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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>
	HEALTH RISK HAZARD OF HEAVY METAL IN DRINKING WATER SOURCE AROUND OWUKPA COAL MINE FIELD, BENUE STATE, NIGERIA
</ArtTitle><PubName>Journal of Biological ,Pharmaceutical And Chemical Research</PubName><JournalName>Journal of Biological ,Pharmaceutical And Chemical Research</JournalName><EISSN>2394-3076</EISSN><year>2023</year><volume>10</volume><issue>4</issue><AuthorName>
	Michael A. Abakpa1*, G.G Yebpella1, R.O.A Adelagun1, Precious Omale1, and T. Japhet1
	Page No.1-11
</AuthorName><PageNo>1</PageNo><Abstract>
	Concentrations of six elements were examined in water. Average concentration obtained from AAS analysis of the samples showed Ni (0.60), Fe (0.80), Cd (0.14), Cr (0.38), Pb (0.84), and Mn (0.73) in (mg/L). The concentration varied in the order: PbFeMnNiCrCd for water samples. It was observed that the trend of EDIs for heavy metals in the water samples analyzed increased in the order: FeMnNiPb CrCd. The HRIs of Ni, Mn, Cr and Fe were lower than 1 (HRI 1) except for Cd and Pb, with Carcinogenic Risk values of Ni (0.0041), Fe (0.0063), Cd (0.0076), Cr (0.0010), Pb (0.00), and Mn (0.0057), respectively.
	Keywords: Atomic absorption spectroscopy, carcinogenic risk, heavy metal.
</Abstract><URLs><abstract>http://www.jobpcr.com/archive-abs.php?arc=396</abstract><Fulltext><pdf>http://www.jobpcr.com/archive/JOBPCR-10-4-124-1-11.pdf</pdf></Fulltext></URLs></article><article><ArtTitle>
	Gas Phase photocatalysis application on Photooxidation of 2 Chloropropane
</ArtTitle><PubName>Journal of Biological ,Pharmaceutical And Chemical Research</PubName><JournalName>Journal of Biological ,Pharmaceutical And Chemical Research</JournalName><EISSN>2394-3076</EISSN><year>2023</year><volume>10</volume><issue>4</issue><AuthorName>
	E.C Ajiduku, E. Kamba and R. Odoh
	Page No.12-18
</AuthorName><PageNo>1</PageNo><Abstract>
	Most industrial chemical processes require large amounts of heat and pressure, whereas photocatalytic reactions may be carried out at room temperature and ordinary pressure. This study focuses on using UVA-activated TiO2 to drive organic processes in order to examine the latter. In this research, Glass beads were immobilized with TiO2 using a unique technique called gyratory induced adhesive coating. The catalyst was subsequently immobilized and employed in a gas phase flow reactor designed for experiments on the oxidation of 2-Chloropropane (2-CP).
	Keywords: Gas phase photocatalysis, Photooxidation, UVA-activated TiO2, Gyratory induced adhesive coating, 2-Chloropropane (2-CP)
</Abstract><URLs><abstract>http://www.jobpcr.com/archive-abs.php?arc=397</abstract><Fulltext><pdf>http://www.jobpcr.com/archive/JOBPCR-10-4-125-12-18.pdf</pdf></Fulltext></URLs></article></channel></rss>
