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Products future prospections

Anthraquinone dyes have been produced for many decades and have covered a wide range of dye classes. In spite of the complexity of production and relatively high costs, they have played an important role in the areas where excellent properties ate requited, because they have excellent lightfastness and leveling properties with brUhant shades that ate not attainable with other chtomophotes. However, recent increases in environmental costs have become a serious problem, and future prospects for the anthraquinone dye industry ate not optimistic. Some traditional manufacturers have stopped the production of a certain dye class or dye intermediates that were especially burdened by environmental costs, eg, vat dyes and their intermediates derived from anthraquinone-l-sulfonic acid and 1,5-disulfonic acid. However, several manufacturers have succeeded in process improvement and continue production, even expanding their capacity. In the forthcoming century the woddwide framework of production will change drastically. [Pg.342]

The future prospects opened up by soft electron-impact ionization for product detection in CMB studies of atom/radical reactions with polyatomic molecules/radicals are briefly examined. [Pg.330]

Hamelinck, C. Faaij, A. P. C., Future prospects for production of methanol and hydrogen from biomass. Journal of Power Sources 2002,111(1), 1-22. [Pg.220]

A miniaturized MB spectrometer MIMOS II was developed for the robotic exploration of Mars, where it provided fundamental information about mineralogical composition and alteration processes, helped to classify rocks and soils, aided geologic mapping, was instrumental in assessing habitability of past and present environments, and identified potential construction resources for future human explorers. The applicability of the instrument as a process monitor for oxygen production and prospecting tool for lunar ISRU has been demonstrated. The characterization of air pollution sources and the study of mixed-valence materials as a function of depth in soil are examples of terrestrial in situ applications. MIMOS lla with additional XRF capability will open up new applications. [Pg.301]

Georgis, R. 1992. Present and future prospects for entomopathogenic nematode products. Biocont. [Pg.287]

Thermoplastic composites, GMT. According to The European Alliance for SMC, the production of glass mat reinforced thermoplastics (GMT) and long fibre reinforced thermoplastics (LET) was up about 9% in 2002, demonstrating bright future prospects. Some examples are ... [Pg.100]

Intimately related to these factors is the design of the device, formulation, and the interface with the patient. Much of the discussion below will focus on the implications of excipients on formulation challenges for inhaled aerosol products. This chapter summarizes excipients for pulmonary formulations from several perspectives (i) excipient selection based on principles of delivery, (ii) physicochemical requirements for excipients, and (iii) specific challenges for formulations faced with aerosol drug delivery systems, including (a) biological aspects, (b) microbiological aspects, (c) analytical issues, and (d) future prospects. [Pg.226]

Dougherty. R.H. "Future Prospects for Processed Fruit and Vegetable Products, Food Technology. 124 (May 1990). [Pg.685]

This chapter begins by summarising the recent review articles on this topic. Other topics such as sources and physico-chemical characteristics of ambient and emerging nanoparticles (i.e. ENPs) are then covered briefly for the completeness of the article. This is then followed by the assessment of nanoparticles in numerous European cities, estimation of respiratory deposition doses and a brief discussion on current and future prospects of their regulatory control. In what follows, the terms airborne nanoparticle and ENP refer to total particles, currently mainly produced by vehicles, and nanomaterials-derived products, respectively. [Pg.341]

Century K, Reuber TL, Ratcliffe OJ. 2008. Regulating the regulators The future prospects for transcription-factor-based agricultural biotechnology products. Plant Physiol 147 20-29. [Pg.535]

Loose-fill packaging was one of the first successful areas of application for starch-based biodegradable polymers. Loose-fill starch-based foam is used for packaging consumer products as an alternative to polystyrene and polyethylene. While, biodegradable plastics have made some inroads into these markets, the future prospects for their growth in loose-fill are not so exciting as they are in some other areas of packaging. [Pg.97]

Damen, K., Faaij, A., Walter, A., Souza, M. (2002). Future prospects for biofuel production in Brazil. In "12" European Biomass Conf.", Vol. 2, pp. 1166-1169. ETA Firenze WIP Munich. [Pg.410]

Norberg, T. Glycosylation properties and reactivity of thioglycosides, sulfoxides, and other S-glycosides current scope and future prospects. Frontiers in Natural Product Research 1996, 1, 82-106. [Pg.611]

This entry presents the structure of computer-aided process engineering (CAPE) from the perspective of activities, problems, and methods. More detailed information is presented on process synthesis and chemical product development. Future prospects of process and product design are mentioned briefly. [Pg.517]

Playford, P.E. (1975) Petroleum in Western Australia a review of exploration, production, and future prospects. Aust Petrol. Explor. Ass. J., 15, 72-79. [Pg.361]

To deal with the criteria above adequately, much data must be analyzed. This chapter is designed to give the reader basic data for several selected companies and an idea of how company data can be analyzed. Its format is similar to that in Chapter 6. Section 7.2.1 gives a detailed analysis of a specific company Air Products and Chemicals, Inc. The analysis answers many of the questions above as well as those posed in Section 0.2.2 in the discussion of company term papers. Air Products has been selected for detailed analysis because it is a stable company with a history of high growth and has excellent future prospects. Sections 7.2.2-7.2.11 give some basic facts for an additional 10 companies. [Pg.242]


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