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Dive into the research topics where Robert Rowland is active.

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Featured researches published by Robert Rowland.


Chemical Speciation and Bioavailability | 2000

Size distribution of copper complexing ligands in tropical freshwaters

Simon C. Apte; Robert Rowland; Harish K. Patney

Abstract The size distribution of soluble copper complexing ligands (<0.45 μm) present in water samples collected from a tropical river system was characterised using a combination of equilibrium dialysis and differential pulse anodic stripping voltammetry. The proportion of copper complexing capacity associated with small molecular weight (<1,000 Dalton) ligands increased progressively from 40% in the upper catchment to 79% at a lowland floodplain/wetland location. This increase indicated the dominant role of the floodplain as a source of low molecular weight ligands to the river system. Asignificant proportion of copper complexation was also associated with the >14,000 Dalton fraction. As the majority of soluble iron was also associated with this fraction, it is likely that this complexing pool contains organic ligands adsorbed to the surface of inorganic colloids as well as large molecular weight ligands. Destruction of dissolved organic matter by sample pre-treatment with UV light resulted in a complete loss in copper complexation capacity detectable by anodic stripping voltammetry. This confirmed that the observed complexation of copper was associated with organic ligands and not inorganic components of the sample. A statistically significant linear correlation was observed between copper complexation capacity and fluorescence (340 nm excitation/440 nm emission). This indicated that the ligands were most likely to be associated with humic and fulvic compounds having conjugated molecular structures. Overall, the study emphasises the role of low molecular weight organic ligands in controlling copper speciation in tropical freshwater systems.


Environmental Science & Technology | 2009

Carbon dioxide postcombustion capture: a novel screening study of the carbon dioxide absorption performance of 76 amines.

Graeme Puxty; Robert Rowland; Andrew Allport; Qi Yang; Mark Bown; Robert Burns; Marcel Maeder; Moetaz Attalla


Chemical Engineering Science | 2010

Comparison of the rate of CO2 absorption into aqueous ammonia and monoethanolamine

Graeme Puxty; Robert Rowland; Moetaz Attalla


Energy Procedia | 2009

CO2 capture by aqueous amines and aqueous ammonia–A Comparison

N. Dave; Thong Do; Graeme Puxty; Robert Rowland; Paul Feron; Moetaz Attalla


Environmental Science & Technology | 2011

Modeling CO2 mass transfer in amine mixtures: PZ-AMP and PZ-MDEA.

Graeme Puxty; Robert Rowland


Energy Procedia | 2011

Amine mixtures and the effect of additives on the CO2 capture rate

Robert Rowland; Qi Yang; Phil Jackson; Moetaz Attalla


Archive | 2009

Improved alkanolamines for co2 removal from gas streams

Moetaz Attalla; Graeme Puxty; Andrew Allport; Mark Bown; Qi Yang; Robert Rowland


Energy Procedia | 2011

Describing CO2 mass transfer in amine/ammonia mixtures — No shuttle mechanism required

Graeme Puxty; Robert Rowland; Moetaz Attalla


Archive | 2009

Alkanolamines for CO2 removal from gas streams

Moetaz Attalla; Graeme Puxty; Andrew Allport; Mark Bown; Qi Yang; Robert Rowland


Archive | 2009

Nouvelles alkanolamines pour l'élimination du dioxyde de carbone des flux gazeux

Moetaz Attalla; Graeme Puxty; Andrew Allport; Mark Bown; Qi Yang; Robert Rowland

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Graeme Puxty

Commonwealth Scientific and Industrial Research Organisation

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Moetaz Attalla

Commonwealth Scientific and Industrial Research Organisation

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Qi Yang

Commonwealth Scientific and Industrial Research Organisation

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Andrew Allport

Commonwealth Scientific and Industrial Research Organisation

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Mark Bown

Commonwealth Scientific and Industrial Research Organisation

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N. Dave

Commonwealth Scientific and Industrial Research Organisation

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Paul Feron

Commonwealth Scientific and Industrial Research Organisation

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Phil Jackson

Commonwealth Scientific and Industrial Research Organisation

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Simon C. Apte

Commonwealth Scientific and Industrial Research Organisation

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