Study on the impact of the soil and shallow groundwater quality by a hazardous waste incinerator in Shanghai

Author:

Huang Jing,Huang Botao

Abstract

Abstract Hazardous wastes are often corrosive, toxic, reactive or infective, the feasible treatments for which include landfill, incineration, solidification, and chemical methods. In this research, an environmental investigation of a hazardous waste incinerator (operated by A Co. Ltd.) in Shanghai has been made into the soil and shallow groundwater quality inside and outside the factory, which uses incineration technology. The results are analysed and the conclusions reached are that the incineration technology in A Co. Ltd. has had no effect yet on the soil in and near the factory, and on the surrounding agricultural soil. However, the shallow groundwater below the production warehouse No.2 has been contaminated by Cd, Cu, and Ni which originate from the disposal process.

Publisher

IOP Publishing

Subject

General Engineering

Reference16 articles.

1. Disposal of bottom ash from the incineration of hazardous waste in two different mineral matrixes;Rozek;Environ Prog Sustain,2017

2. Mass and number size distributions of emitted particulates at five important operation units in a hazardous industrial waste incineration plant;Lin;J Occup Environ Hyg,2016

3. Development of an evaluation system for assessing the pollution control and risk management level in the operation of hazardous waste incinerators;Zhao;Environ Eng,2017

4. Life cycle environmental assessment of industrial hazardous waste incineration and landfilling in China;Hong;Int J Life Cycle Ass,2017

5. Monitoring internal exposure to metals and organic substances in workers at a hazardous waste incinerator after 3 years of operation;Carmen;Toxicol Lett,2003

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