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Wastewater engineering treatment: disposal and reuse

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The article was published on 1991-01-01 and is currently open access. It has received 3805 citations till now. The article focuses on the topics: Wastewater engineering & Reuse.

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Journal ArticleDOI

Ammonium Removal from Aqueous Solutions by Clinoptilolite: Determination of Isotherm and Thermodynamic Parameters and Comparison of Kinetics by the Double Exponential Model and Conventional Kinetic Models

TL;DR: The adsorption energy from the D-R isotherm was found to be approximately 7 kJ/mol, thereby indicating that ammonium is adsorbed on clinoptilolite by physisorption.
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Sewage sludge applied to agricultural soil: Ecotoxicological effects on representative soil organisms.

TL;DR: Plants and earthworm metal body burden offer much more information than metal concentrations and help to understand the potential for metal accumulation and large differences for BAF(earthworm-soil), from control or sewage-amended soil, for Cd and Hg were found.
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Hybrid reactor for priority pollutant nitrobenzene removal

TL;DR: It can be concluded that the hybrid reactor system can withstand shock load up to two times of usual nitrobenzene concentration and the optimum substrate:co-substrate ratio was found to be 1:33.
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Greywater recycling: treatment options and applications

TL;DR: In this paper, a review of existing technologies and applications by collating a disparate information base and comparing/contrasting the strengths and weaknesses of different approaches is presented, and the best overall performances were observed within schemes that combine different types of methods to ensure effective treatment of all the fractions.
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Nitrogen transformation in horizontal subsurface flow constructed wetlands I: Model development

TL;DR: In this article, a mathematical model for predicting nitrogen transformation in horizontal subsurface flow constructed wetlands was developed, which took into account activities of biomass suspended in the water body and biofilm on aggregates and plant roots.