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10.46243/jst.2022.v7.i01.pp1-10 registered

BATCH MODE BIOREMEDIATION STUDY ON REACTIVE BLUE-HER BY Cladosporium oxysporum

Resolves to https://www.jst.org.in/index.php/pub/article/view/338

Held by Longman Publishers (India) · prefix 10.46243 live · DOI address https://doi.org/10.46243/jst.2022.v7.i01.pp1-10

Registered 29 Sep 2026 via crossref · record version 2 · last change 29 Sep 2026, 11:59 PM · record sha256 e0ce423063ea2db3…

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What the DOI identifies

JournalArticle — an article in a journal · Digital · Visual · en

BATCH MODE BIOREMEDIATION STUDY ON REACTIVE BLUE-HER BY Cladosporium oxysporum (PrincipalTitle)

Published 2023-07-26

Part of Journal of Science & Technology · ISSN 2456-5660 · volume 7 · issue 1 · pages 1–10

Agents

  • Saritha E Saritha E (author)
  • Longman Publishers (publisher)

Identifiers DOI 10.46243/jst.2022.v7.i01.pp1-10

Abstract

The fungus, Cladosporium oxysporum Berk. and Curt. was screened for their ability to decolourize Reactive Blue HER in aqueous solutions and observed that had higher dye decolourization (99.81 %) achieved by live biomass, dead biomass. In batch mode (Agitated mode), the lower concentrations (10 mg/L) of Reactive Blue showed complete removal (100%) at an equilibrium time of 60 min for both live and autoclaved biomass. Dye adsorption isotherm, Langmuir model fitted well with 2 R values more than 0.9. RL (equilibrium parameter) values (indicating type of isotherm) of live and autoclaved mycelia at different adsorbate concentrations were always less than one and more than zero thereby indicating favourable adsorption of dyes onto the adsorbent. With the increase of dosage, no re-stabilization phenomenon or removal reduction was observed. Highest adsorption was observed in autoclaved biomass, 48.31 mg/g. Agitated mode was found to be more efficient and easy to operate for the removal of dyes.

Licence https://creativecommons.org/licenses/by/4.0

System metadata — ISO 26324:2025, Annex B · DOI Handbook 10.1

Each element by the standard's name (Annex B: reference elements, then administrative) and the Handbook's (in grey), read off the record above.

ElementValueIn the record
DOI Name
DOI name
10.46243/jst.2022.v7.i01.pp1-10doi
Referent Type
referentType
Creationreferent
Referent Sub-Type
referentSubType
JournalArticle — an article in a journaltype
Referent Name(s)
referentName(s)
BATCH MODE BIOREMEDIATION STUDY ON REACTIVE BLUE-HER BY Cladosporium oxysporum (PrincipalTitle, en)titles
Basic Metadata
basicMetadata
author: Saritha E Saritha E
publisher: Longman Publishers
published: 2023-07-26
part of: Journal of Science & Technology · ISSN 2456-5660 · vol. 7 · no. 1 · pp. 1–10
language: en
form: Digital · Visual · Language
agents, dates, container, language, structural_type, modes, characters
Referent Identifier(s)
alternateIdentifier(s)
none besides the DOIidentifiers, relations (IsSameAs)
Registration Authority
registrationAuthorityCode
Crossref — issued by Crossref (member 25296); held here as a copyrecord.source_agency (our code, ra_doi_name, for names issued here once appointed)
Created Date
issueDate
2024-02-16record.registered (when the DOI name was first registered)
relatedIdentifiersnone needed — the descriptive metadata is in this recordcontainer, relations (only where the descriptive metadata lives at another identifier)

complete Every System Metadata element is here, with the basic metadata a journal article needs.

The System Metadata Declaration (JSON) · the Kernel Metadata Declaration (XML) · what each sub-type needs

History — the ledger

Every change to this DOI, in order, as it was recorded. Entries are only ever added, never changed or removed.

#WhenWhatByChanges
129 Sep 2026, 10:00 PMregister
registered at Crossref; record read from api.crossref.org
Administrator (admin) 88 fields set · sha256 2c22c5740fdc…
229 Sep 2026, 11:59 PMupdate
record re-read from api.crossref.org
Administrator (admin)
abstract.value: The fungus, Cladosporium oxysporum Berk. and Curt. was screened for their ability to decolourize Reactive Blue HER in aqueous solutions and observed that had higher dye decolourization (99.81 %) achieved by live biomass, dead biomass. In batch mode (Agitated mode), the lower concentrations (10 mg/L) of Reactive Blue showed complete removal (100%) at an equilibrium time of 60 min for both live and autoclaved biomass. Dye adsorption isotherm, Langmuir model fitted well with 2 R    values more than 0.9. RL (equilibrium parameter) values (indicating type of isotherm) of live and autoclaved mycelia at different adsorbate concentrations were always less than one and more than zero thereby indicating favourable adsorption of dyes onto the adsorbent. With the increase of dosage, no re-stabilization phenomenon or removal reduction was observed. Highest adsorption was observed in autoclaved biomass, 48.31 mg/g. Agitated mode was found to be more efficient and easy to operate for the removal of dyes. → The fungus, Cladosporium oxysporum Berk. and Curt. was screened for their ability to decolourize Reactive Blue HER in aqueous solutions and observed that had higher dye decolourization (99.81 %) achieved by live biomass, dead biomass. In batch mode (Agitated mode), the lower concentrations (10 mg/L) of Reactive Blue showed complete removal (100%) at an equilibrium time of 60 min for both live and autoclaved biomass. Dye adsorption isotherm, Langmuir model fitted well with 2 R values more than 0.9. RL (equilibrium parameter) values (indicating type of isotherm) of live and autoclaved mycelia at different adsorbate concentrations were always less than one and more than zero thereby indicating favourable adsorption of dyes onto the adsorbent. With the increase of dosage, no re-stabilization phenomenon or removal reduction was observed. Highest adsorption was observed in autoclaved biomass, 48.31 mg/g. Agitated mode was found to be more efficient and easy to operate for the removal of dyes.
agents.0.name.family:  Saritha E → Saritha E
agents.0.name.given:  Saritha E → Saritha E
container.titles.0.value: Journal of Science & Technology → Journal of Science & Technology

Machine-readable: the history as JSON, with the full record after each change.

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