Modelling phosphorus loading and algal blooms in a Nordic agricultural catchment-lake system under changing land-use and climate
Raoul-Marie Couture, Koji Tominaga, Jostein Starrfelt, S. Jannicke Moe, Øyvind Kaste and Richard F. Wright
ENVIRON。科学:过程的影响, 2014,16,1588年至1599年
DOI:10.1039/C3EM00630A, Paper
From themed collectionEnvironmental Science: Processes & Impacts 2014 HOT Articles

Organic aerosols and inorganic species from post-harvest agricultural-waste burning emissions over northern India: impact on mass absorption efficiency of elemental carbon
Prashant Rajput, M. M. Sarin, Deepti Sharma and Darshan Singh
ENVIRON。科学:过程的影响, 2014,16, 2371-2379
DOI:10.1039/C4EM00307A, Paper

Theoretical investigation of vibrational relaxation of highly excited O3in collisions with HO2
Lei Zhang, Pingya Luo, Ke Guo, Rong Zeng, Pedro J. S. B. Caridade and António J. C. Varandas
RSC Adv., 2014,4,9866-9874
DOI:10.1039/C3RA45634J, Paper

测定固体聚苯乙烯的独特折射率特性气雾剂使用宽带从光学捕获珠米氏散射
Stephanie H. Jones, Martin D. King and Andrew D. Ward
Phys. Chem. Chem. Phys., 2013,15,20735-20741
DOI:10.1039/C3CP53498G, Paper

一种用于测定PGE-Re的浓度和Os同位素在环境材料的组合物的方法
Peipei Zhao, Jie Li, Lifeng Zhong, Shengling Sun and Jifeng Xu
Anal. Methods, 2014,6, 5537-5545
DOI:10.1039 / C3AY42064G
From themed collectionEmerging analytical methods for global energy and climate issues

对于生物的VOC的分析的紧凑全二维气相色谱(GC×GC)方法
塞缪尔J.爱德华兹,阿拉斯泰尔C.刘易斯,斯蒂芬J.安德鲁斯,理查德T. Lidster,杰奎琳F. Hamilton和克里斯托弗N.罗德
Anal. Methods, 2013,5, 141-150
DOI:10.1039/C2AY25710F

从生物单萜酮醛棕色碳形成
陈B.阮,亚历山大Laskin,朱莉娅Laskin和Sergey A. Nizkorodov
Faraday Discuss., 2013,165,473-494
DOI:10.1039/C3FD00036B, Paper
From themed collectionTropospheric Aerosol – Formation, Transformation and Impacts

Carbon footprint of geopolymeric mortar: study of the contribution of the alkaline activating solution and assessment of an alternative route
A. Mellado, C. Catalán, N. Bouzón, M. V. Borrachero, J. M. Monzó and J. Payá
RSC Adv., 2014,4, 23846-23852
DOI:10.1039/C4RA03375B, Paper

Energy demand and emissions of the non-energy sector
Vassilis Daioglou, Andre P. C. Faaij, Deger Saygin, Martin K. Patel, Birka Wicke and Detlef P. van Vuuren
Energy Environ. Sci., 2014,7, 482-498
DOI:10.1039 / C3EE42667J,分析

On the role of surface charges for homogeneous freezing of supercooled water microdroplets
Daniel Rzesanke, Jens Nadolny, Denis Duft, René Müller, Alexei Kiselev and Thomas Leisner
Phys. Chem. Chem. Phys., 2012,14, 9359-9363
DOI:10.1039/C2CP23653B, Paper
From themed collectionStructure and reactivity of small particles: from clusters to aerosols

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10 Responses to “Chemistry in Climate Change”

  1. memutece says:

    We got fever when climate changes.

  2. gufulisa says:

    Finding the solution to change the climate when needed.
    如何自然地得到更大的乳房

  3. poligoxu says:

    Does climate changes impact on our daily life.Bathmate水电泵审查

  4. kokaqixe says:

    Favour to look at the list.

  5. belapiqu says:

    Yes i really enjoy this collection.
    在DIY智能锯审查

  6. cisitohe says:

    As climate changes our health is also changed.
    了解更多信息

  7. sofevodu says:

    我们不必改变气候的能力。
    了解更多信息

  8. 气候变化是对我们非常重要,我想和分享。

  9. Climate Change is really important for all of us.

  10. The chemistry behind this is really shocking.

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