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固体废物与生物质热化学转化
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作者 高宁博 全翠 《国际学术动态》 2018年第6期28-30,共3页
2018年4月7~8日,2018年固体废物与生物质热化学转化研讨会(2018S&BTCC)在西安交通大学举行。本次会议由西安交通大学能源与动力学院环境科学与工程系高宁博副教授组织举办。与会外宾11人、国内专家学者32人参加了会议。本次会议主... 2018年4月7~8日,2018年固体废物与生物质热化学转化研讨会(2018S&BTCC)在西安交通大学举行。本次会议由西安交通大学能源与动力学院环境科学与工程系高宁博副教授组织举办。与会外宾11人、国内专家学者32人参加了会议。本次会议主要以学术报告的形式就固体废物与生物质热化学技术的重要科学问题、最新研究结果及发展趋势等方面展开研讨。 展开更多
关键词 热解技术 生物质热化学 生物质 热化学转化 固体废物
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生物质热化学转化的CFD模拟研究 被引量:7
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作者 库晓珂 王金 +1 位作者 陈涛 张润辉 《力学与实践》 北大核心 2021年第5期663-673,共11页
从颗粒多相流计算流体力学(computational fluid dynamics, CFD)建模的视角分析了生物质热化学转化过程。首先在欧拉-拉格朗日框架内给出了颗粒相和流体相的演化方程。接着,针对常见的生物质气流床和流化床转化过程(如热解、气化等),概... 从颗粒多相流计算流体力学(computational fluid dynamics, CFD)建模的视角分析了生物质热化学转化过程。首先在欧拉-拉格朗日框架内给出了颗粒相和流体相的演化方程。接着,针对常见的生物质气流床和流化床转化过程(如热解、气化等),概述了文献中特别是本课题组在CFD模拟方面的研究进展。最后,针对生物质颗粒偏大的特性,综述了热厚模型的发展现状并介绍了课题组建立的一维和多维热厚模型。 展开更多
关键词 生物质热化学转化 欧拉-拉格朗日方法 热厚模型
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从技术到设备 生物质转化取得新突破
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作者 于雷 《中国农村科技》 2017年第3期22-23,共2页
项目成果:农林生物质定向转化制备液体燃料多联产承担单位:中国林业科学研究院林产化学工业研究所我国是能源生产大国也是消耗大国,由于传统能源的存储量的限制和燃烧时产生的大量危害气体和温室气体等因素,越来越多的人将目光放到了新... 项目成果:农林生物质定向转化制备液体燃料多联产承担单位:中国林业科学研究院林产化学工业研究所我国是能源生产大国也是消耗大国,由于传统能源的存储量的限制和燃烧时产生的大量危害气体和温室气体等因素,越来越多的人将目光放到了新型能源——生物质的身上。近日。 展开更多
关键词 连续化生产线 生物质热化学 液体燃料 农林生物质 林产化学工业 林产化学加工 纤维制备 木质纤维 木材纤维 生物油脂 转化制备 工程化 多联产 生物质转化
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国外可再生能源文献信息 被引量:1
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作者 周良虹 黄亚晶 《可再生能源》 CAS 北大核心 2004年第4期74-74,共1页
关键词 中国 国内可再生能源文献 太阳能吸收式制冷循环 地热泵循环工质 生物质热化学液化技术
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Analytical Model for Predicting the Heat Loss Effect on the Pyrolysis of Biomass Particles 被引量:1
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作者 Alireza Rahbari Fatemeh Ebrahiminasab Mehdi Bidabadi 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2013年第10期1114-1120,共7页
This paper presents the combined influence of heat-loss and radiation on the pyrolysis of biomass particles by considering the structure of one-dimensional, laminar and steady state flame propagation in uniformly prem... This paper presents the combined influence of heat-loss and radiation on the pyrolysis of biomass particles by considering the structure of one-dimensional, laminar and steady state flame propagation in uniformly premixed wood particles. The assumed flame structure consists of a broad preheat-vaporization zone where the rate of gas-phase chemical reaction is small, a thin reaction zone composed of three regions: gas, tar and char combustion where convection and the vaporization rate of the fuel particles are small, and a broad convection zone. The analysis is performed in the asymptotic limit, where the value of the characteristic Zeldovich number is large and the equivalence ratio is larger than unity(i.e.u≥1). The principal attention is made on the determination of a non-linear burning velocity correlation. Consequently, the impacts of radiation, heat loss and particle size as the determining factors on the flame temperature and burning velocity of biomass particles are declared in this research. 展开更多
关键词 analytical model heat loss RADIATION particle size PYROLYSIS tlame temperature burning velocity
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Pyrolysis Model of Single Biomass Pellet in Downdraft Gasifier
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作者 薛爱军 潘继红 +1 位作者 田茂诚 伊晓璐 《Transactions of Tianjin University》 EI CAS 2016年第2期174-181,共8页
By coupling the heat transfer equation with semi-global chemical reaction kinetic equations, a onedimensional, unsteady mathematical model is developed to describe the pyrolysis of single biomass pellet in the pyrolys... By coupling the heat transfer equation with semi-global chemical reaction kinetic equations, a onedimensional, unsteady mathematical model is developed to describe the pyrolysis of single biomass pellet in the pyrolysis zone of downdraft gasifier. The simulation results in inert atmosphere and pyrolysis zone agree well with the published experimental results. The pyrolysis of biomass pellets in pyrolysis zone is investigated, and the results show that the estimated convective heat transfer coefficient and emissivity coefficient are suitable. The mean pyrolysis time is 15.22%, shorter than that in inert atmosphere, and the pellet pyrolysis process in pyrolysis zone belongs to fast pyrolysis. Among the pyrolysis products, tar yield is the most, gas the second, and char the least. During pyrolysis, the temperature change near the center is contrary to that near the surface. Pyrolysis gradually moves inwards layer by layer. With the increase of pyrolysis temperature and pellet diameter, the total pyrolysis time, tar yield, char yield and gas yield change in different ways. The height of pyrolysis zone is calculated to be 1.51—3.51 times of the characteristic pellet diameter. 展开更多
关键词 downdraft gasifier pyrolysis model single biomass pellet
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Soil Microbiological and Biochemical Properties as Affected by Different Long-Term Banana-Based Rotations in the Tropics 被引量:3
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作者 ZHONG Shuang ZENG Huicai JIN Zhiqiang 《Pedosphere》 SCIE CAS CSCD 2015年第6期868-877,共10页
Soil microbiological and biochemical properties under various field crop rotations such as grains, pastures and vegetables have been studied intensively under short-term period. However, there is limited information a... Soil microbiological and biochemical properties under various field crop rotations such as grains, pastures and vegetables have been studied intensively under short-term period. However, there is limited information about the influence of banana-based rotations on soil organic C, total N(TN), microbial biomasses and enzyme activities under long-term crop rotations. A field experiment arranged in a randomized complete block design with three replicates was carried out at the Wanzhong Farm in Ledong(18?37′–18?38′N, 108?46′–108?48′E), Hainan Province, China, to compare the responses of these soil parameters to long-term(10-year) banana(Musa paradisiaca)-pineapple(Ananas) rotation(AB), banana-papaya(Carica) rotation(BB) and banana monoculture(CK) in a conventional tillage system in the Hainan Island. Soil p H, total organic C(TOC), dissolved organic C(DOC), TN, total P(TP) and available P(AP) were found to be significantly higher(P < 0.01) in AB and BB than CK at 0–30 cm soil depth. Microbial biomass C(MBC) and N(MBN) were observed 18.0%–35.2% higher in AB and 8.6%–40.5% higher in BB than CK at 0–30 cm. The activities of urease(UA), invertase(IA), dehydrogenase(DA) and acid phosphatase(APA) showed a mean of 21.5%–59.6% increase in AB and 26.7%–66.1% increase in BB compared with CK at 0–30 cm. Higher p H, TOC and DOC at 0–10 and 10–20 cm than at 20–30 cm were obtained despite of the rotations. Soil MBC and MBN and activities of UA, IA and DA decreased markedly(P < 0.01) with increasing soil depth in the different rotation soils as well as the monoculture soil. In general, soil microbial biomass and enzymatic activities were more sensitive to changes in banana-based rotations than soil chemical properties, and consequently they were well-established as early indicators of changes due to crop rotations in the tropics. 展开更多
关键词 crop rotations enzymatic activities microbial biomass MONOCULTURE soil chemical properties
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Thermochemical recycling of waste disposable facemasks in a non-electrically powered system
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作者 Kingsley O.Iwuozor Ebuka Chizitere Emenike +3 位作者 Agbana Abiodun Stephen Otoikhian Shegun Kevin Joy Adeleke Adewale George Adeniyi 《Low-carbon Materials and Green Construction》 2023年第1期146-156,共11页
The COVID-19 pandemic encouraged the use of plastic-based personal protective equipment (PPE), which aidedgreatly in its management. However, the increased production and usage of these PPEs put a strain on the enviro... The COVID-19 pandemic encouraged the use of plastic-based personal protective equipment (PPE), which aidedgreatly in its management. However, the increased production and usage of these PPEs put a strain on the environment,especially in developing and underdeveloped countries. This has led various researchers to study low-costand effective technologies for the recycling of these materials. One such material is disposable facemasks. However,previous studies have only been able to engage electrically powered reactors for their thermochemical conversion,which is a challenge as these reactors cannot be used in regions with an insufficient supply of electricity. In thisstudy, the authors utilized a biomass-powered reactor for the conversion of waste disposable facemasks and almondleaves into hybrid biochar. The reactor, which is relatively cheap, simple to use, environmentally friendly, and modifiedfor biochar production, is biomass-powered. The co-carbonization process, which lasted 100 min, produced a 46%biochar yield, which is higher than previously obtained biochar yields by other researchers. The biochar thus obtainedwas characterized to determine its properties. FTIR analysis showed that the biochar contained functional groupssuch as alkenes, alkynes, hydroxyls, amines, and carbonyls. The EDX analysis revealed that the biochar was primarilymade of carbon, tellurium, oxygen, and calcium in the ratios of 57%, 19%, 9%, and 7%, respectively. The inclusion ofthe facemask decreased the surface area and porosity of the biochar material, as evidenced by its surface area andpore characteristics. 展开更多
关键词 BIOCHAR BIOMASS Covid-19 Facemask Thermochemical conversion
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