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Colloids03:22

Colloids

Children at play often make suspensions such as mixtures of mud and water, flour and water, or a suspension of solid pigments in water known as tempera paint. These suspensions are heterogeneous mixtures composed of relatively large particles that are visible to the naked eye or can be seen with a magnifying glass. They are cloudy, and the suspended particles settle out after mixing. On the other hand, a solution is a homogeneous mixture in which no settling occurs and in which the dissolved...
Colloidal precipitates01:09

Colloidal precipitates

The high insolubility of some precipitates can result in an unfavorable relative supersaturation. This can lead to colloidal particles with a large surface-to-mass ratio, where adsorption is promoted. For instance, in the precipitation of silver chloride, silver ions are adsorbed on the surface of the colloidal particles, forming a primary layer. This layer attracts ions of opposite charge (such as nitrate ions), forming a diffuse secondary layer of adsorbed ions. This electric double layer...
Precipitation and Co-precipitation01:17

Precipitation and Co-precipitation

Precipitation and coprecipitation methods can be used to separate a mixture of ions in a solution. In qualitative inorganic analysis, ions that form sparingly soluble precipitates with the same reagent are separated based on the differences in solubility products. For example, consider the separation of Cu(II) and Fe(II) ions by precipitation as insoluble sulfides. First, copper(II) sulfide is precipitated by the addition of acidic H2S, where the dissociation of H2S is suppressed. Adding H2S...
Coagulation01:06

Coagulation

Colloidal solids are solid particles suspended in solution. They are usually negatively charged, attracting a compact primary layer of positively charged ions, which attract more counterions to form an electrical double layer. Electrostatic repulsion between the charged double layers prevents the particles from colliding, stabilizing the colloids. These solids are often undesirable because they can contain toxins that are difficult to remove. Coagulation is a technique that helps aggregate and...
Ion Exchange01:17

Ion Exchange

Ion exchange chromatography separates charged molecules from a solution by reversibly exchanging them with mobile, or 'active', ions associated with the oppositely charged stationary phase. This method can be used to separate ions, soften and deionize water, and purify solutions. The polymers comprising the ion-exchange column are high-molecular-weight and chemically stable polymers, crosslinked to be porous and essentially insoluble. They are also functionalized with either acidic or basic...

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Related Experiment Video

Updated: Jun 27, 2026

Procedure to Evaluate the Efficiency of Flocculants for the Removal of Dispersed Particles from Plant Extracts
10:37

Procedure to Evaluate the Efficiency of Flocculants for the Removal of Dispersed Particles from Plant Extracts

Published on: April 9, 2016

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Starch-based flocculants prepared by a reactive deep eutectic solvent based on solid-phase method.

Miao Sha1, Shufen Zhang1, Benzhi Ju1

  • 1State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian 116024, China.

International Journal of Biological Macromolecules
|March 19, 2025
PubMed
Summary

A novel starch-based flocculant (St-GTA) was developed using a deep eutectic solvent (DES) and mechanical force. This eco-friendly flocculant effectively removes over 98% of contaminants from wastewater, offering a sustainable alternative.

Keywords:
Deep eutectic solventFlocculation mechanismFlocculation performanceMechanical force chemistryStarch-based flocculants

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Area of Science:

  • Materials Science
  • Environmental Engineering
  • Green Chemistry

Background:

  • Flocculation is a key pretreatment method in water treatment, often relying on economical yet potentially less sustainable chemicals.
  • Deep eutectic solvents (DES) offer unique properties for material modification due to their hydrogen bond breaking capabilities.
  • Starch, a biodegradable polymer, presents an opportunity for developing environmentally friendly flocculants.

Purpose of the Study:

  • To develop a novel starch-based flocculant (St-GTA) using a reactive deep eutectic solvent (DES) and mechanical force.
  • To characterize the prepared St-GTA and investigate its flocculation performance and mechanism.
  • To evaluate the efficacy of St-GTA in treating simulated and real wastewater containing colloidal contaminants.

Main Methods:

  • Preparation of St-GTA via dual action of DES (GTA and urea) and mechanical force on starch granules.
  • Characterization of St-GTA using Gel Permeation Chromatography, FTIR, and 1H NMR spectroscopy.
  • Assessment of flocculation performance via zeta potential and UV-Vis absorption tests on kaolin wastewater, other colloidal contaminants, and real wastewater.

Main Results:

  • The prepared St-GTA demonstrated efficient flocculation, achieving a 98.5% removal rate for simulated kaolin wastewater at a low dosage of 0.4 mg/L.
  • St-GTA exhibited high removal rates (≥98%) for other colloidal pollutants and real wastewater samples.
  • Characterization confirmed the successful modification of starch, and mechanism studies elucidated its flocculation behavior.

Conclusions:

  • The developed starch-based flocculant (St-GTA) is highly effective for wastewater treatment.
  • St-GTA shows excellent flocculation properties, comparable to or exceeding traditional flocculants.
  • This study highlights the potential of St-GTA as a sustainable and efficient alternative in water treatment applications.