Effective treatment of palm oil mill effluent using FeSO4•7H2O waste from titanium oxide industry: Coagulation adsorption isotherm and kinetics studies

被引:54
|
作者
Hossain, Md. Sohrab [1 ]
Omar, Fatehah [2 ]
Asis, Ahmad Jaril [3 ]
Bachmann, Robert Thomas [4 ]
Sarker, Md. Zaidul Islam [5 ]
Ab Kadir, Mohd Omar [1 ]
机构
[1] Univ Sains Malaysia, Sch Ind Technol, Environm Technol Div, George Town 11800, Malaysia
[2] Univ Sains Malaysia, Sch Civil Engn, Nibong Tebal 14300, Penang, Malaysia
[3] Sime Darby Res Sdn Bhd, Carey Isl 42900, Selangor, Malaysia
[4] Univ Kuala Lumpur, Branch Campus Malaysian Inst Chem & Bioengn Techn, Alor Gajah 78000, Melaka, Malaysia
[5] Int Islamic Univ Malaysia, Fac Pharm, Kuantan Campus, Kuantan 25200, Pahang, Malaysia
关键词
Agro-industrial wastewater; Isotherm model; Coagulation kinetics; Ferrous sulfate; POME; Wastewater treatment; FERROUS SULFATE; REMOVAL; WATER; BIOGAS; FLOCCULATION; TECHNOLOGIES; CHLORIDE;
D O I
10.1016/j.jclepro.2019.02.069
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Palm oil mill effluent (POME) is a highly polluted industrial wastewater that may cause detrimental environmental pollution if discharged directly due to its biochemical oxygen demand (BOD) and chemical oxygen demand (COD) concentrations. In the present study, the performance of FeSO4 center dot 7H(2)O waste from titanium oxide industry was investigated in removing BOD, COD, and total suspended solids (TSS) from POME. Jar tests were conducted with varying coagulant doses (1-5 g L-1), pH (2-10), and temperature (40-80 degrees C) as a function of treatment time ranging from 5 to 90 min. Results show that the FeSO4 center dot 7H(2)O waste can remove about 70% COD, over 80% BOD, and over 85% TSS in a single stage coagulation treatment. The coagulation adsorption mechanisms for the removal of COD, BOD, and TSS from POME were investigated based on Brunauer-Emmett-Teller (BET), Freundlich, and Langmuir isotherm models. The removal of COD, BOD, and TSS from POME was best described by the Freundlich isotherm model, indicating that coagulation adsorption occurred in a multilayer formation with non-uniform distribution of adsorbed particles. The coagulation adsorption kinetics studies revealed that the removal of COD, BOD, and TSS from POME using FeSO4 center dot 7H(2)O waste followed the second-orderkinetics modeling. Our findings suggest that the FeSO4 center dot 7H(2)O waste has the potential to be utilized as a coagulant for treating POME in compliance with the standard discharge limits. (C) 2019 Elsevier Ltd. All rights reserved.
引用
收藏
页码:86 / 98
页数:13
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