Design and optimization of advanced materials and processes for efficient hydrogen storage
نویسندگان
چکیده
Thiswork presents a systematic approach for the optimal design and optimization ofmetal-hydridematerials and processes for efficiency hydrogen storage. Techniques for the synthesis and characterization of novelmetal-hydridematerials are presented in a view of designingmaterial to enhance storage efficiency. More specifically the synthesis of a composite intermetallic hydride by using theoretical and experimental procedures is investigated and a pseudobinary Zr–Ti–Cr–Ni–V compound has been developed. The X-ray diffraction pattern analysis revealed two Laves phases and a Rietveld analysis has been performed for the determination of the structural characteristics. A unique composite structure is responsible for the desorbed ∼280ml of H2 per gram of the material obtained after 15min at 100 ◦C. A small-scale metalhydride tank has been designed in order to investigate its capacity and efficiency from 20 ◦C to 100 ◦C. Then, a dynamic model that has developed previously by the authors provides the basis for investigating systematic optimization and online control studies. The objective is to find the optimal process design (e.g. cooling systems design) and online operating strategy (e.g. cooling fluid profile over time) so as to minimize the storing time, while satisfying, a number of operating constraints. Optimization results indicate that significant improvement on the storage time can be achieved, compared the case where the system is not optimized and control. Trade-offs between various objectives, alternative design options and licie techn n g u t i c b c A optimal cooling control po optimization and control
منابع مشابه
Prospects for hydrogen storage in graphene.
Hydrogen-based fuel cells are promising solutions for the efficient and clean delivery of electricity. Since hydrogen is an energy carrier, a key step for the development of a reliable hydrogen-based technology requires solving the issue of storage and transport of hydrogen. Several proposals based on the design of advanced materials such as metal hydrides and carbon structures have been made t...
متن کاملEfficient Rapid Deodorization of Mercaptan-Contaminated Soil by Sono-Fenton Process: Response Surface Modeling and Optimization
The entry of mercaptans into the environment as an odor pollutant has always been considered as one of the environmental concerns. In this research, a sonochemical oxidation (sono-Fenton) method was used for rapid deodorizing of tert-butyl mercaptan (TBM) contaminated soil. The design of the experiments was conducted by CCD method and the effect of four different factors was investigated on the...
متن کاملChemical Oxygen Demand Removal from Synthetic Wastewater Containing Non-beta Lactam Antibiotics Using Advanced Oxidation Processes: A Comparative Study
Background & Aims of the Study: Pharmaceuticals are considered as an emerging environmental problem due to their continuous discharge and persistence to the aquatic ecosystem even at low concentrations. The purpose of this research was the investigation of advanced oxidation processes (Fenton and Fenton-like) efficiency for the removal of nonbeta lactam Antibiotics of azithromycin and clari...
متن کاملAn Efficient LUT Design on FPGA for Memory-Based Multiplication
An efficient Lookup Table (LUT) design for memory-based multiplier is proposed. This multiplier can be preferred in DSP computation where one of the inputs, which is filter coefficient to the multiplier, is fixed. In this design, all possible product terms of input multiplicand with the fixed coefficient are stored directly in memory. In contrast to an earlier proposition Odd Multiple Storage ...
متن کاملUsing design of experiments approach and simulated annealing algorithm for modeling and Optimization of EDM process parameters
The main objectives of this research are, therefore, to assess the effects of process parameters and to determine their optimal levels machining of Inconel 718 super alloy. gap voltage, current, time of machining and duty factor are tuning parameters considered to be study as process input parameters. Furthermore, two important process output characteristic, have been evaluated in this research...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Computers & Chemical Engineering
دوره 33 شماره
صفحات -
تاریخ انتشار 2009