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<rss version="2.0"><channel><title>Jobpcr</title><link>http://www.jobpcr.com</link><description>Journal of Chemical and Pharmaceutical Research is an online international journal to promote all fields of Chemical Sciences like Organic Chemistry, Green Chemistry, Photochemistry, Inorganic Chemistry, Physical Chemistry, Industrial Chemistry, Biochemistry, Environmental Chemistry, Agricultural and Soil Chemistry, Analytical Chemistry, Polymer Chemistry, Macromolecular Chemistry, Petroleum Chemistry, Forensic Chemistry and Phytochemistry as well as all aspects of Chemical Engineering etc.</description><article><ArtTitle>
	MICROBIAL TOXICITY IN DAMAGED CULTURAL MONUMENTS AND INDOOR ENVIRONMENT
</ArtTitle><PubName>Journal of Biological ,Pharmaceutical And Chemical Research</PubName><JournalName>Journal of Biological ,Pharmaceutical And Chemical Research</JournalName><EISSN>2394-3076</EISSN><year>2020</year><volume>7</volume><issue>4</issue><AuthorName>
	Dr. Laxmi Kirana Pallathadka1, Dr. Harikumar Pallathadka2*
	Page No. 1-12
</AuthorName><PageNo>1</PageNo><Abstract>
	Microbial toxicity and eukaryotic cell contamination from indoor construction products significantly colonized by biocommunities were investigated. Microbial contamination is a crucial aspect of air pollution in indoor areas. It is originated from different types of bacterial and fungal spp., mainly filamentous fungi, growing inside when appropriate moisture is supplied. Biocommunities are global in the biosphere, and their existence always distresses the environment in which they expand. The impacts of biocommunities on their surroundings can be helpful, destructive, or noticeable when it refers to human measure or observation. The most critical impact of these biocommunities worldwide is their capacity to reprocess the key elements that consist of every live organism, primarily carbon(C), oxygen (O), and nitrogen (N). Primary production engages photosynthetic microbes, which consume carbon dioxide from the configuration and transform it into organic (cellular) items. The procedure is known as carbon dioxide fixation, and it composes a substantial part of organic C comfortably provided for the synthesis of cell items. Biodegradation triggers the breakdown of difficult all-natural items too numerous other types of carbon that numerous other microorganisms can utilize. There is no usually happening natural product that some microbe cannot damage down. However, some fabricated substances such as Teflon, plastics, chemicals, and biocides gradually break down. The outcome impact of overlapping aspects identifies the opportunity for the growth of specific biocommunities. The essential variables affecting the development are temperature, wetness, H- Conc., in the atmosphere, oxidoreductive potential, H2O movement in the atmosphere, together with hydrostatic pressure. The research gives a complete summary of deterioration. The impact of the outside and interior environment on the surface of cultural heritage made of mineral building materials, and much more.
	Keywords: Deterioration; elements; temperature; pH; humidity; monuments
</Abstract><URLs><abstract>http://www.jobpcr.com/archive-abs.php?arc=321</abstract><Fulltext><pdf>http://www.jobpcr.com/archive/JOBPCR-2020-7-4-075-1-12.pdf</pdf></Fulltext></URLs></article><article><ArtTitle>
	AN ANALYSIS ON THE PROBLEM OF APPLICATION, ISSUES, AND ENVIRONMENTAL HAZARDS IN BIOCIDE TREATMENT OF SANDSTONE
</ArtTitle><PubName>Journal of Biological ,Pharmaceutical And Chemical Research</PubName><JournalName>Journal of Biological ,Pharmaceutical And Chemical Research</JournalName><EISSN>2394-3076</EISSN><year>2020</year><volume>7</volume><issue>4</issue><AuthorName>
	Dr. Laxmi Kirana Pallathadka1, Dr. Harikumar Pallathadka2*, Prof. Takhelchangbam Brajeshwari Devi3
	Page No. 13-24
</AuthorName><PageNo>1</PageNo><Abstract>
	Rapid decay of the physical heritage is a significant issue and urgently requires remediation. Microbial generated or catalyzed decay amounts have substantially increased in the industrial age primarily via inorganic and organic air contamination. They are most quick in rock art, pre-historical and historical mural painting, and antique marble structures and sculptures. In the structure of several interdisciplinary research study tasks and networks, bio receptivity in addition to bio susceptibility of therapeutic agents for the protection of physical culture heritage was studied or reviewed. Masonry biocides used in the control of organic developments are seldom explicitly formulated for structure materials, and there is now an expanding problem for their total impacts on the rock. A unique method was developed that used dried biocide residues after touching with various sandstone types. A typical method, power dispersive XRD, was then used to examine the possibility of the biocides causing the dissolution of stone components. Of the biocides utilized in the analysis, a quaternary ammonium compound with no natural borate had a minor result in the dissolution of rock components. A biocide containing dichlorophenol showed up to trigger some dissolution of silicate minerals, the impact likely to be related to its high pH. The third biocide, an alkylamine, produced the dissolution of Al, Si, K, and Fe. Clay minerals seemed one of the most susceptible to the alkylamine biocides effect. The mode of action is associated with the development of clay-amine developments, resulting in clay dispersal. Rock minerals in the biologically decayed sandstone were much less vulnerable to the activity of the biocides. It could be associated with the existence of various microbial items included in the stone. However, the action of masonry biocides on decayed stone requires even more research to illuminate a specific mechanistic activity. This research has revealed the analysis of biocide treatment sandstone problem of application, issue, and environmental hazards.
	Keywords: Biodeterioration phenomena, Microbial neighborhoods, Biocides, Preservation.
</Abstract><URLs><abstract>http://www.jobpcr.com/archive-abs.php?arc=322</abstract><Fulltext><pdf>http://www.jobpcr.com/archive/JOBPCR-2020-7-4-076-13-24.pdf</pdf></Fulltext></URLs></article></channel></rss>
