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	<Article> 

	<Journal> 

	<PublisherName>International Science Community Association</PublisherName>

	<JournalTitle>Research Journal of Chemical Sciences</JournalTitle> 

	<Issn>2231 - 606X</Issn>

	<Volume>7</Volume>

	<Issue>8</Issue>

	<PubDate PubStatus="ppublish"> 

	<Year>2017</Year> 

	<Month>08</Month> 

	<Day>18</Day> 

	</PubDate>

	</Journal>



	<ArticleTitle>Distribution and removal efficiency of heavy metals by a conventional activated sludge at a municipal wastewater treatment plant in Kisumu City, Kenya</ArticleTitle> 


	<FirstPage>19</FirstPage>

	<LastPage>25</LastPage>



	<ELocationID EIdType="pii"></ELocationID>

	<Language>EN</Language> 
	<AuthorList>

	
		<Author> 

		<FirstName>Piyush Kant </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Pandey </LastName>

		<Suffix>1</Suffix>

		<Affiliation>Bhilai Institute of Technology Raipur, Kendri, NH-43, New Raipur-493661, Chhattisgarh, India</Affiliation>

		</Author>
		<Author> 

		<FirstName>Rekha </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Trivedi </LastName>

		<Suffix>2</Suffix>

		<Affiliation>Department of Chemistry, Shri shankaracharya Technical Campus, Bhilai-490020 Chhattisgarh, India</Affiliation>

		</Author>
		<Author> 

		<FirstName>Madhurima  </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Pandey </LastName>

		<Suffix>3</Suffix>

		<Affiliation>Department of Chemistry, Bhilai Institute of Technology, Durg-491001, Chhattisgarh, India</Affiliation>

		</Author>
		<Author> 

		<FirstName>Maria </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Sadia </LastName>

		<Suffix>1</Suffix>

		<Affiliation>Department of Chemistry, University of Malakand, Chakdara, Lower Dir, Khyber Pakhtunkhwa, Pakistan</Affiliation>

		</Author>
		<Author> 

		<FirstName>Muhammad Naveed </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Umar </LastName>

		<Suffix>2</Suffix>

		<Affiliation>Department of Chemistry, University of Malakand, Chakdara, Lower Dir, Khyber Pakhtunkhwa, Pakistan</Affiliation>

		</Author>
		<Author> 

		<FirstName>Robina </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Naz </LastName>

		<Suffix>3</Suffix>

		<Affiliation>Department of Chemistry, University of Malakand, Chakdara, Lower Dir, Khyber Pakhtunkhwa, Pakistan</Affiliation>

		</Author>
		<Author> 

		<FirstName>Jahangir </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Khan </LastName>

		<Suffix>4</Suffix>

		<Affiliation>Department of Chemistry, University of Malakand, Chakdara, Lower Dir, Khyber Pakhtunkhwa, Pakistan</Affiliation>

		</Author>
		<Author> 

		<FirstName>Rizwan  </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Khan </LastName>

		<Suffix>5</Suffix>

		<Affiliation>Department of Chemistry, University of Malakand, Chakdara, Lower Dir, Khyber Pakhtunkhwa, Pakistan</Affiliation>

		</Author>
		<Author> 

		<FirstName>Victor O. </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Shikuku</LastName>

		<Suffix>1</Suffix>

		<Affiliation>Maseno University, P.O. Box 333-40105, Maseno, Kenya</Affiliation>

		</Author>
		<Author> 

		<FirstName>George O. </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Achieng</LastName>

		<Suffix>2</Suffix>

		<Affiliation>Maseno University, P.O. Box 333-40105, Maseno, Kenya</Affiliation>

		</Author>
		<Author> 

		<FirstName>Emily </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Ng’eno</LastName>

		<Suffix>3</Suffix>

		<Affiliation>Masinde Muliro University of Science and Technology, P.O. Box 190-50100, Kakamega, Kenya</Affiliation>

		</Author>
		<Author> 

		<FirstName>George M. </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Okowa</LastName>

		<Suffix>4</Suffix>

		<Affiliation>Kenyatta University, P.O. Box 43844-00100, Nairobi, Kenya</Affiliation>

		</Author>
		<Author> 

		<FirstName>Gloria A. </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Masitsa</LastName>

		<Suffix>5</Suffix>

		<Affiliation>Egerton University, P.O Box 536-20115, Egerton, Kenya</Affiliation>

		</Author>
		<Author> 

		<FirstName>James J.  </FirstName>

		<MiddleName> </MiddleName>

		<LastName>Owuor</LastName>

		<Suffix>6</Suffix>

		<Affiliation>The Technical University of Kenya, P.O. Box 52428-00200, Nairobi, Kenya</Affiliation>

		</Author>

	<Author>

	<CollectiveName></CollectiveName>>

	</Author>

	</AuthorList>


	<PublicationType>Research Paper</PublicationType>


	<History>  
	<PubDate PubStatus="received">
	<Year>2017</Year>
	<Month>6</Month>
	<Day>2</Day>
	</PubDate>
	<PubDate PubStatus="accepted">										
	<Year>2017</Year> 
	<Month>08</Month>									
	<Day>18</Day> 
	</PubDate>

	</History>
	<Abstract>The aim of this study was to evaluate the occurrence and the instantaneous overall efficiency of the municipal wastewater treatment facility in Kisumu City-Kenya, a highly populated City, and compare the effluent quality parameters to the National Environmental Management Authority (NEMA) regulations. The heavy metals concentrations (Cu, Pb, Zn, Fe, Mg and Mn) were determined from the inflow and at each stage of the water treatment process including sludge to the effluent discharged to the recipient river. Sample preparation and analysis were done according to the recommended methods. The findings on site characteristics show that pH and chemical oxygen demand (COD) in the treated effluent exceeded the allowable limits. All the selected metal ions (Cu, Pb, Zn, Fe, Mg and Mn) were detected with 100% frequency in the influent water except for Pb which was below the instrumental detection limit (0.001 mg/L). The levels of the heavy metals recorded in the sediment samples were significantly higher than those in the corresponding water samples. The ascending order of the metal percentage removal efficiency (%R) from the treatment plant was: Zn (-127.77%) < Fe (3.66%) < Mn (16.64%) < Cu (24.26%) < Mg (46.97%) indicating that the removal efficiency was directly proportional to the initial metal ion levels in the influent. It is concluded that the plant is a point source for Zn loading into the recipient waters and biosorption and dissolution of the metal ions in the liquid fraction of the sludge were the key modes of metal elimination from the wastewater.</Abstract>

	<CopyrightInformation>Copyright@ International Science Community Association</CopyrightInformation>

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