LOGO Photocatalytic Reduction of Carbon Dioxide Using Heterostructure CdS-TiO 2 Photocatalyst to Hydrocarbon Supervisor : Xin Feng Supervisor : Xin Feng.

Slides:



Advertisements
Similar presentations
TOWARD HIGH ACTIVITY WITH PHOTOCATALYST DESIGN Dr. Leny Yuliati January 21-22, 2014 Workshop on Nanomaterials for Photocatalytic Depollution: Science and.
Advertisements

Summary of NC200 work Imran & Norli Updated: 2/8/2007.
Dong Won Hwang, Jae Sung Lee Catalysis & Ecofriendly Science Lab. Chemical Engineering, POSTECH The Electronic Structure of Layered Perovskites.
LOGO Photocatalytic reduction of carbon dioxide over chalcogenides Reporter: Chen Jingshuai Supervisor: Prof.Xin Feng
Preparation & Characterization of heterogeneous catalyst
A Non-Aqueous Solution Synthesis of Boron Carbide by Control of In-Situ Carbon J. L. Watts a,b, Ian D. R. Mackinnon a, Peter C.Talbot a,b, and Jose A.
Physically and chemically synthesized TiO2 composite thin films for hydrogen production by photocatalytic water splitting Supervisor Prof. Antonio Miotello.
Photocatalytic reduction of CO 2 with TiO 2 -based semiconductor catalyst Reporter: Xiang Tianyu Supervisor: Xin Feng.
Study of deactivation and regeneration of titanium silicalite-1 catalyst in cyclohexanone ammoximation Reporter: Sun Rui Supervisor: Xin Feng
Sagi Pasternak Supervisor: Prof. Yaron Paz RBNI Fall Symposium 2012.
Introduction Different aspects of water treatment are considered the most urgent topics at the present and will influence our future life and Photocatalytic.
Introduction Different aspects of water treatment are considered the most urgent topics at the present and will influence our future life. Photocatalytic.
CdS/MoS 2 PHOTOCATALYST Elena Bray Dalton Doerr Samantha Wilkerson.
Introduction Different aspects of water treatment are considered the most urgent topics at the present and will influence our future life. Photocatalytic.
Chemical & Process Engineering Novel Material for the Separation of Mixtures of Carbon Dioxide and Nitrogen Mohamed A. M. Elsayed Supervisors : Prof. P.
1 Recent Progress of Photocatalytic Water Splitting and Preliminary Work Zhibin Lei Supervisor: Prof. Can Li Jan. 13, 2003 State Key laboratory of Catalysis,
Synthesis of Doped Titanium Dioxide Nanoparticles Nanoparticles have been around for millennia, being produced by various natural phenomena. However, since.
The Preparation and Collection Of Non-Metals.
The Role of Isoprene in Secondary Organic Aerosol Formation
PREPARATION OF ZnO NANOWIRES BY ELECTROCHEMICAL DEPOSITION
Chapter 2: Chemical Basis of Life Part II: Chemical Reactions Acids and Bases Inorganic Substances.
INGAS 6-months Meeting, Prague, Czech Republic, May 2009 INGAS INtegrated GAS Powertrain 1 Institute of Catalysis and Surface Chemistry Polish Academy.
Nor Aishah Saidina Amin
Li Yanping 讨论制备方法对光催化剂 CuO/TiO 2 活性的影响. Recent experimental summary Other researchers’ reports.
Literature Presentation 14 th Jan 2015 By Saurav Chandra Sarma.
Professor: Cheng-Ho Chen Student: Jing-Mei Wang Reporting date: 2015 / 05 / 06.
2. Experimental 4. Conclusions Nano crystalline zinc oxide can be prepared by a simple and cost-effective sol–gel process using aromatic acid ( salicylic.
Synthesis of Barium Titanate Nanoclusters Presented by Marc Landeweer Advisor: Prof. Slamovich.
Enhancement of ZnO Photocatalytic Activity by Incorporation of Silver Nanoparticles Acknowledgments RG thanks HEA for funding Reena George, Michael K Seery.
Reporter : Chun-Yang Hsieh Advisor : Wen-Chang Wu Date : 2014/3/26 1.
Reporter : Wan-Ting Chiou Adviser : Ming-Shyong Tsai Date : 2011/10/26
1 Date: Speaker: G. Magesh Visible light photocatalytic activity of PbSe nanocrystal/TiOx films Reference: C. Wang, K. Kwon, M. L. Odlyzko, B.
Photocatalytic and catalytic routes for removal of pollutants present in water and air G. Magesh CY04D012.
CdS/TiO 2 Heterojunction Semiconductor Photocatalyst CdS/TiO 2 Heterojunction Semiconductor Photocatalyst Taylor Marino, Nicole Moore, William Neer.
Xiukai Li et al., Applied Catalysis A: General 429 (2012) 31
IN THE NAME OF GOD.
Effect of method of synthesis and different metal doping on the photocatalytic activity of titania Department of Chemistry Anna University Chennai P. Vijayan.
Nafion layer-enhanced photosynthetic conversion of CO 2 into Hydrocarbons on TiO 2 nanoparticles Wooyul Kim et al., Energy Environ. Sci., 5, 2012, 6066.
Department of Chemistry, Clemson University, Clemson, SC 29634
Phase-Pure Cu,Zn,Al Hydrotalcite-like Materials as Precursors for Copper rich Cu/ZnO/Al 2 O 3 Catalysts Malte Behrens, et al.,Chem. Mater., 22, 2, 2010,
January 2016 Report Real World Nanoparticle Synthesis on Model Supports Ritubarna Banerjee Grant Seuser Dr. Donna Chen Dr. John Regalbuto.
PhD in Fundamental and Applied Sciences (Sept 2013/Full time)
Progress Report Feng Jiang Gas pipeline Material !!!
Acidic catalysts for the dehydration of glycerol: Activity and deactivation Wladimir Suprun et.al, Journal of Molecular Catalysis A: Chemical 309 (2009)
Synthesis and Characterization of a Pb 1-x Sr x CrO 4 Solid Solution Ohio State University CHEM 123 REEL Poster Session Matthew W. Stoltzfus Thad Matta.
Student : Pei-Tzu Chiu Advisor : Cheng-Ho Chen Date : Date :
SYNTHESIS OF ZSM-5 IN FLUORIDE MEDIA AND CHARACTERISATION S. HARI HARAN, DR. M. PALANICHAMY & DR. V. MURUGESAN *, Department of Chemistry, Anna University,
 Two or more substances combine to make one new substance  General Formula  A + B → AB  Characteristic Has one product.
LOGO Water Gas Shift Reaction Over Au/Ce x Ti y O 2 Cheng Wan.
Energy and environmental issues at a global level are important topics. It is indispensable to construct clean energy systems in order to solve the issues.
한국진공학회 제 45 회 하계학술대회 Tutorial 08/21/2013 한국화학연구원 최지나.
“Self-cleaning coatings of doped TiO 2 nanostructured powders for applications in construction industry” I. Deligkiozi *, P. Karlsson, T. Kosanovic, M.
Water splitting on semiconductor catalysts
Sol–gel preparation of efficient red phosphor Mg2TiO4:Mn4+ and XAFS investigation on the substitution of Mn4+ for Ti4+ Tiannan Ye, Shan Li, Xueyan Wu,
M. Dhanasekar, Dr. S. Venkataprasad Bhat*
M. Sidheswaran, Z. Zhang, L. L. Tavlarides, J. Zhang, E. Khalifa
Nitrogen-enriched carbon nanofibers containing Cu-loaded porous carbon beads for the abatement of NO emissions Bhaskar Bhaduri1 and Nishith Verma1,2 1.
Rama Gaur and P. Jeevanandam*
CdS/MoS2 Photocatalyst
STUDIES ON PHOTOCATALYTIC ACTIVITY OF NANOCOMPOSITES OF NITROGEN DOPED GRAPHENE WITH METAL MOLYBDATES (NG-MMoO4) Manesh Kumar and H. N. Sheikh* Department.
Percentages of carbon, hydrogen and oxygen from combustion
Ayk BEDUOĞLU and Altuğ Mert SEVİM
BiVO4 and WO3 nanophotocatalysts:
Research and Development Department of United Global Pavings
Chemical Reactions.
Reaction Types.
MileStone 2K19, SSBT Coet’s, Department of Chemical Engineering.
Volume 2, Issue 6, Pages (June 2017)
Particulate Matter Capturing via Naturally Dried ZIF-8/Graphene Aerogels under Harsh Conditions  Jiajun Mao, Yuxin Tang, Yandong Wang, Jianying Huang,
Graphenea Graphene Oxide (GO)
Presentation transcript:

LOGO Photocatalytic Reduction of Carbon Dioxide Using Heterostructure CdS-TiO 2 Photocatalyst to Hydrocarbon Supervisor : Xin Feng Supervisor : Xin Feng Reporter : Song Guixian 2013/03/27

Contents  Photocatalytic reduction of CO 2 reaction process  Selected catalyst  Catalyst preparation  Scheme of prepared catalyst  Next plans

Photocatalytic reduction of CO 2 reaction process

Selected catalyst Oxidation process of cyclohexanol Reduction process of carbon dioxide

Selected catalyst Heterostructure CdS-TiO 2 photocatalyst CdS with band gap of 2.4 eV ( CB , -1.0V ; VB , 1.4V , vs NHE at pH =7.0 ), TiO 2 with band gap of 3.2eV ( CB , -0.5V ; VB , 2.7V , vs NHE at pH =7.0 ) Fig.1. The mechanism of photocatalytic reduction of CO 2

Scheme of prepared catalyst Fig.2. The grow process of heterostructure CdS-TiO 2 photocatalyst

Catalyst preparation Prepared TiO 2 Tetrabutyl titanate +acetic acid Precursor solution Hydrothermal synthesis Centrifugation Dry Calcination to Detach impurity Product

Catalyst preparation Prepared CdS-TiO 2 Ultrasonic dispersion Titanium dioxide + deionized water Stir CdCl 2 ·2.5H 2 O aqueous solution Precursor solution Na 2 S ·9H 2 O aqueous solution In situ hydrothermal Centrifugation Dry Product

Characterization of UV–vis absorbance spectra Fig. 3. The UV–visible diffuse reflectance spectra of the samples

Next plans 1. Optimization of reaction conditions adopt single factor experiment. 2. The samples will be characterized on SEM 、 TEM 、 XRD 、 PL. 3. Photocatalytic reduction of CO 2 reaction will be carried out. 4. Product will be analyzed by GC-MS and GC.