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Patent Review on “Biodiesel Production Process” “生物柴油生产工艺”专利审查
I. Choedkiatsakul, K. Ngaosuwan, W. Kiatkittipong, N. Laosiripojana, S. Assabumrungrat
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引用次数: 8
PEGylation: An Overview and Recent Advances Reported in the Patent Literature 聚乙二醇化:专利文献报道的综述和最新进展
Marianela Gonzalez, Santiago E. Vaillard, R. Grau
Fil: Gonzalez, Marianela. Consejo Nacional de Investigaciones Cientificas y Tecnicas; Argentina
冈萨雷斯,玛丽安内拉。国家科学技术研究委员会;阿根廷
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引用次数: 7
A Review of Patents on Energy Efficiency Based on Sector Classification and Energy Form Conserved 基于行业分类和节能形式的能效专利综述
Ashok Kumar, Naveen Pinapatruni, Akhil Kadiyala
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引用次数: 0
The Summary of the Scale and the Methods to Inhibit and Remove Scale Formation in the Oil Well and the Gathering Line 油井及集输管线结垢及抑制、清除结垢方法综述
Guoli Tang
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引用次数: 1
Recent Developments of Supercritical Water Oxidation: A Patents Review 超临界水氧化的最新进展:专利综述
Ángel Martín, M. Bermejo, M. J. Cocero
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引用次数: 15
A review on recent patents on chemical and calcium looping processes 化学和钙环法专利近况综述
F. Gallucci, V. S. Annaland
Chemical and calcium looping processes are interesting concepts for power production with integrated CO2 capture. In this review, recent patents on both chemical and calcium looping processes are discussed after an introduction to the carbon capture and sequestration problem. Novel process concepts on chemical looping and calcium looping are described in detail. Chemical looping combustion is mainly considered as an alternative to oxy-fuel processes, while calcium looping can be applied to retrofit existing power plants or for novel plants based on the reforming of fossil fuels to hydrogen. As such calcium looping processes are foreseen to be applied first in industry. Most of the patents deal with interconnected fluidized bed systems, while also alternative concepts are discussed in this review.
化学和钙循环过程是集成二氧化碳捕获的电力生产的有趣概念。在这篇综述中,在介绍了碳捕获和封存问题之后,讨论了化学和钙环法的最新专利。详细介绍了化学环和钙环的新工艺概念。化学环燃烧主要被认为是氧燃料过程的替代方案,而钙环燃烧可以用于改造现有的发电厂或基于化石燃料转化为氢的新型发电厂。因此,预计钙环法将首先应用于工业。大多数专利涉及互联流化床系统,同时也讨论了其他概念。
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引用次数: 9
Valorisation of Polymetallic Hydroxide Sludge as Pollutant Trappers 多金属氢氧化物污泥作为污染物捕集剂的价值评价
L. Perrin, V. Laforest, J. Bourgois
Metal finishing industries produce an important tonnage of metal hydroxide sludge (MHS) during the treatment of their liquid effluents charged with heavy metals. Generally, a small part of these sludge is valorized because of their important metal fickleness. Consequently, the majority of these metal hydroxide sludge is sent to landfill centers. We propose to valorize this sludge by using them as pollutant sorbent in order to retain the polluting species contained in the industrial aqueous effluents. The chosen pollutant for this preliminary study is Chromium (+VI). Starting from an experimental well defined protocol, various parameters have been studied (chemical nature of the sludge, solid/liquid ratio, concentration of the pollutant, particle size) in order to determine the experimental parameters which influence the sorption yield of these sludge and thus to validate the feasibility of an industrial application of this new way of valorisation. First results point out that the sorption yield is more than 95% independently from the experimental conditions. Moreover, experiments highlight that the sludge mass (and so sorbent sites) is THE only real parameter which influences the yield. In this article, a review of the patents on different aspects of the valorisation of polymetallic hydroxide sludge as pollutant trappers is presented.
金属精加工工业在处理含重金属废水的过程中产生了大量的氢氧化金属污泥(MHS)。一般来说,这些污泥的一小部分是增值的,因为他们的重要的金属易变性。因此,这些金属氢氧化物污泥的大部分被送到垃圾填埋场。我们建议利用这些污泥作为污染物吸附剂,以保留工业废水中所含的污染物。本初步研究选择的污染物是铬(+VI)。从一个明确的实验方案开始,研究了各种参数(污泥的化学性质、固液比、污染物浓度、颗粒大小),以确定影响这些污泥吸收率的实验参数,从而验证这种新方法在工业应用中的可行性。初步结果表明,吸附率在95%以上,与实验条件无关。此外,实验强调污泥质量(以及吸附剂位置)是影响产量的唯一真实参数。本文综述了多金属氢氧化物污泥作为污染物捕集剂的不同方面的专利。
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引用次数: 2
The Summary of the Scale and the Methods to Inhibit and Remove Scale Formation in the Oil Well and the Gathering Line 油井及集输管线结垢及抑制、清除结垢方法综述
F. Gallucci, M. S. Annaland
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引用次数: 1
Cation Exchange Membranes for Fuel Cells- A Patent Review 燃料电池用阳离子交换膜专利综述
Zhenghui Zhang, T. Xu
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引用次数: 1
Ion Exchange Membranes for Adsorptive Separation: A Patents Review 离子交换膜吸附分离:专利综述
Junsheng Liu, J. Si, G. Shao
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引用次数: 0
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Recent Innovations in Chemical Engineering (Formerly Recent Patents on Chemical Engineering)
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