PPT-Removal of Copper (Cu) from Waste Water using Nanoparticles
Author : stefany-barnette | Published Date : 2016-06-12
Submitted by Priyanka Takhar 2010CEV2926 Prashant Gautam 2014CEV2925 Vaibhav Gehlot 2010CH70189 Introduction High demand of water due to increase in population
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Removal of Copper (Cu) from Waste Water using Nanoparticles: Transcript
Submitted by Priyanka Takhar 2010CEV2926 Prashant Gautam 2014CEV2925 Vaibhav Gehlot 2010CH70189 Introduction High demand of water due to increase in population High amount of wastewater is generated. Johnny’s Pet Services is pleased to offer routine pet waste removal services twice a week, weekly, or bi-weekly depending on your needs for pet owners within a 25-mile radius of the Charlotte metro area. Dog feces can pose a health hazard if left sitting in your front, back or side yards. The eggs of the parasites can linger in the soil for years. Removing the waste from your property prevents the transfer of various pet waste bacteria and parasites including:Roundworm, Hookworm, Tapeworm, Whipworm… and more! This bacteria and parasites can travel up to 20 miles into the waterways. The preconditioned waste travels into a wastestorage vessel to ensure a constant supply of input material When traveling from the waste storage to the reformer vessel oxygen is removed allowing for conversion without combustion Working in an oxygens . PREPARED UNDER THE GUIDANCE OF. DR. ARUN KUMAR. ASSTT. . PROFESSOR IIT DELHI. Prepared by:. Sachin. . Vishnoi. (2014cev2927). Yogesh. . Gurnani. (2014cev2928). Mohammed . Mohsen. BACKGROUND. Lead is one of the highly toxic metal which poses threat to human health. Nanoparticles. . Nathan Barba – ASU Mechanical Engineering. Mentor: Dr. . Jekan. . Thanga. 2016 NASA Space Grant Symposium. Summary. Concentrated light combined with carbon . nanoparticles. in liquid water causes high speed steam generation.. Seema. . Garg. a. and Amrish . Chandra. b. a Amity Institute of Applied Sciences, Amity University, . Noida. , 201301, Uttar Pradesh, India. b Amity Institute of Pharmacy, Amity University, . Noida. Submitted by-. Priyanka Takhar 2010CEV2926. Prashant. . Gautam. 2014CEV2925. Vaibhav. . Gehlot. . . 2010CH70189. Introduction. High demand of water due to increase in population. High amount of wastewater is generated. BIO 464. TuTh. 2 – 3:15. Structure of Compound. Physical/Chemical Properties. High electrical/thermal conductivity, surface-enhanced Raman scattering, chemical stability, catalytic activity, non-linear optical behavior. use. Nesrein. . M. Bendala. 1,2. , . Abdurrauf. M. Gusbi. 2. , . Nagib. A. Elmarzugi. 1,2*. . 1. National . Nanosciences. & Nanotechnology Project, Biotechnology Research Centre, Tripoli, Libya. Zahraa . Neamah. Abbas. 1. , . Nafal. NazarBahjat. 2. 1- Assistant lecturer, department of Medical Analysis, College of Health and Medical Technologies, Middle Technical University, Baghdad-Iraq.2- Lecturer, department of Medical Analysis, College of Health and Medical Technologies, Middle Technical University, Baghdad-Iraq. The particles were compressed into 2-d arrays with the aid of the Langmuir trough, and covalently crosslinked upon introduction of a solution of . alkanethiols. , yielding a thin flexible film of nanoparticles. The crosslinking process occurs via the displacement of the original alkanethiol bound to the gold nanoparticle with the crosslinking ligand. Crosslinked nanoparticle films were transferred to a substrate by Langmuir-Blodgett deposition (Figure 9a).. Significance and Impact. Offers . new paradigm in knowledge-based synthesis of highly ordered three-dimensional crystal architectures for practical applications in catalysis and energy storage technologies. Bacillus licheniformis . GPI-2: a noble biological approach . Rajni Kant Thakur and Poonam Shirkot. Department of Biotechnology. Dr. Y.S PARMAR UNIVERSITY OF HORTICULTURE AND FORESTRY. Email id : rajnithakur136@yahoo.in. Ahmed Aido . 1,2,. *, Harald Wajant . 2. , . Matej Buzgo. 1. . and Aiva Simaite . 1. 1. . InoCure. . s.r.o. , . R&d. Lab, . Prumyslová. 1960, 250 88 . Celákovice. , Czech Republic; aiva@inocure.cz; . Biocompatibility and Cellular Overview Part 4. Outline . Biocompatibility. Quick overview of cellular interaction. Scale, size, generic animal cell. Nanoscale. materials . for biological interaction.
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