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        <Text language="eng">&lt;p&gt;This multidisciplinary book is the result of a collective work synthesizing presentations made by various specialists during the CNRS «BIODEMAT» school, which took place in October 2014 in La Rochelle (France). It is designed for readers of a range of scientiﬁc specialties (chemistry, biology, physics, etc.) and examines various industrial problems (e.g., water, sewerage and maintaining building materials).&lt;/p&gt;&lt;p&gt;Metallic, cementitious, polymeric and composite materials age depending on their service and operational environments. In such cases, the presence of microorganisms can lead to biodeterioration. However, microorganisms can also help protect structures, provided their immense possibilities are mastered and put to good use.&lt;/p&gt;&lt;p&gt;This book is divided into ﬁve themes related to biocolonization, material biodeterioration, and potential improvements to such materials resulting in better performance levels with respect to biodeterioration:&lt;br /&gt;•     physical chemistry of surfaces; &lt;br /&gt;•     bioﬁlm implication in biodeterioration; &lt;br /&gt;•     biocorrosion of metallic materials; &lt;br /&gt;•     biodeterioration of non-metallic materials; &lt;br /&gt;•     design and modiﬁcation of materials.&lt;/p&gt;&lt;p&gt;The afﬁliations of the authors of the various chapters illustrate the synergy between academic research and its transfer to industry. This demonstrates the essential interaction between the various actors in this complex ﬁeld: analysing, understanding, and responding to the scientiﬁc issues related to biodeterioration.&lt;/p&gt;</Text>
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        <Text>Metallic, cementitious, polymeric or composite materials age according to their service environment. Thus, when microorganisms are present, they can induce a biodeterioration. However, microorganisms can also contribute to the protection of the structures, provided to master and exploit their immense possibilities.</Text>
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        <Text language="fre">&lt;p&gt;This multidisciplinary book is the result of a collective work synthesizing presentations made by various specialists during the CNRS «BIODEMAT» school, which took place in October 2014 in La Rochelle (France). It is designed for readers of a range of scientiﬁc specialties (chemistry, biology, physics, etc.) and examines various industrial problems (e.g., water, sewerage and maintaining building materials).&lt;/p&gt;&lt;p&gt;Metallic, cementitious, polymeric and composite materials age depending on their service and operational environments. In such cases, the presence of microorganisms can lead to biodeterioration. However, microorganisms can also help protect structures, provided their immense possibilities are mastered and put to good use.&lt;/p&gt;&lt;p&gt;This book is divided into ﬁve themes related to biocolonization, material biodeterioration, and potential improvements to such materials resulting in better performance levels with respect to biodeterioration:&lt;br&gt;•&amp;nbsp;&amp;nbsp; &amp;nbsp; physical chemistry of surfaces; &lt;br&gt;•&amp;nbsp;&amp;nbsp; &amp;nbsp; bioﬁlm implication in biodeterioration; &lt;br&gt;•&amp;nbsp;&amp;nbsp; &amp;nbsp; biocorrosion of metallic materials; &lt;br&gt;•&amp;nbsp;&amp;nbsp; &amp;nbsp; biodeterioration of non-metallic materials; &lt;br&gt;•&amp;nbsp;&amp;nbsp; &amp;nbsp; design and modiﬁcation of materials.&lt;/p&gt;&lt;p&gt;The afﬁliations of the authors of the various chapters illustrate the synergy between academic research and its transfer to industry. This demonstrates the essential interaction between the various actors in this complex ﬁeld: analysing, understanding, and responding to the scientiﬁc issues related to biodeterioration.&lt;/p&gt;</Text>
        <Text language="eng">&lt;p&gt;This multidisciplinary book is the result of a collective work synthesizing presentations made by various specialists during the CNRS «BIODEMAT» school, which took place in October 2014 in La Rochelle (France). It is designed for readers of a range of scientiﬁc specialties (chemistry, biology, physics, etc.) and examines various industrial problems (e.g., water, sewerage and maintaining building materials).&lt;/p&gt;&lt;p&gt;Metallic, cementitious, polymeric and composite materials age depending on their service and operational environments. In such cases, the presence of microorganisms can lead to biodeterioration. However, microorganisms can also help protect structures, provided their immense possibilities are mastered and put to good use.&lt;/p&gt;&lt;p&gt;This book is divided into ﬁve themes related to biocolonization, material biodeterioration, and potential improvements to such materials resulting in better performance levels with respect to biodeterioration:&lt;br /&gt;•     physical chemistry of surfaces; &lt;br /&gt;•     bioﬁlm implication in biodeterioration; &lt;br /&gt;•     biocorrosion of metallic materials; &lt;br /&gt;•     biodeterioration of non-metallic materials; &lt;br /&gt;•     design and modiﬁcation of materials.&lt;/p&gt;&lt;p&gt;The afﬁliations of the authors of the various chapters illustrate the synergy between academic research and its transfer to industry. This demonstrates the essential interaction between the various actors in this complex ﬁeld: analysing, understanding, and responding to the scientiﬁc issues related to biodeterioration.&lt;/p&gt;</Text>
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        <Text>Metallic, cementitious, polymeric or composite materials age according to their service environment. Thus, when microorganisms are present, they can induce a biodeterioration. However, microorganisms can also contribute to the protection of the structures, provided to master and exploit their immense possibilities.</Text>
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