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รศ.ดร.จรงค์พันธ์ มุสิกะวงศ์

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56 public publications

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Three dimensional fluorescent spectroscopy analysis for the evaluation of organic matter removal from industrial estate wastewater by stabilization ponds

Charongpun Musikavong, Suraphong Wattanachira, Fumiyuki Nakajima, Hiroaki Furumai

Water Science & Technology · 2007

The fluorescent excitation emission matrix (FEEM) was utilized to evaluate the removal of organic matter by stabilization ponds, which consist of aeration, facultative, and oxidation ponds of a central wastewater treatment plant of an industrial estate in northern Thailand. The result shows that six fluorescent peaks of influent wastewater and effluent water after aeration, facultative, and oxidation ponds were detected from the FEEMs at 230 nmEx/295 nmEm (A), 275 nmEx/300 nmEm (B), 240 nmEx/355 nmEm (C), 280 nmEx/355 nmEm (D), 275 nmEx/410 nmEm (E) and 330 nmEx/410 nmEm (F). The putative origins of peaks A and B, C and D, and E and F were tyrosine-like, tryptophan-like, and humic and fulvic acid-like substances, respectively. The aeration pond was the main course of action used to reduce the tyrosine-like substances at peaks A and B by 88 and 52%, respectively, and tryptophan-like substances at peaks C and D by 43 and 39%, respectively. There was only a 20 per cent decrease of humic and fulvic acid-like substances at peak E and an 18 per cent decrease at peak F through the use of aeration ponds. Total per cent reductions of total fluorescent organic matter after aeration ponds; facultative ponds; and oxidation ponds were 46, 51 and 54%, respectively. These values were notably similar to the total percent reduction of DOC by the same respective processes at 54, 53, and 55%.

Reduction of dissolved organic matter in terms of DOC, UV-254, SUVA and THMFP in industrial estate wastewater treated by stabilization ponds

Charongpun Musikavong, Suraphong Wattanachira

Environmental Monitoring and Assessment · 2007

Characterization of fractionated dissolved organic matter in industrial estate wastewater using spectrofluorometry and pyrolysis GC/MS analysis

Charongpun Musikavong, Suraphong Wattanachira, Hiroaki Furumai

2006

The aims of this research were to investigate the dissolved organic carbon (DOC) mass distribution, trihalomethane formation potential (THMFP) and specific THMFP of dissolved organic matter (DOM) fractions in industrial estate wastewater and effluent water from the aeration, facultative, oxidation and detention ponds of the central wastewater treatment plant of the Northern-Region Industrial Estate, Lamphun province, Thailand. Pyrolysis gas chromatography mass spectrometer and three-dimensional fluorescent spectroscopy (fluorescent excitation-emission matrix, FEEM) analysis were utilized on the DOM fractions of all water samples to identify the fluorescent organic matter and chemical classes, respectively. Industrial estate wastewater and treated effluent from each pond were collected from June 2004 to July 2005. The resin fractionation technique, used with three different types of resins (i.e. DAX-8, AG-MP-50 and WA-10), was employed to characterize the DOC in all water samples into six fractions, namely hydrophobic neutral (HPON), hydrophobic base (HPOB), hydrophobic acid (HPOA), hydrophilic base (HPIB), hydrophilic acid (HPIA), and hydrophilic neutral (HPIN). The results showed that HPOA and HPIN were the major DOM fractions in the industrial estate wastewater and aeration pond effluent; summations of HPOA and HPIN were more than 50%. However, HPOA and HPIA were the dominant DOM fractions in the effluent from the facultative, oxidation, and detention ponds; summations of HPOA and HPIA were more than 50%. THMFPHPOA and THMFPHPIA were found in the largest quantities when compared with the THMFP of others species. In addition, the specific THMFPs of HPOA and HPIA were considerably high. The aliphatic hydrocarbon class (approx. 70%) was dominant in the industrial estate wastewater and in the treated effluent from each pond (25-58%). Aromatic hydrocarbon (20-55%) and ester (5-21%) were the major chemical classes of HPON; whereas carboxylic acid (27-75%) was the major chemical class of HPOB. Aliphatic (17-42%) and aromatic hydrocarbons (26-41%) were classified as the major chemical classes of HPOA. In the case of the hydrophilic organic (HPI) fraction, aliphatic hydrocarbon (45-71%) was identified as the major chemical class in HPIB, HPIA, and HPIN. Trihalomethanes could be easily associated with hydrophobic organic (HPO) fractions that are mainly composed of the aromatic hydrocarbon, carboxylic acids, phenol and ester classes, along with the aliphatic hydrocarbon class (C5≤ aliphatic hydrocarbon fragments ≤ C11). The aliphatic hydrocarbon (C18 ≤ aliphatic hydrocarbon fragments ≤ C24) and organic nitrogen classes (mainly composed of aliphatic organic nitrogen fragments), when combined with chlorine could be inactive and fail to form THMs. With regard to the FEEM results, tyrosine-like and tryptophan-like substances were classified as major fluorescent organic matter in HPON. For HPOA, tyrosine-like and humic and fulvic acids-like substances were the major fluorescent organic matter. In the HPI fractions, tyrosine-like and humic and fulvic acids-like substances were the dominant fluorescent organic matter of HPIB, HPIA, and HPIN. With regard to DOM reductions, the aeration and facultative ponds were the main processes that reduced HPON, HPIN, and HPIB. Only the aeration ponds reduced HPOA and HPIA, however, only moderately. In total, the aeration + facultative + oxidation ponds] reduced HPON, HPIN, HPIB, HPOA, and HPIA by 73%, 46%, 60%, 18%, and 11%, respectively.

Reduction of organic matter and trihalomethane formation potential in reclaimed water from treated industrial estate wastewater by coagulation

Charongpun Musikavong, Suraphong Wattanachira, Taha F. Marhaba, P PAVASANT

Journal of Hazardous Materials · 2005

Reduction of organic matter and trihalomethane formation potential in reclaimed water from treated industrial estate wastewater by coagulation

Charongpun Musikavong, Suraphong Wattanachira, Taha F. Marhaba, P PAVASANT

Journal of Hazardous Materials · 2005

Reduction of trihalomethanes formation potential in reclaimed water from treated industrial estate wastewater

Charongpun Musikavong, Suraphong Wattanachira

2002

This research was performed by using raw water from treated industrial estate wastewater of the Northern Region Industrial estate, Thailand. Coagulation in jar-test experiments were carried out under the variations of alum and ferric chloride dosages rangedfrom 10 to 80 mg/L at the conditions of uncontrolled and controlled pH between 5 and 6.5 Trihalomethane formation potential (THMFP) and other natural organic matter (NOM) surrogates were determined so as to study its correlation and its reduction. The obtained results appeared that turbidity could be effectively removed to the level of as low as about 3 NTU by coagulation at the alum and ferric chloride dosages of approximately 10 mg/L without controlled pH. TOC and THMFP showed the best correlation comparing to those of between other surrogates and THMFP. The correlation between TOC and THMFP were established with a Pearson Correlation factor of 0.91 (R2=0.866). The equation could be used to express such correlation was THMFP = 238.552 + 33.886 (TOC). Regarding TOC reduction by alum and ferric chloride coagulation, it was found that at controlled pH between 5.5 and 6.5 TOC were gradually reduced from the average value of about 6.12 mg/L to the level of about 4.0 mg/L by alum and ferric chloride dosages of approximately 40 mg/L. Chloroform of approximately 65 and 60 percent of total THMFP were found as the predominant THMFP species in treated industrial estate wastewater and in reclaimed water, respectively in comparison with dichlorobromoform, dibromochloroform and bromoform species. With reference to percent removal of total THMFP by coagulation, the percent removal of 25.53 and 27.71 by using alum and ferric chloride dosages of about 80 mg/L at pH 5.5 and 5 were obtained, respectively.

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