coagulation removal of melanoidins from biologically

Coagulation removal of melanoidins from biologically …

Coagulation–flocculation is an essential unit process in removing colloidal particles and natural organic matters (NOM) in water [10] and wastewater treatment [11]. Since melanoidins are chemically similar to NOM, this process is possibly applicable to remove melanoidins.,Coagulation removal of melanoidins from biologically … ,Coagulation removal of melanoidins from biologically treated molasses wastewater using ferric chloride ZhenLiangab YanxinWangb YuZhoub HuiLiub https://doi.org/10.1016/j.cej.2009.03.036 Get rights and content Abstract The pigments (melanoidins) in molasses wastewater are refractory to conventional biological treatment.,Coagulation removal of melanoidins from biologically … ,The pigments (melanoidins) in molasses wastewater are refractory to conventional biological treatment. Ferric chloride was used as coagulant to remove color and chemical oxygen demand (COD) from molasses effluent.

Coagulation Removal of Melanoidins from Biologically …

Ferric chloride was used as coagulant to remove color and chemical oxygen demand (COD) from molasses effluent. Using jar test procedure, main operating conditions such as pH and coagulant dosage…,论文库—-中国科学院水生生物研究所 ,Coagulation removal of melanoidins from biologically treated molasses wastewater using ferric chloride 作者: Zhen LIANG, Yanxin WANG, Yu ZHOU, Hui LIU 通讯作者: Yanxin WANG 摘要: The pigments (melanoidins) in molasses wastewater are refractory to …,Melanoidins removal from simulated and real wastewaters by … ,In this study, removal of melanoidin from simulated and real wastewaters (biologically treated and untreated) was investigated by coagulation/flocculation. The studied operating variables, based on the maximum removal of color expressed in ADMI units, were coagulant concentration, pH, mixing time and sludge re-use.

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DeepDyve is the largest online rental service for scholarly research with thousands of academic publications available at your fingertips.,中心教师近五年发表的部分三大检索论文一览表-地下水与 … ,Coagulation removal of melanoidins from biologically treated molasses wastewater using ferric chloride Chemical Engineering Journal 2010 …,刘慧 中文主页 论文成果 中国地质大学(武汉)教师个人 … ,Liang Z, Wang YX, Zhou Y, Liu H, Coagulation removal of melanoidins from biologically treated molasses wastewater using ferric chloride, Chemical Engineering Journal, 2009, 152 (1):88-94. SCI/EI…

[PDF] Coagulation Removal Of Melanoidins From Biologically …

Download and reference “Coagulation Removal Of Melanoidins From Biologically Treated Molasses Wastewater Using Ferric Chloride” by on Citationsy Online citations, reference lists, and bibliographies.,Unlimited Access to Peer-Reviewed Journals – DeepDyve ,DeepDyve is the largest online rental service for scholarly research with thousands of academic publications available at your fingertips.,Coagulation removal of melanoidins from biologically treated … ,Article “Coagulation removal of melanoidins from biologically treated molasses wastewater using ferric chloride” Detailed information of the J-GLOBAL is a service based on the concept of Linking, Expanding, and Sparking, linking science and technology information …

Melanoidins removal from simulated and real wastewaters by …

The results show that coagulation experiments could achieve color removal 90% and higher, at pH = 5, for all wastewaters but with different ferric ion dose. Real effluents could be discolored by 100 mM [Fe 3+ ], while simulated by 300 mM [Fe 3+ ].,刘慧 中文主页 中国地质大学(武汉)教师个人主页系统 ,Liang Z, Wang YX, Zhou Y, Liu H, Coagulation removal of melanoidins from biologically treated molasses wastewater using ferric chloride, Chemical Engineering Journal, 2009, 152(1):88-94. SCI/EI IF2008=2.813,Stoichiometric relationship in the coagulation of … ,Coagulation-flocculation using Al2(SO4)3, FeCl3, and aluminum polychorosulfate showed low efficiency for the removal of avian influenza virus subtype H5N1 and the swine-origin influenza A virus …

(PDF) Estimation of Melanoidin concentration in palm oil …

Percent COD removal was 48.5% for the acidic reactor and 63.6% for the neutral pH reactor when biologically pretreated molasses wastewater was fed to the reactors.,Distillery Effluent: Pollution Profile, Eco-friendly … ,Coagulation removal of melanoidins from biologically treated molasses wastewater using ferric chloride. Chemical Engineering Journal, 152 (1), 88–94. Google Scholar,Treatment of a Distillery Wastewater in a Bipolar-Mode … ,This work investigates the performance of a bipolar mode electro coagulation system with multiple electrodes. The objective is to remove recalcitrant total organic carbon (TOC) and total phosphorus (TP) from distillery wastewater.

Coagulation removal of melanoidins from biologically …

The tendency of decolorization curves is consistent with that of COD removal and the optimum doses for decolorization rates coincide with the OCDs in the pH range tested (Fig. 2(b)).Almost complete color removal (96%) was achieved at OCD for raw effluent, implying that melanoidins can be successfully reduced by coagulation.,Coagulation removal of melanoidins from biologically … ,Ferric chloride was used as coagulant to remove color and chemical oxygen demand (COD) from molasses effluent. Using jar test procedure, main operating conditions such as pH and coagulant dosage were investigated.,Coagulation removal of melanoidins from biologically … ,The pigments (melanoidins) in molasses wastewater are refractory to conventional biological treatment. Ferric chloride was used as coagulant to remove color and chemical oxygen demand (COD) from molasses effluent.

Coagulation Removal of Melanoidins from Biologically …

Request PDF | Coagulation Removal of Melanoidins from Biologically Treated Molasses Wastewater Using Ferric Chloride | The pigments (melanoidins) in molasses wastewater are refractory to …,Coagulation removal of melanoidins from biologically treated … ,The pigments (melanoidins) in molasses wastewater are refractory to conventional biological treatment. Ferric chloride was used as coagulant to remove color and chemical oxygen demand (COD) from molasses effluent.,论文库—-中国科学院水生生物研究所 ,Coagulation removal of melanoidins from biologically treated molasses wastewater using ferric chloride 作者: Zhen LIANG, Yanxin WANG, Yu ZHOU, Hui LIU 通讯作者: Yanxin WANG 摘要: The pigments (melanoidins) in molasses wastewater are refractory to …

[PDF] Coagulation Removal Of Melanoidins From Biologically …

Download and reference “Coagulation Removal Of Melanoidins From Biologically Treated Molasses Wastewater Using Ferric Chloride” by on Citationsy Online citations, reference lists, and bibliographies.,Coagulation removal of melanoidins from biologically treated … ,Article “Coagulation removal of melanoidins from biologically treated molasses wastewater using ferric chloride” Detailed information of the J-GLOBAL is a service based on the concept of Linking, Expanding, and Sparking, linking science and technology information …,Melanoidins removal from simulated and real wastewaters by … ,Coagulation removal of melanoidins from biologically treated molasses wastewater using ferric chloride Chem. Eng.

[PDF] Coagulation Removal Of Melanoidins From Biologically …

Download and reference “Coagulation Removal Of Melanoidins From Biologically Treated Molasses Wastewater Using Ferric Chloride” by on Citationsy Online citations, reference lists, and bibliographies.,Coagulation removal of melanoidins from biologically treated … ,The pigments (melanoidins) in molasses wastewater are refractory to conventional biological treatment. Ferric chloride was used as coagulant to remove color and chemical oxygen demand (COD) from molasses effluent.,POSSIBLE WAYS FOR POST-TREATMENT OF BIOLOGICALLY TREATED … ,Melanoidins can be removed by: 1) Biological treatment with certain bacteria and fungi have also been applied, leading to lower colour removal efficiencies (Miyata et al. 2000).

Chemical Engineering Journal

Submerged nanofiltration of biologically treated molasses fermentation wastewater for the removal of melanoidins Meihong Liua,b, Huiwen Zhua,b,c, Bingyan Donga,b,c, Yinping Zhenga,b,c, Sanchuan Yua,b,c,⇑, Congjie Gaod a Key Laboratory of Advanced Textile Materials and Manufacturing Technology of Education Ministry, Zhejiang Sci-Tech University, Hangzhou 310018, People’s Republic of China,Biologically Enhanced Coagulation–Ultrafiltration Process … ,Coagulation combined with ultrafiltration (UF) is an effective drinking water treatment process. However, inefficient removal of natural organic matter (NOM) and membrane fouling problems, especially those initiated by the adhesion of biopolymers, greatly restrict the practical application of the UF process.,Stoichiometric relationship in the coagulation of … ,Jar tests were conducted to evaluate coagulation efficiency by measuring zeta potential, removal rates of color and chemical oxygen demand (COD). Experimental results indicate that the dissolved organic fraction accounts for predominant portion of the organic compounds present in biologically treated molasses effluent.

Variables affecting melanoidins removal from molasses …

HPSEC was utilized to evaluate the removal of molecular weight fractions of melanoidins-dominated organic compounds. Experimental results indicate that ferric chloride was the most effective among the conventional coagulants, achieving 89% COD and 98% color eliminations; while aluminum sulfate was the least effective, giving COD and color reductions of 66% and 86%, respectively.,Dokuz Eylül Üniversitesi Mühendislik Fakültesi Fen ve … ,Bibtex @ { deumffmd491704, journal = {Dokuz Eylül Üniversitesi Mühendislik Fakültesi Fen ve Mühendislik Dergisi}, issn = {1302-9304}, eissn = {2547-958X}, address = {DOKUZ EYLÜL ÜNİVERSİTESİ MÜHENDİSLİK FAKÜLTESİ TINAZTEPE YERLEŞKESİ 35390 BUCA/İZMİR}, publisher = {Dokuz Eylul University}, year = {2017}, volume = {19}, pages = {389 – 398}, doi = {}, title = {EVAPORASYON …,Investigating the synergy of integrated anaerobic … ,Anaerobic digestion (AD) can remove the high organic load of molasses wastewater (MWW), but is ineffective in removing the characteristic dark brown colour caused by biorecalcitrant melanoidin. Ultraviolet (UV) photodegradation, can mineralise the biorecalcitrants leading to complete colour removal, but with a high-energy input and low organic load removal.