Full length articleEvaluating chromium coupled with carbon metabolism and environmental performance in the chromate industrial symbiosis network in China
-
Add time:08/29/2019 Source:sciencedirect.com
The pollution of toxic and carcinogenic chromium slags of the chromate industry has been a public concern and industrial symbiosis is proved to be feasible and efficient in recycling chromium slags. How to appraise and improve sustainability of chromate industrial symbiosis networks is still an open problem where functional and structural performance are key approaches to solve. This paper aims to explore chromium and carbon metabolic behavior of a chromate industrial symbiosis network with ecological network analysis at intra-firm level. Results show that industrial symbiosis reduces chromium slags emissions and improves resource utilization efficiency. Influenced by flow type and quantity, the chromium metabolism realizes mutualism but the carbon metabolism fails due to intense competition for carbon resource among the recycling processes (the aluminum hydroxide, sodium sulfide and alloy steel processes). The sodium dichromate process is the largest controller on the chromium and carbon metabolism and the sodium sulfide and alloy steel processes both rely on carbon resource support of the sodium dichromate process even to 100% which may explain the intense competition. Under disharmonious connection pattern of metabolic processes, structural defects both occur to the chromium and carbon metabolism. Even though, the chromium metabolism is closed to the stable condition while the carbon metabolism still requires more network efficiency. Overall, the combination of chromium and carbon metabolism provide more details in exploring metabolic behavior of the chromate industrial symbiosis network. The applied method may be helpful to refine management and optimization in developing industrial symbiosis.
We also recommend Trading Suppliers and Manufacturers of Sodium chromate (cas 12680-48-7). Pls Click Website Link as below: cas 12680-48-7 suppliers
Prev:Sodium chromate (cas 12680-48-7) demonstrates some insulin-mimetic properties in the fruit fly Drosophila melanogaster
Next:Technical noteRecovery of Cr from vanadium-containing chromate solution with copper salt precipitation after V separation) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Research paperRole of pH in green rust preparation and chromate removal from water08/31/2019
- Technical noteRecovery of Cr from vanadium-containing chromate solution with copper salt precipitation after V separation08/30/2019
- Sodium chromate (cas 12680-48-7) demonstrates some insulin-mimetic properties in the fruit fly Drosophila melanogaster08/28/2019
- Life cycle assessment of different variants of Sodium chromate (cas 12680-48-7) production in Poland08/27/2019
- Obtaining Sodium chromate (cas 12680-48-7) from ash produced by thermal treatment of leather wastes08/26/2019
- Crystallization behaviors of bayerite from Sodium chromate (cas 12680-48-7) alkali solutions08/25/2019
- Solubility and metastable zone width of aqueous sodium dichromate dihydrate solutions in the presence of Sodium chromate (cas 12680-48-7) additive08/24/2019
- Novel method to prepare Sodium chromate (cas 12680-48-7) from carbon ferrochrome08/23/2019
-
Health and Chemical more >
-
Related Products
- Sodium 2,4-dimethylbenzenesulfonate
- SODIUM γ-FLUORO-β-HYDROXYBUTYRATE
- Sodium ((3-methoxy-1-methyl-3-oxo-1-propenyl)amino)phenylacetate
- Sodium (+)-10-camphorsulfonate
- Sodium (2-carbamoylphenoxy)acetate
- Sodium (2-methyl-4-chlorophenoxy)acetate
- Sodium (6R,7R)-3-[(5-methyl-1,3,4-thiadiazol-2-yl)sulfanylmethyl]-8-oxo-7-[[2-(tetrazol-1-yl)acetyl]amino]-5-thia-1-azabicyclo[4.2.0]oct-2-ene-2-carboxylate pentahydrate
- Sodium (C10-16)alkylbenzenesulfonate
- Sodium (R,R)-5-(2-((2-(3-chlorophenyl)-2-hydroxyethyl)amino)propyl)-1,3-benzodioxole-2,2-
- Sodium (S)-lactate


