HD Smith, RL Russell
This report provides a detailed laboratory preparation procedure for simulated waste aimed at leaching and filtration studies. The objective is to develop a robust methodology for analyzing the filtration characteristics of the waste while comparing them to those of actual filtration waste. To achieve this, a series of tests were performed based on specified test specifications and plans, focusing on the chemistry, physical properties, and leaching characteristics of the simulated waste. The methodology includes the preparation of various simulants, evaluation via bench scale cell unit filters, and property comparisons against actual wastes. The results demonstrate the efficacy of the simulated waste in mirroring the properties of actual filtration waste, thus validating its application in ongoing research and development efforts. This work is crucial for enhancing waste management processes and ensuring the safety and effectiveness of treatment operations in environmental remediation. It provides a systematic approach that can be replicated in subsequent studies, contributing valuable knowledge to the field of waste management and filtration technologies.
@article{36c9ed7c-97ee-4427-b569-3d9cc030aea4,
title={Simulated Waste for Leaching and Filtrat},
author={HD Smith and RL Russell},
year={2026},
language={en}
}TY - JOUR TI - Simulated Waste for Leaching and Filtrat AU - HD Smith AU - RL Russell PY - 2026 LA - en ER -
Jirang Cui, Hans Jørgen Roven
Rapid growth in electronic equipment consumption has generated large quantities of electronic waste containing hazardous substances and high-value met
Printed circuit boards (PCBs) from electronic gadgets at the end of their useful life period are currently being dumped in landfills or incinerated, c
The leachability tests for manufacturing scrap TV boards (STVB) have indicated the release of metals beyond the limit levels with potential problems f
A. Tuncuk, V. Stazi, A. Akcil, E.Y. Yazici, H. Deveci
Waste of electric–electronic equipment (WEEE) with an annual growth rate of about 3–5% is the fastest growing waste stream in municipal wastes. Notwit