-
-
-
SoilScope 控制型蒸渗实验系统(称重式地中蒸渗仪)
넶931 ¥ 0.00 -
LysiCosm 碳氮水耦合过程监测系统
넶526 ¥ 0.00 -
SmartSoil 野外增温试验系统
넶304 ¥ 0.00 -
ENVIdata-ET 原位蒸散网络化监测系统
넶293 ¥ 0.00
-
-
-
soilgas便携式温室气体监测仪彩页资料
넶43 ¥ 0.00 -
iChamber群落全株自动箱
넶217 ¥ 0.00 -
EcoChem激光光谱元素分析系统
넶1101 ¥ 0.00 -
iChamber 群落自动箱
넶269 ¥ 0.00
-
-
-
CPEC-AZ升级涡度通量及土壤通量同步观测系统
넶361 ¥ 0.00 -
AERODYNE 粘性气体监测系统
넶223 ¥ 0.00 -
Aerodyne OCS_COS羰基硫监测系统
넶350 ¥ 0.00 -
Aerodyne 六种痕量温室气体高频在线监测系统
넶370 ¥ 0.00
-
-
-
AZR-300复合根系生长动态监测系统
넶1370 ¥ 0.00 -
Rhizoscope原位根系3D观测系统
넶416 ¥ 0.00 -
RhizoCam 原位自动根系监测系统
넶677 ¥ 0.00 -
AZR-300TF复合根系荧光监测系统
넶442 ¥ 0.00
-
-
-
iChamber群落全株自动箱
넶217 ¥ 0.00 -
IRRIScope 灌溉指导器
넶219 ¥ 0.00 -
SeedScope 数字化育种控制实验系统
넶134 ¥ 0.00 -
AIM-WiFi土壤多参数监测系统
넶724 ¥ 0.00
-
-
-
AZG-300便携式土壤水体温室气体监测仪
넶1204 ¥ 0.00 -
EcoCS 生态碳汇能力监测
넶476 ¥ 0.00 -
iChamber-60 群落光合呼吸测量系统
넶213 ¥ 0.00 -
EcoChem碳库快检技术
넶253 ¥ 0.00
-
-
-
SONO-M1M2便携式水分速测仪
넶255 ¥ 0.00 -
SONO-WZ混凝土水分含量/水胶比测量仪
넶153 ¥ 0.00 -
SONO混凝土在线监测水分传感器
넶119 ¥ 0.00 -
SONO-Ex谷物水分测量系统
넶116 ¥ 0.00
-
-
-
-
- 2024-10-11
- 2024-06-28
- 2024-06-18
- 2024-06-12
- 2024-03-26
- 2024-01-10
- 2024-01-04
- 2023-11-09
-
- 2024-11-01
- 2024-10-18
- 2024-10-11
- 2024-09-27
- 2024-08-22
- 2024-08-22
- 2024-07-16
- 2024-06-12
-
- 2023-11-01
- 2023-08-03
- 2023-07-27
- 2023-02-15
-
- 2024-10-11
- 2024-09-20
- 2024-08-22
- 2024-04-18
- 2024-03-05
- 2024-01-24
- 2024-01-17
- 2024-01-10
-
- 2024-09-27
- 2024-09-27
- 2024-09-27
- 2024-08-22
- 2024-08-22
- 2024-01-04
- 2023-12-21
- 2023-12-07
-
- 2023-04-04
- 2023-04-04
-
- 2023-02-16
-
-
-
作为中国第一个以“生态仪器”命名的专业仪器公司,从成立之初,澳作生态仪器有限公司就致力于引进、推广国际先进的生态环境监测技术和仪器设备,并根据国内的科研需求研发、定制生态系统监测设施和仪器。时至今日,已经走过二十年的历程。
公司具有一支由实力雄厚的科研技术人员组成的团队,85% 以上具有本科或本科以上学历,其中一半人员具备硕士以上学历。公司总部位于中关村翠湖科技园云中心,在广州,南京、成都、郑州、泰安、新疆设立了营销、技术服务中心,网络化办公最大程度上给予客户周到便利的咨讯和服务。
产品
CCM-300叶绿素含量测量仪
CCM-300叶绿素含量测量仪
——测量小的叶片与难以测量样品叶绿素含量的新方法
一、概述
CCM-300是使用叶绿素荧光比率对叶绿素含量测量的一种新型仪器。与传统的化学测量方法和吸收性测量方法相比,它可以对非常小的叶片以及难以测量样品的叶绿素含量进行非破坏性测量,测量迅速可靠。
二、用途
广泛应用于植物生理生态研究,特别是对传统吸收法测量困难的小叶片或样品的叶绿素含量进行测量,例如针叶、发育未完全的水稻、生于岩石上的丝状藻、地衣、草坪草、仙人掌、龙舌兰属植物、菠萝、拟南芥、果实、苔藓、叶茎、叶柄。
三、原理
尽管实践已经证明了吸收技术测量叶绿素含量的有效性,但该方法对样品的要求较高,使其应用范围受到限制。而样品本身的叶绿素荧光则不受样品厚度、均一性等的影响,可以指示叶绿素的含量。根据这个原理,Gitelson等比较了叶片的吸收和反射对叶绿素荧光的影响,发现在735nm和700nm处的比值与叶片的反射相关性最高,并且当样品叶绿素含量在41 mg· m-2到675 mg· m-2时,F735/F700的比值与其叶绿素含量间存在着显著的线性关系(R2≥0.95),与传统的吸收性测量方法相比(测量范围≤300 mg· m-2),提高了叶绿素含量的线性关系范围。
根据Gitelson的研究结果,CCM-300使用具有15nm半峰宽的460nm二极管用于荧光激发,提高了红色荧光波长,避开了大约685nm的发射荧光峰(叶绿素可重新吸收,降低测量精度)。仪器使用在735nm和700nm的叶绿素发射荧光的比率(F735/F700)进行叶绿素含量的测量,读数为F735/F700的比值以及根据Gitelson方程计算的叶绿素含量。
四、特点
Ø 直接算出叶绿素含量mg/m2;
Ø 测量结果可靠,不受叶片或样品大小、厚度和形状的影响;
Ø 经济、轻便、手持式设计,适合野外使用;
Ø 与化学测量结果高度相关,即使在高叶绿素含量时;
Ø 彩色触摸屏显示;
Ø 离散的单点测量和多点(2-30个样品)平均值测量模式;
Ø 非易失性闪存(2GB);
Ø USB数据输出,可使用Excel打开;
五、组成
主机、光纤样品夹、电池充电器、4节AA镍氢充电电池、USB通讯缆线、使用手册。
可选配件:
20mm大探头: 增加测量面积。 较大的样本量可能对某些类型的样本有用,例如苔藓;
增长版叶夹:
六、技术参数
Ø 测量参数:叶绿素荧光比率——发射荧光在735nm/700nm的比值(CFR),或相对叶绿素含量mg· m-2;
Ø 测量面积:直径3mm的圆,外径4mm,但对直径小于3mm的样品也可准确可靠的测量;
Ø 分辨率:比值0.01或1 mg· m-2;
Ø 重复性:依赖于信号强度,对信号强度低的样品,建议使用多点测量的平均值,对信号强度高的样品,差异通常为±0.03或更低;。
Ø 噪声:<±0.02;
Ø 光源:LED 460 nm蓝光二极管,半峰宽15 nm;
Ø 探头:两个固态高感传感器,提供滤光片。同时提供两个波长探头(700nm~710nm,730nm~740nm);
Ø 检测:数控调制光,将背景光影响将至最低。并对光源和检测器进行温度补偿;
Ø 存储容量:2GB;
Ø 模式:单点测量,2~30个点去平均值,去除2σ区间外的平均值,或者中位数;
Ø 样品接口:光纤传感器,直径4mm;
Ø 用户界面:240 × 320 像素彩色触摸屏;
Ø 输出:USB 1.1;
Ø 温度范围:0~50 ℃;
Ø 电源:2节充电AA电池;
Ø 自动关闭间隔:(无按键或下载)0~20分钟可选;
Ø 大小:12 cm × 9 cm × 3 cm;
Ø 重量:0.16lbs 275g;
Ø 测量时间:5秒;
六、产地:美国
七、参考文献
17天的水稻幼苗叶绿素含量的测定
Chia-Cheng Kan, Tsui-Yun Chung, Yan-An Juo Ming-Hsiun Hsieh (2015) Glutamine rapidly induces the expression of key transcription factor genes involved in nitrogen and stress responses in rice roots BMC Genomics201516:731 https://doi.org/10.1186/s12864-015-1892-7
2周大的拟南芥幼苗
Jasmina Kurepa, Timothy E. Shull, Jan A. Smalle (2016) Quercetin feeding protects plants against oxidative stress.
F1000Research 2016, 5:2430 Last updated: 25 DEC 2016) Latest published: 03 October 2016, 5:2430 (doi:
10.12688/f1000research.9659.1)
云杉树苗
O Krišāns, Ā Jansons, G Ievinsh (2016) Effect of decreased precipitation events on primary growth and photosynthesis-
related characteristics of spruce (Picea abies) saplings grown in different substrates - THE 74th SCIENTIFIC
CONFERENCE OF THE UNIVERSITY OF LATVIA 2016 - eeb.lu.lv
南极的苔藓
Erin E. Shortlidge, Sarah M. Eppley, Hans Kohler, Todd N. Rosenstiel, Gustavo E. Zúñiga, Angélica
Casanova-Katny, (2017) Passive warming reduces stress and shifts reproductive effort in the Antarctic moss,
Polytrichastrum alpinum Annals of Botany, Volume 119, Issue 1, 1 January 2017, Pages 27–38,
https://doi.org/10.1093/aob/mcw201
珊瑚-波浪运动和营养胁迫
Dana Riddle (2015) Coral Nutrition Part 4: Can Nutrient Deficiency Related to Water Motion Induce Coral
Bleahttps://www.advancedaquarist.com/2015/6/aafeature
叶绿素
Shuai Liu, Su Li, Xiao-Yang Fan, Guo-Di Yuan, Tao Hu, Xian-Meng Shi, Jun-Biao Huang, Xiao-Yan Pu,
Chuan-Sheng Wu (2019) Comparison of two noninvasive methods for measuring the pigment content in foliose
macrolichens. et al. Photosynth Res (2019). https://doi.org/10.1007/s11120-019-00624-x
果园草
Gordon B. Jones, Jasper B. Alpuerto, Benjamin F. Tracy, and Takeshi Fukao (2017) Physiological Effect of
Cutting Height and High Temperature on Regrowth Vigor in Orchard grass. Front Plant Sci. 2017; 8: 805.
Published online 2017 May 19. doi: 10.3389/fpls.2017.00805 PMCID: PMC5437204
7-42天的转基因大麦
PetrVojta, FilipKokáš, Alexandra Husičková, JiříGrúz, VeroniqueBergougnoux, Cintia F. Marchetti, Eliška
Ježilová, Václav Mik, Yoshihisa Ikeda, Petr Galuszka, (2016) Whole transcriptome analysis of transgenic
barley with altered cytokinin homeostasis and increased tolerance to drought stress. New Biotechnology
Volume 33, Issue 5, Part B, 25 September 2016, Pages 676-691 https://doi.org/10.1016/j.nbt.2016.01.010
苏格兰松树幼苗
Tapani Repo, Samuli Launiainen, Tarja Lehto, Sirkka Sutinen, Hanna Ruhanen, Juha Heiskanen, Ari Laurén,
Raimo Silvennoinen, Elina Vapaavuori, Leena Finér (2016) The responses of Scots pine seedlings to
waterlogging during the growing season Canadian Journal of Forest Research 2016, 46(12): 1439-1450,
https://doi.org/10.1139/cjfr-2015-0447
挪威云杉和苏格兰松树苗
Johanna Riikonen, Nelli Kettunen, Maria Gritsevich, Teemu Hakala, Liisa Särkkä, Risto Tahvonen, (2016)
Growth and development of Norway spruce and Scots pine seedlings under different light spectra
Environmental and Experimental Botany Volume 121, January 2016, Pages 112-
泥炭地植被泥炭藓和其他泥炭地植物
Anshu Rastogi, Marcin Stróżeckia, Hazem M. Kalaji, Dominika Łuców de Mariusz, Lamentowicz, Radosław
Juszczak (2019) Impact of warming and reduced precipitation on photosynthetic and remote sensing properties
of peatland vegetation Environmental and Experimental Botany Volume 160, April 2019, Pages 71-80
https://doi.org/10.1016/j.envexpbot.2019.01.005
CAM植物 - 仙人掌
Kudakwashe Musengi (2018) THE BIOLOGICAL CONTROL OF CACTI (CACTACEAE: OPUNTIOIDEAE)
IN SOUTH AFRICA: BASIS OF HOST SELECTION IN THE 'STRICTA' BIOTYPE OF
DACTYLOPIUS OPUNTIAE (COCKERELL) (HEMIPTERA: DACTYLOPIIDAE). University of the
Witwatersrand, South Africa. May 2018. file:///C:/Users/Sales/Desktop/CCM300%20on%20cactus.pdf
高尔夫绿草和银线苔藓
ZRaudenbush Z.T, Greenwood J.L., McLetchie D.N., Eppley D.N. (2018) Divergence in Life-History and
Developmental Traits in Silvery-Thread Moss (Bryum argenteum Hedw.) Genotypes between Golf Course
Putting Greens and Native Habitats. Cambridge University Press: 11 September 2018, Volume 66, Issue 5 ,
September 2018 , pp. 642-650 , DOI: https://doi.org/10.1017/wsc.2018.37
苗圃氮素状况
MJ Clark, Y Zheng (2017) Effect of Top-dressed Controlled-release Fertilizer Rates on Nursery Crop
Quality and Growth and Growing Substrate Nutrient Status in the Niagara Region, Ontario, Canada doi:
10.21273/HORTSCI11309-16 HortScience January 2017 vol. 52 no. 1 167-173
大豆
Pradeep Wagle, Prasanna H. Gowda, Saseendran S. Anapalli, Krishna N. Reddy, Brian K. Northup, (2017)
Growing season variability in carbon dioxide exchange of irrigated and rainfed soybean in the southern United
States. Science of The Total Environment,–Volumes 593594, 1 September 2017, Pages 263-273
https://doi.org/10.1016/j.scitotenv.2017.03.163
土豆
Maropeng Vellry Nemutanzhela, David Mxolisi Modise, Kotose Joseph Siyoko, Sheku Alfred Kanu (2017)
Assessment of Growth, Tuber Elemental Composition, Stomatal Conductance and Chlorophyll Content of Two
Potato Cultivars Under Irrigation with Fly Ash-Treated Acid Mine Drainage. American Journal of Potato
Researc August 2017, Volume 94, Issue4, pp 367–378
十字花科-开花植物
Soledad Martos, Berta Gallego, Llorenç Sáez, Javier López-Alvarado, Catalina Cabot, and Charlotte
Poschenrieder (2016) Characterization of Zinc and Cadmium Hyperaccumulation in Three Noccaea
(Brassicaceae) Populations from Non-metalliferous Sites in the Eastern Pyrenees Front Plant Sci. 2016; 7: 128.
Published online 2016 Feb 9. doi:10.3389/fpls.2016.00128
毒藤
John G. Jelesko, Elise B. Benhase, Jacob N. Barney (2017) Differential Responses to Light and Nutrient
Availability by Geographically Isolated Poison Ivy Accessions. Northeastern Naturalist 24(2):191-200. 2017
https://doi.org/10.1656/045.024.0210
糖枫
Amritpal S. Singh, A. Maxwell P. Jones, Mukund R. Shukla, Praveen K. Saxena (2017) High light intensity
stress as the limiting factor in micropropagation of sugar maple (Acer saccharum Marsh). Plant Cell, Tissue and
Organ Culture (PCTOC), May 2017, Volume 129, Issue2, pp209–221, doi:10.1007/s11240-017-1170-2
道路旁植物中的镉和铜胁迫
Margita Kuklová, Helena Hniličková, František Hnilička, Ivica Pivková, Ján Kukla (2019) Impact of
expressway on physiology of plants and accumulation of risk elements in forest ecosystems Plant Soil Environ.,
65: 46 53. https://doi.org/10.17221/585/2018-PSE