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1.
Data Brief ; 29: 105312, 2020 Apr.
Article in English | MEDLINE | ID: mdl-32140521

ABSTRACT

The spectra presented correspond with the research article entitled "Kinetics of Formic Acid Decomposition in Subcritical and Supercritical Water - A Raman Spectroscopic Study" [1]. Data set contains in situ Raman spectra of the quenched effluent stream, which includes varied concentrations of formic acid, water, CO, CO2, and H2 as reaction products. Each spectrum is collected downstream of the subcritical or supercritical water gasification of formic acid, which occurs at a specified temperature, residence time, a constant pressure of 25 MPa, and a constant initial feedstock concentration of 3.6 wt% formic acid. Additionally, calibration spectra of formic acid in water, and spectra of pure carbon dioxide and high concentration formic acid are provided for model development. Finally, a MATLAB code used for baseline subtraction of raw data files is included with the dataset. The full dataset is hosted in Mendeley Data, https://doi.org/10.17632/hjn8xwskng.1.

2.
Heliyon ; 5(2): e01269, 2019 Feb.
Article in English | MEDLINE | ID: mdl-30886924

ABSTRACT

Optimizing an industrial-scale supercritical water gasification process requires detailed knowledge of chemical reaction pathways, rates, and product yields. Laboratory-scale reactors are employed to develop this knowledge base. The rationale behind designs and component selection of continuous flow, laboratory-scale supercritical water gasification reactors is analyzed. Some design challenges have standard solutions, such as pressurization and preheating, but issues with solid precipitation and feedstock pretreatment still present open questions. Strategies for reactant mixing must be evaluated on a system-by-system basis, depending on feedstock and experimental goals, as mixing can affect product yields, char formation, and reaction pathways. In-situ Raman spectroscopic monitoring of reaction chemistry promises to further fundamental knowledge of gasification and decrease experimentation time. High-temperature, high-pressure spectroscopy in supercritical water conditions is performed, however, long-term operation flow cell operation is challenging. Comparison of Raman spectra for decomposition of formic acid in the supercritical region and cold section of the reactor demonstrates the difficulty in performing quantitative spectroscopy in the hot zone. Future designs and optimization of continuous supercritical water gasification reactors should consider well-established solutions for pressurization, heating, and process monitoring, and effective strategies for mixing and solids handling for long-term reactor operation and data collection.

3.
Orthop Clin North Am ; 35(1): 73-84, 2004 Jan.
Article in English | MEDLINE | ID: mdl-15062720

ABSTRACT

Although one cannot always determine when a patient's persistent pain is neuropathic, the issues are becoming clearer. Patients with spinal pain need to be examined carefully and the persistence of pain should not necessarily be considered to indicate a continuing search for a nociceptive focus. Similarly, continuing pain following successful surgery may be caused by persistent spinal or central neurologic changes. New methods for characterizing the site of neural changes will develop--functional MRI and PET scanning are now characterizing brain activity and will possibly yield results soon that will be helpful in the clinic. Further work needs to be done to identify which clinical features lead to better responses to agents for the treatment of neuropathic pain. New, more specific agents with actions focused on the specific parts of neural transmission are being developed. These include agents (such as growth factors) that will cure, not just suppress, the pathologic pain generators and pathways in patients with persistent pain.


Subject(s)
Neuralgia/physiopathology , Spine/physiopathology , Humans , Narcotics/therapeutic use , Neuralgia/diagnosis , Neuralgia/drug therapy , Neuronal Plasticity , Pain Measurement
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