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Titlebook: Enhancing Cleanup of Environmental Pollutants; Volume 2: Non-Biolog Naser A. Anjum,Sarvajeet Singh Gill,Narendra Tutej Book 2017 Springer I

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發(fā)表于 2025-3-21 18:51:18 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Enhancing Cleanup of Environmental Pollutants
副標題Volume 2: Non-Biolog
編輯Naser A. Anjum,Sarvajeet Singh Gill,Narendra Tutej
視頻videohttp://file.papertrans.cn/312/311278/311278.mp4
概述Demonstrates the role of plants and microbes in improving soil fertility and function.Assists members of the environmental and plant sciences community to keep abreast of developments in terrestrial p
圖書封面Titlebook: Enhancing Cleanup of Environmental Pollutants; Volume 2: Non-Biolog Naser A. Anjum,Sarvajeet Singh Gill,Narendra Tutej Book 2017 Springer I
描述This two-volume work?is an effort to provide a common platform to environmental engineers, microbiologists, chemical scientists, plant physiologists and molecular biologists working with a common aim of sustainable solutions to varied environmental contamination issues. Chapters explore biological and non-biological strategies to minimize environmental pollution.?Highly readable entries attempt to close the knowledge gap between plant - microbial associations and environmental remediation..Volume 2 focuses on the non-biological/chemical approaches for the cleanup of contaminated soils. Important concepts such as the?role of metallic iron in the decontamination of hexavalent chromium polluted waters?are highlighted; in addition, nanoscale materials and electrochemical approaches used in water and soil remediation are discussed; and?the synthesis and characterization of cation composite exchange material and its application in removing toxic metals are elaborated in detail.?Readers will also discover the?major advances in the remediation of environmental pollutants by adsorption technologies.?.
出版日期Book 2017
關鍵詞pesticide contaminated soils; PAH polluted soils; phytoremediation; mineralization of organic contamina
版次1
doihttps://doi.org/10.1007/978-3-319-55423-5
isbn_softcover978-3-319-85656-8
isbn_ebook978-3-319-55423-5
copyrightSpringer International Publishing AG 2017
The information of publication is updating

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https://doi.org/10.1057/9780230511019ion, ion exchange). A number of nanocomposite materials are playing active role in water purification, for example, metal nanoparticles, bioactive nanoparticles, nanosorbents, nanocatalysts, nanomembranes, carbon nanotubes, many other nanoforms, etc. This chapter discusses the application of differe
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地板
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https://doi.org/10.1057/9781137398734roxides and/or mixed Fe(III)-Cr(III) (oxi)hydroxides. Recently, new perspectives were added to this early mechanism. A new concept, known as the adsorption-coprecipitation mechanism, suggests that direct reduction with Fe., if applicable, is less important than had previously been assumed by the red
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queous systems and a material for hydrogen storage at room temperature. The suspension polymerized adsorbents were highly cross-linked to achieve better mechanical properties, and the porosity is introduced in the copolymer matrix. Discrete metal ions such as Cu(II), Co(II), Ni(II), Zn(II) and Au(II
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https://doi.org/10.1007/978-3-031-11313-0d naturally in the soils and which reduce the mobility and bioavailability of pollutants; additionally, its application may stimulate the microorganism development that acts in degradation of both organic and inorganic pollutants. Despite these benefits, the use of wastes as soil amendments has been
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https://doi.org/10.1007/978-981-99-9821-0ls in order to improve the performance of the polluted system and enhance the biological, chemical, and physical interactions. The objectives of this chapter are (i) to analyze the relevant state of the art, (ii) to discuss the main advantages and disadvantages linked with the use of organic and min
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Microwave Heating-Mediated Remediation of Hydrocarbon-Polluted Soils: Theoretical Background and Tet-effectiveness since it offers the potential to significantly reduce treatment times, risk of contamination and costs due to the direct interaction of microwaves with the soil and its ability to overcome heat and mass transfer limitations. In conventional heating systems, the energy is transferred
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