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首页> 外文期刊>Environmental Progress & Sustainable Energy >Optimizing and modeling of energy production based on catalytic gasification of saxaul as a new biomass
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Optimizing and modeling of energy production based on catalytic gasification of saxaul as a new biomass

机译:优化能源生产和建模的基础saxaul作为一种新的催化气化生物质

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摘要

Energy and population growing has propelled the world to not-clear one because of the pollutants produced from fossil fuels consumption, so, energy produced from green sources, such as biomass, has been known as a big challenge of developing and developed countries. This article presents the applicability of saxaul as an abundant nonusable wood for energy production based on computational experimental aspects. Hence, the low heating value (LHV) of the gaseous products of saxaul gasification was optimized and modeled against the process parameters, including processing time, temperature, and the catalytic amount using multi-variates experimental design method. Moreover, the synthesized nano-V2O5-WO3/TiO2 was used as the catalyst and characterized using common analytical techniques including transmission electron microscopy (TEM), Energy dispersive X-ray spectroscopy (EDX), X-ray diffraction (XRD), and Brunauer-Emmett-Teller (BET) analysis. TEM image represented round particles with average size of 19 nm. XRD and EDX studies presented the successful formation of V2O5-WO3 on TiO2 substrate. To study catalytic effect of nano-V2O5-WO3/TiO2, BET analyses were performed to determine the mean specific surface area of it before and after the gasification, which the initial value was 72 m(2) g(-1) and decreased to 67 m(2) g(-1) after the gasification. As the evaluation of energy production, the low heating values of gaseous products was calculated based on the multivariate model of process parameters. Furthermore, the low poisoning catalytic process in accompany with acceptable statistical indexes of modeling, R-2=0.98, , and 0.95, were resulted from green energy production of saxaul against the effective corresponding process parameters. (c) 2016 American Institute of Chemical Engineers Environ Prog, 36: 723-728, 2017
机译:能源和人口增长推动了世界不清楚因为污染物之一从化石燃料消费,所以,能源生产从绿色能源,比如生物量、被称为“一个巨大的挑战发展中国家和发达国家。礼物saxaul作为的适用性能源丰富nonusable木材生产基于计算实验方面。因此,低热值气体的(低热值)saxaul气化的产品进行优化根据工艺参数建模,包括处理时间、温度和催化剂使用多变量实验设计方法。nano-V2O5-WO3 /二氧化钛作为催化剂使用常见的分析技术的特点包括透射电子显微镜(TEM)、能量色散x射线能谱(EDX), x射线衍射(XRD)和Brunauer-Emmett-Teller(打赌)分析。粒子的平均大小19 nm。研究成功的形成V2O5-WO3二氧化钛基质。nano-V2O5-WO3 /二氧化钛的影响,选择分析确定执行意味着特定的表面它之前和之后的气化,的初始值是72 m (2) g (1)下降到67米(2)g(1)后气化。生产、气体的低发热值产品是基于多变量计算工艺参数的模型。伴随着中毒催化过程可接受的建模、统计指标r2 = 0.98,, 0.95,是绿色的能源生产saxaul兑有效相应的工艺参数。美国化学工程师学会环境学监,36岁:723 - 728,2017

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