The potentials of an integrated ultrasonic membrane anaerobic system, iumas for pome treatment

With the increasing energy crisis and the drive to reduce CO2 emissions, universities and industries are challenged to find new technologies in order to reduce energy consumption, to meet legal requirements on emissions, and for cost reduction and increased quality. The direct discharge of Palm Oil...

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Main Authors: Hamid Nour, Abdurahman, Radhwa, Muhammad Farid
Format: Conference or Workshop Item
Language:English
Published: 2021
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/33747/1/The%20potentials%20of%20an%20integrated%20ultrasonic%20membrane%20anaerobic%20system%2C%20iumas.CITREX%202021..pdf
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author Hamid Nour, Abdurahman
Radhwa, Muhammad Farid
author_facet Hamid Nour, Abdurahman
Radhwa, Muhammad Farid
author_sort Hamid Nour, Abdurahman
collection UMP
description With the increasing energy crisis and the drive to reduce CO2 emissions, universities and industries are challenged to find new technologies in order to reduce energy consumption, to meet legal requirements on emissions, and for cost reduction and increased quality. The direct discharge of Palm Oil Mill Effluent, POME wastewater causes serious environmental pollution due to its high chemical oxygen demand (COD), Total suspended solids (TSS) and biochemical oxygen demand (BOD). Traditional ways for POME wastewater treatment have both economical and environmental disadvantages. In this study, ultrasonic assisted-membrane anaerobic system (UMAS) was used as an alternative, cost effective method for treating POME wastewater (to avoid membrane fouling).
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spelling UMPir337472022-08-18T08:43:19Z http://umpir.ump.edu.my/id/eprint/33747/ The potentials of an integrated ultrasonic membrane anaerobic system, iumas for pome treatment Hamid Nour, Abdurahman Radhwa, Muhammad Farid QD Chemistry RC Internal medicine TP Chemical technology With the increasing energy crisis and the drive to reduce CO2 emissions, universities and industries are challenged to find new technologies in order to reduce energy consumption, to meet legal requirements on emissions, and for cost reduction and increased quality. The direct discharge of Palm Oil Mill Effluent, POME wastewater causes serious environmental pollution due to its high chemical oxygen demand (COD), Total suspended solids (TSS) and biochemical oxygen demand (BOD). Traditional ways for POME wastewater treatment have both economical and environmental disadvantages. In this study, ultrasonic assisted-membrane anaerobic system (UMAS) was used as an alternative, cost effective method for treating POME wastewater (to avoid membrane fouling). 2021 Conference or Workshop Item PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/33747/1/The%20potentials%20of%20an%20integrated%20ultrasonic%20membrane%20anaerobic%20system%2C%20iumas.CITREX%202021..pdf Hamid Nour, Abdurahman and Radhwa, Muhammad Farid (2021) The potentials of an integrated ultrasonic membrane anaerobic system, iumas for pome treatment. In: Creation, Innovation, Technology & Research Exposition (CITREX) 2021 , 2021 , Virtually hosted by Universiti Malaysia Pahang. p. 1.. (Published)
spellingShingle QD Chemistry
RC Internal medicine
TP Chemical technology
Hamid Nour, Abdurahman
Radhwa, Muhammad Farid
The potentials of an integrated ultrasonic membrane anaerobic system, iumas for pome treatment
title The potentials of an integrated ultrasonic membrane anaerobic system, iumas for pome treatment
title_full The potentials of an integrated ultrasonic membrane anaerobic system, iumas for pome treatment
title_fullStr The potentials of an integrated ultrasonic membrane anaerobic system, iumas for pome treatment
title_full_unstemmed The potentials of an integrated ultrasonic membrane anaerobic system, iumas for pome treatment
title_short The potentials of an integrated ultrasonic membrane anaerobic system, iumas for pome treatment
title_sort potentials of an integrated ultrasonic membrane anaerobic system iumas for pome treatment
topic QD Chemistry
RC Internal medicine
TP Chemical technology
url http://umpir.ump.edu.my/id/eprint/33747/1/The%20potentials%20of%20an%20integrated%20ultrasonic%20membrane%20anaerobic%20system%2C%20iumas.CITREX%202021..pdf
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