HCBBS Forum (English)
Submit Chemical Projects / Find Solutions
Amplify Your Requirements on a Broader Chemical Platform *Engineering · Technology · Equipment · Solutions*
Submit Request

Sulfur Recovery Daily Question 2019.1.2

2019-01-02View Original

Thread Content

Why is a slope required when installing a sulfur condenser? Answer: The tube side of the sulfur condenser is filled with sulfur-containing process gas. As this gas passes through the sulfur condenser, it is cooled to produce liquid sulfur. Liquid sulfur has high viscosity and flows at a slow speed; if a slope is provided when the sulfur condenser is installed, it is possible to increase the flow rate of the liquid sulfur and reduce the pressure drop in the process gas. Additionally, the sulfur condenser has a slope, which prevents liquid sulfur from accumulating inside the equipment; moreover, when the oxygen content in the process gas is high, it does not cause the liquid sulfur to burn and damage the equipment.
Reply #22019-01-02
The tube side of the sulfur condenser is filled with sulfur-containing process gas; as this gas passes through the sulfur condenser, it is cooled to produce liquid sulfur. Liquid sulfur has high viscosity and flows at a slow speed. If an inclination is provided when the sulfur condenser is installed, it is possible to increase the flow rate of the liquid sulfur and reduce the pressure drop in the process gas. Additionally, the sulfur condenser has a slope, which prevents liquid sulfur from accumulating inside the equipment; moreover, when the oxygen content in the process gas is high, it does not cause the liquid sulfur to burn and damage the equipment.
Reply #32019-01-02
The tube side of the sulfur condenser is filled with sulfur-containing process gas; as this gas passes through the sulfur condenser, it is cooled to produce liquid sulfur. Liquid sulfur has high viscosity and flows at a slow speed. If an inclination is provided when the sulfur condenser is installed, it is possible to increase the flow rate of the liquid sulfur and reduce the pressure drop in the process gas. Additionally, the sulfur condenser has a slope, which prevents liquid sulfur from accumulating within the equipment; moreover, when the oxygen content in the process gas is high, it does not lead to the combustion of liquid sulfur and thus damage to the equipment
Reply #42019-01-03
The tube side of the sulfur condenser is filled with sulfur-containing process gas; as this gas passes through the sulfur condenser, it is cooled to produce liquid sulfur. Liquid sulfur has high viscosity and flows at a slow speed. If an inclination is provided when the sulfur condenser is installed, it is possible to increase the flow rate of the liquid sulfur and reduce the pressure drop in the process gas. Additionally, the sulfur condenser has a slope, which prevents liquid sulfur from accumulating inside the equipment; moreover, when the oxygen content in the process gas is high, it does not cause the liquid sulfur to burn and damage the equipment.
Reply #52019-01-03
Liquid sulfur has high viscosity and flows slowly; if a slope is provided when installing the sulfur condenser, it is possible to increase the flow rate of liquid sulfur and reduce the pressure drop in the process gas
Reply #62019-01-04
The tube side of the sulfur condenser is filled with sulfur-containing process gas; as this gas passes through the sulfur condenser, it is cooled to produce liquid sulfur. Liquid sulfur has high viscosity and flows at a slow speed. If an inclination is provided when the sulfur condenser is installed, it is possible to increase the flow rate of the liquid sulfur and reduce the pressure drop in the process gas. Additionally, the sulfur condenser has a slope, which prevents liquid sulfur from accumulating within the equipment; moreover, when the oxygen content in the process gas is high, it does not lead to the combustion of liquid sulfur and thus damage to the equipment
Reply #72019-01-04
Answer: The tube side of the sulfur condenser is filled with sulfur-containing process gas, which is cooled as it passes through the sulfur condenser to produce liquid sulfur. Liquid sulfur has high viscosity and flows at a slow speed; if a slope is provided when the sulfur condenser is installed, this can increase the flow rate of the liquid sulfur and reduce...
Reply #82019-01-05
Answer: The tube side of the sulfur condenser is filled with sulfur-containing process gas, which is cooled as it passes through the sulfur condenser to produce liquid sulfur. Liquid sulfur has high viscosity and flows at a slow speed; if an inclination is provided when the sulfur condenser is installed, this can increase the flow rate of the liquid sulfur
Reply #92020-04-02
The tube side of the sulfur condenser is filled with sulfur-containing process gas; as this gas passes through the sulfur condenser, it is cooled to produce liquid sulfur. Liquid sulfur has high viscosity and flows at a slow speed. If an inclination is provided when the sulfur condenser is installed, it is possible to increase the flow rate of the liquid sulfur and reduce the pressure drop in the process gas. Additionally, the sulfur condenser has a slope, which prevents liquid sulfur from accumulating inside the equipment; moreover, when the oxygen content in the process gas is high, it does not cause the liquid sulfur to burn and damage the equipment.

Submit a Project

**Looking for Chemical Technology, Equipment & Solutions?** No Registration Required Broader Platform Exposure | Global Chemical Service Provider Connections

Submit Request — Free Consultation

Disclaimer

This is an automated machine translation of the original thread. Some technical terms may have inaccuracies; the original text shall prevail. Click "View Original" at the top right to access the source page, which supports IP-based automatic real-time language translation. Please watch out for contact details and sales inducements to prevent fraud. All content and translations are for reference only, representing solely the poster's personal views. For enquiries, email service@hcbbs.com.