and the chemical reactions in the pyrolysis process were also discussed.
并对轮胎热解的化学反应过程进行了总结性的讨论。
slow pyrolysis as the pretreatment technology before biomass entrained flow gasification was experimentally studied, and its feasibility assessed.
针对生物质气化过程面临的问题,利用慢速热解方法作为生物质气流床气化的前处理工艺并考察其可行性。
this paper investigates the simultaneous pyrolysis (cocracking) and compares it with individual pyrolysis (separate cracking) of ethane and propane.
本文研究了乙烷和丙烷的混合裂解,并与乙烷、丙烷单独裂解进行了比较。
in exploration period of hydrocarbon reservoir, oil density, viscosity and saturation can be determined using geo-chemical pyrolysis data.
油藏勘探阶段,利用录井地化热解资料可以準确地求取原油粘度和含油饱和度。
carbon residue standardized test which measures the amount of carbon left behind after pyrolysis under standard conditions .
残炭用于在标準条件下,测定油品裂解后剩余碳量的标準化测试方法。
another important content of this thesis is the characteristics and the evaluation of feasibility of pyrolysis products.
热解产物性质的分析表征及回收利用的可行性评价是本文的另一重要内容。
the stiffness problem of differential equation set has been solved and a kinetic model of simultaneous pyrolysis reaction has been proposed.
解决了微分方程组的刚性问题,提出了混合裂解反应动力学模型。
different influence factors have different influence degree to the different components of geo-chemical pyrolysis degradation.
各种不同影响因素对地化热解资料不同组分的影响程度不同。
developing a new type of pyrolysis reactor is a key step for industrialization of the new process.
而研究和开发一种新型的热解反应器是实现新工艺工业化的关键课题。
the pyrolysis technology for rubbish is important in solid waste treatment because of lower pollution and higher wte(waste to energy). msw?
垃圾热解技术以其较低的污染排放和较高的能源回收率在固体废弃物处理领域里占有重要地位。
dr. hong jiang, research interests include gasification and pyrolysis of biomass, separation and purification of bio-oil, and integrated utilization of waste.
研究方向:生物质的气化和热解,生物油的分离纯化,废弃物的能源化和资源化。
pyrolysis can break down waste oil into gases, liquids, a little bit of solids.
他们使用了高温分解的方法,在缺氧高温的环境下分解有机材料。 高温可以让废油分解变成成气态、液态和一点点固态。
in this paper the pyrolysis of coals with different metamorphism is performed under inert gas ambience in a non-isothermal reactor.
本试验的目的是研究不同变质程度的煤在惰性气氛中的非等温热解。
the research progress of experimental and theoretical work on pyrolysis kinetics at home and abroad was reviewed.
综述了目前国内外生物质热裂解动力学在实验和理论方面的研究进展。
pyrolysis is an essential process occurred in all gasifications.
煤热解是气化过程中重要的、不可分割的过程。
therefore, it is of great importance to investigate the mechanism of pyrolysis and ignition of solid fuel.
对可燃物的热解与着火机理深入分析,是后续研究控制火蔓延和发展的关键。
non carbon atom is detached from biomass and its structure tends to be in order as further pyrolysis gasification.
随着生物质热解气化的深入,生物质逐渐脱除了非碳原子,其结构趋于有序化;
kinetics study of the pyrolysis process is carried out at last.
最后对花生壳的热解过程进行了动力学研究。