Detail publikačního výsledku

Up-to-date technologies in waste to energy field

STEHLÍK, P.

Original Title

Up-to-date technologies in waste to energy field

English Title

Up-to-date technologies in waste to energy field

Type

Peer-reviewed article not indexed in WoS or Scopus

Original Abstract

A review of up-to-date waste to energy technologies, their advances and improvements are presented in this paper. The focus is on waste incinerators under conditions of the European Union. Legislation overview, key equipment, ways of dealing with different process streams and tools for evaluating energy efficiency analysis are presented. The principles for maximum energy utilization are also formulated. A comparison of conventional and up-to-date performances of high efficiency flue gas cleaning systems illustrates the development of waste to energy technologies over the past decades.

English abstract

A review of up-to-date waste to energy technologies, their advances and improvements are presented in this paper. The focus is on waste incinerators under conditions of the European Union. Legislation overview, key equipment, ways of dealing with different process streams and tools for evaluating energy efficiency analysis are presented. The principles for maximum energy utilization are also formulated. A comparison of conventional and up-to-date performances of high efficiency flue gas cleaning systems illustrates the development of waste to energy technologies over the past decades.

Keywords

flue gas cleaning; heat recovery; incineration; waste to energy; waste treatment

Key words in English

flue gas cleaning; heat recovery; incineration; waste to energy; waste treatment

Authors

STEHLÍK, P.

Released

07.11.2012

ISBN

0167-8299

Periodical

REVIEWS IN CHEMICAL ENGINEERING

Volume

28

Number

4-6

State

United Kingdom of Great Britain and Northern Ireland

Pages from

223

Pages to

242

Pages count

20

Full text in the Digital Library

BibTex

@article{BUT111890,
  author="Petr {Stehlík}",
  title="Up-to-date technologies in waste to energy field",
  journal="REVIEWS IN CHEMICAL ENGINEERING",
  year="2012",
  volume="28",
  number="4-6",
  pages="223--242",
  issn="0167-8299"
}