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Titlebook: Bioremediation of Soils Contaminated with Aromatic Compounds; Hermann J. Heipieper Conference proceedings 20071st edition Springer Science

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發(fā)表于 2025-3-21 18:34:41 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Bioremediation of Soils Contaminated with Aromatic Compounds
影響因子2023Hermann J. Heipieper
視頻videohttp://file.papertrans.cn/189/188512/188512.mp4
發(fā)行地址Addresses a quite wide readership working in the wide field of environmental sciences.Specialized workers in the field of environmental biotechnology should find the updated materials on several areas
學(xué)科分類NATO Science Series: IV:
圖書封面Titlebook: Bioremediation of Soils Contaminated with Aromatic Compounds;  Hermann J. Heipieper Conference proceedings 20071st edition Springer Science
影響因子Environmental biotechnology, which was in its infancy in the early 80‘s, has evolved thanks to the revolution brought about by molecular biology. Multiple successes in the biological cleanup of civil and industrial wastewater and of hydrocarbon soil pollution, demonstrate the vast power of clean technologies. In addition, the buildup of information on the activities of microorganisms as catalysts in all sorts of natural, industrial and animal environments has flourished. There is a continuing realization of the critical role of microbial processes in biological, industrial and geological systems. Since environmental biotechnology has matured, it is ready to tackle bigger challenges: the scaling up of many bioremediation systems still in progress, the search for novel biocatalysts for industrial applications, the continuing effort against common human life-threatening processes such as antibiotic resistance, the accumulation of hormone-mimicking substances (endocrine disrupters), the deposition of air-borne pesticides in the environment and, the degradation of recalcitrant contaminants. These endeavors will help prevent the contamination of food chains, protect human life and allow
Pindex Conference proceedings 20071st edition
The information of publication is updating

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REGULATION OF THE ATRAZINE DEGRADATIVE PATHWAY IN Pseudomonas,rom intracellular pools of metabolites. We have used this knowledge to develop a mutant unable to assimilate nitrate that displays an efficient degradative phenotype in nitrate-amended soil. The inhibitory effect of nitrogen operates at the level of gene expression. One of the targets of this regula
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Nabil Abu el Ata,Annie Drucbertreatment. Highest values for all measured microbiological parameters were found in rhizosphere samples. Within a two and half year period starting from establishment of test plots, the concentration of phenolic compounds decreased up to 100% and oil products more than three times at plots with veget
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1568-1238 s), the deposition of air-borne pesticides in the environment and, the degradation of recalcitrant contaminants. These endeavors will help prevent the contamination of food chains, protect human life and allow 978-1-4020-5692-5978-1-4020-5693-2Series ISSN 1568-1238
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