Siti Rozaimah Sheikh Abdullah
National University of Malaysia
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Siti Rozaimah Sheikh Abdullah.
International Journal of Chemical Engineering | 2011
Bieby Voijant Tangahu; Siti Rozaimah Sheikh Abdullah; Hassan Basri; Mushrifah Idris; Nurina Anuar; Muhammad Mukhlisin
Heavy metals are among the most important sorts of contaminant in the environment. Several methods already used to clean up the environment from these kinds of contaminants, but most of them are costly and difficult to get optimum results. Currently, phytoremediation is an effective and affordable technological solution used to extract or remove inactive metals and metal pollutants from contaminated soil and water. This technology is environmental friendly and potentially cost effective. This paper aims to compile some information about heavy metals of arsenic, lead, and mercury (As, Pb, and Hg) sources, effects and their treatment. It also reviews deeply about phytoremediation technology, including the heavy metal uptake mechanisms and several research studies associated about the topics. Additionally, it describes several sources and the effects of As, Pb, and Hg on the environment, the advantages of this kind of technology for reducing them, and also heavy metal uptake mechanisms in phytoremediation technology as well as the factors affecting the uptake mechanisms. Some recommended plants which are commonly used in phytoremediation and their capability to reduce the contaminant are also reported.
Journal of Environmental Management | 2012
Hassimi Abu Hasan; Siti Rozaimah Sheikh Abdullah; Noorhisham Tan Kofli; S.K. Kamarudin
Manganese (Mn(2+)) is one of the inorganic contaminant that causes problem to water treatment and water distribution due to the accumulation on water piping systems. In this study, Bacillus sp. and sewage activated sludge (SAS) were investigated as biosorbents in laboratory-scale experiments. The study showed that Bacillus sp. was a more effective biosorbent than SAS. The experimental data were fitted to the Langmuir (Langmuir-1 & Langmuir-2), Freundlich, Temkin, Dubinin-Radushkevich (D-R) and Redlich-Peterson (R-P) isotherms to obtain the characteristic parameters of each model. Mn(2+) biosorption by Bacillus sp. was found to be significantly better fitted to the Langmuir-1 isotherm than the other isotherms, while the D-R isotherm was the best fit for SAS; i.e., the χ(2) value was smaller than that for the Freundlich, Temkin, and R-P isotherms. According to the evaluation using the Langmuir-1 isotherm, the maximum biosorption capacities of Mn(2+) onto Bacillus sp. and SAS were 43.5 mg Mn(2+)/g biomass and 12.7 mg Mn(2+)/g biomass, respectively. The data fitted using the D-R isotherm showed that the Mn(2+) biosorption processes by both Bacillus sp. and SAS occurred via the chemical ion-exchange mechanism between the functional groups and Mn(2+) ion.
Bioresource Technology | 2012
Hassimi Abu Hasan; Siti Rozaimah Sheikh Abdullah; Noorhisham Tan Kofli; S.K. Kamarudin
This study determined the most effective microbes acting as ammonia-oxidising (AOB) and manganese-oxidising bacteria (MnOB) for the simultaneous removal of ammonia (NH(4)(+)-N) and manganese (Mn(2+)) from water. Two conditions of mixed culture of bacteria: an acclimatised mixed culture (mixed culture: MC) in a 5-L bioreactor and biofilm attached on a plastic medium (stages of mixed culture: SMC) in a biological aerated filter were isolated and identified using Biolog MicroSystem and 16S rRNA sequencing. A screening test for determining the most effective microbe in the removal of NH(4)(+)-N and Mn(2+) was initially performed using SMC and MC, respectively, and found that Bacillus cereus was the most effective microbe for the removal of NH(4)(+)-N and Mn(2+). Moreover, the simultaneous NH(4)(+)-N and Mn(2+) removal (above 95% removal for both NH(4)(+)-N and Mn(2+)) was achieved using a biological aerated filter under various operating conditions. Thus, the strain could act as an effective microbe of AOB and a MnOB for the simultaneous removal of NH(4)(+)-N and Mn(2+).
Bioresource Technology | 2012
Zahira Yaakob; Irwan Sukma Bin Sukarman; Binitha N. Narayanan; Siti Rozaimah Sheikh Abdullah; Manal Ismail
Transesterification reaction of Jatropha curcas oil with methanol was carried out in the presence of ash generated from Palm empty fruit bunch (EFB) in a heterogeneous catalyzed process. The ash was doped with KOH by impregnation to achieve a potassium level of 20 wt.%. Under optimum conditions for the EFB-catalyzed (65 °C, oil/methanol ratio of 15, 90 min, 20 wt.% EFB ash catalyst) and the KOH-EFB-catalyzed reactions (65 °C, oil/methanol ratio of 15, 45 min, 15 wt.% of KOH doped EFB ash), biodiesel (>98%) with specifications higher than those stipulated by European biodiesel quality standard EN 14214 was obtained.
International Journal of Phytoremediation | 2013
Bieby Voijant Tangahu; Siti Rozaimah Sheikh Abdullah; Hassan Basri; Mushrifah Idris; Nurina Anuar; Muhammad Mukhlisin
Phytoremediation is a technology to clean the environment from heavy metals contamination. The objectives of this study are to threat Pb contaminated wastewater by using phytoremediation technology and to determine if the plant can be mention as hyperaccumulator. Fifty plants of Scirpus grossus were grown in sand medium and 600 L spiked water in various Pb concentration (10, 30 and 50 mg/L) was exposed. The experiment was conducted with single exposure method, sampling time on day-1, day-14, day-28, day-42, day-70, and day-98. The analysis of Pb concentration in water, sand medium and inside the plant tissue was conducted by ICP-OES. Water samples were filtered and Pb concentration were directly analyzed, Pb in sand samples were extracted by EDTA method before analyzed, and Pb in plant tissues were extracted by wet digestion method and analyzed. The results showed that on day-28, Pb concentration in water decreased 100%, 99.9%, 99.7%, and the highest Pb uptake by plant were 1343, 4909, 3236 mg/kg for the treatment of 10, 30, and 50 mg/L respectively. The highest BC and TF were 485,261 on day-42 and 2.5295 on day-70 of treatment 30 mg/L, it can be mentioned that Scirpus grossus is a hyperaccumulator.
Journal of Environmental Management | 2014
Israa Abdulwahab Al-Baldawi; Siti Rozaimah Sheikh Abdullah; Hassimi Abu Hasan; Fatihah Suja; Nurina Anuar; Idris Mushrifah
This study investigated the optimum conditions for total petroleum hydrocarbon (TPH) removal from diesel-contaminated water using phytoremediation treatment with Scirpus grossus. In addition, TPH removal from sand was adopted as a second response. The optimum conditions for maximum TPH removal were determined through a Box-Behnken Design. Three operational variables, i.e. diesel concentration (0.1, 0.175, 0.25% Vdiesel/Vwater), aeration rate (0, 1 and 2 L/min) and retention time (14, 43 and 72 days), were investigated by setting TPH removal and diesel concentration as the maximum, retention time within the given range, and aeration rate as the minimum. The optimum conditions were found to be a diesel concentration of 0.25% (Vdiesel/Vwater), a retention time of 63 days and no aeration with an estimated maximum TPH removal from water and sand of 76.3 and 56.5%, respectively. From a validation test of the optimum conditions, it was found that the maximum TPH removal from contaminated water and sand was 72.5 and 59%, respectively, which was a 5 and 4.4% deviation from the values given by the Box-Behnken Design, providing evidence that S. grossus is a Malaysian native plant that can be used to remediate wastewater containing hydrocarbons.
Journal of Environmental Quality | 2011
M. Ansori Nasution; Zahira Yaakob; Ehsan Ali; S. M. Tasirin; Siti Rozaimah Sheikh Abdullah
Palm oil mill effluent (POME) is highly polluting wastewater generated from the palm oil milling process. Palm oil mill effluent was used as an electrolyte without any additive or pretreatment to perform electrocoagulation (EC) using electricity (direct current) ranging from 2 to 4 volts in the presence of aluminum electrodes with a reactor volume of 20 L. The production of hydrogen gas, removal of chemical oxygen demand (COD), and turbidity as a result of electrocoagulation of POME were determined. The results show that EC can reduce the COD and turbidity of POME by 57 and 62%, respectively, in addition to the 42% hydrogen production. Hydrogen production was also helpful to remove the lighter suspended solids toward the surface. The production of Al(OH)XHO at the aluminum electrode (anode) was responsible for the flocculation-coagulation process of suspended solids followed by sedimentation under gravity. The production of hydrogen gas from POME during EC was also compared with hydrogen gas production by electrolysis of tap water at pH 4 and tap water without pH adjustment under the same conditions. The main advantage of this study is to produce hydrogen gas while treating POME with EC to reduce COD and turbidity effectively.
Journal of Hazardous Materials | 2013
Israa Abdulwahab Al-Baldawi; Siti Rozaimah Sheikh Abdullah; Nurina Anuar; Fatihah Suja; Mushrifah Idris
In this study, bulrush (Scirpus grossus) was subjected to a 72 day phytotoxicity test to assess its ability to phytoremediate diesel contamination in simulated wastewater at different concentrations (0, 8700, 17,400 and 26,100mg/L). Diesel degradation by S. grossus was measured in terms of total petroleum hydrocarbon (TPH-D). The TPH-D concentration in the synthetic wastewater was determined with the liquid-liquid extraction method and gas chromatography. S. grossus was found to reduce TPH-D by 70.0 and 80.2% for concentrations of 8700 mg/L and 17,400mg/L, respectively. At a diesel concentration of 26,100mg/L, S. grossus died after 14 days. Additionally, the biomass of S. grossus plants was found to increase throughout the phytotoxicity test, confirming the ability of the plant to survive in water contaminated with diesel at rates of less than 17,400mg/L.
global engineering education conference | 2011
Norliza Abd Rahman; Noorhisham Tan Kofli; Mohd Sobri Takriff; Siti Rozaimah Sheikh Abdullah
The traditional laboratory work based on guided assignment will not be adequate within the outcome based learning environment. Innovative approaches that require active involvement of the students in the learning activities are necessary in ensuring that the targeted learning outcomes are achieved. The Department of Chemical and Process Engineering, Universiti Kebangsaan Malaysia, introduced open ended laboratory work in 2008 as part of the effort to provide suitable learning environment for the students to achieve the learning outcomes. This paper describes a comparison study between traditional and open ended laboratory; the implementation of the open ended laboratory and its impact on the overall students learning experience with emphasis on programme outcomes. The open ended laboratory assignment was first implemented in the first semester of the 2008–2009 academic years. The students are divided in groups of four and were only given a statement on their laboratory assignment. They are required to determine the objectives and the scope of the laboratory assignment, to identify the necessary apparatus and prepare the step by step methodology. Each group is required to prepare a report on the above elements and present the results. They are graded based on the originality of their idea, results and discussion from the laboratory assignment and oral presentation. Initially the students had some difficulties because they were not familiar with such laboratory assignment. However, the performance was improved in the proceeding semesters and they are better prepared for their final year research project.
2011 International Conference on Pattern Analysis and Intelligence Robotics | 2011
Siti Rozaimah Sheikh Abdullah; Mohd Marzuki Mustafa; Rakmi Abdul Rahman; Tracy Ong Suan Imm; Hassimi Abu Hassan
The process control of pH in wastewater neutralisation and metal precipitation processes has been identified difficult to achieve via a normal conventional PID controller due to its non-linear and time-varying characteristics. Recently, controlling pH via fuzzy logic system that makes use of uncertain information and valuable human experience, has gained new attention and been proved efficient in controlling pH. Normally, in fuzzy logic controller, the speed of variable speed pumps are varied according to fuzzy rule base, in order to control the addition of caustic solution in metal hydroxide precipitation. However, in Malaysia, most of the small and medium scale industries are still using traditional instruments of on-off pumps (also known as two-position pumps) in controlling their processes. The management are reluctant to purchase new variable speed pumps due to the high cost constraint. The aim of this study was to develop a low-cost and reliable fuzzy logic pH controller, by making use of the traditional pumps. A set of fuzzy rules was developed based on two controller inputs, error (e) and change of error (Δe). Instead of pump speed (u), time-delay in switching on or off the pumps is used as the controller output in order to control the addition of caustic solution. The fuzzy logic controller successfully increased the pH of acidic wastewater to pH 9 and maintained this pH for all runs regardless the initial metal concentration of the wastewater. The results proved that the fuzzy concept is still applicable and yet, the present instruments can be used.