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1.
Nanomaterials (Basel) ; 13(4)2023 Feb 17.
Article in English | MEDLINE | ID: mdl-36839133

ABSTRACT

The development of sustainable, safe, low-cost, high energy and density power-density energy storage devices is most needed to electrify our modern needs to reach a carbon-neutral society by ~2050. Batteries are the backbones of future sustainable energy sources for both stationary off-grid and mobile plug-in electric vehicle applications. Biomass-derived carbon materials are extensively researched as efficient and sustainable electrode/anode candidates for lithium/sodium-ion chemistries due to their well-developed tailored textures (closed pores and defects) and large microcrystalline interlayer spacing and therefore opens-up their potential applications in sustainable potassium and aluminum batteries. The main purpose of this perspective is to brief the use of biomass residues for the preparation of carbon electrodes for potassium and aluminum batteries annexed to the biomass-derived carbon physicochemical structures and their aligned electrochemical properties. In addition, we presented an outlook as well as some challenges faced in this promising area of research. We believe that this review enlightens the readers with useful insights and a reasonable understanding of issues and challenges faced in the preparation, physicochemical properties and application of biomass-derived carbon materials as anodes and cathode candidates for potassium and aluminum batteries, respectively. In addition, this review can further help material scientists to seek out novel electrode materials from different types of biomasses, which opens up new avenues in the fabrication/development of next-generation sustainable and high-energy density batteries.

2.
ACS Omega ; 7(46): 42570-42581, 2022 Nov 22.
Article in English | MEDLINE | ID: mdl-36440116

ABSTRACT

The present work elucidates facile one-pot synthesis from biomass forestry waste (Norway spruce bark) and its chemical activation yielding high specific surface area (S BET) biochars as efficient lithium- and sodium-ion storage anodes. The chemically activated biochar using ZnCl2 (Biochar-1) produced a highly mesoporous carbon containing 96.1% mesopores in its structure as compared to only 56.1% mesoporosity from KOH-activated biochars (Biochar-2). The latter exhibited a lower degree of graphitization with disordered and defective carbon structures, while the former presented more formation of ordered graphite sheets in its structure as analyzed from Raman spectra. In addition, both biochars presented a high degree of functionalities on their surfaces but Biochar-1 presented a pyridinic-nitrogen group, which helps improve its electrochemical response. When tested electrochemically, Biochar-1 showed an excellent rate capability and the longest capacity retentions of 370 mA h g-1 at 100 mA g-1 (100 cycles), 332.4 mA h g-1 at 500 mA g-1 (1000 cycles), and 319 mA h g-1 at 1000 mA g-1 after 5000 cycles, rendering as an alternative biomass anode for lithium-ion batteries (LIBs). Moreover, as a negative electrode in sodium-ion batteries, Biochar-1 delivered discharge capacities of 147.7 mA h g-1 at 50 mA g-1 (140 cycles) and 126 mA h g-1 at 100 mA g-1 after 440 cycles.

3.
ACS Omega ; 7(36): 32620-32630, 2022 Sep 13.
Article in English | MEDLINE | ID: mdl-36119983

ABSTRACT

This study utilized pulp and paper mill sludge as a carbon source to produce activated biochar adsorbents. The response surface methodology (RSM) application for predicting and optimizing the activated biochar preparation conditions was investigated. Biochars were prepared based on a Box-Behnken design (BBD) approach with three independent factors (i.e., pyrolysis temperature, holding time, and KOH:biomass ratio), and the responses evaluated were specific surface area (SSA), micropore area (S micro), and mesopore area (S meso). According to the RSM and BBD analysis, a pyrolysis temperature of 800 °C for 3 h of holding and an impregnation ratio of 1:1 (biomass:KOH) are the optimum conditions for obtaining the highest SSA (885 m2 g-1). Maximized S micro was reached at 800 °C, 1 h and the ratio of 1:1, and for maximizing S meso (569.16 m2 g-1), 800 °C, 2 h and ratio 1:1.5 (445-473 m2 g-1) were employed. The biochars presented different micro- and mesoporosity characteristics depending on pyrolysis conditions. Elemental analysis showed that biochars exhibited high carbon and oxygen content. Raman analysis indicated that all biochars had disordered carbon structures with structural defects, which can boost their properties, e.g., by improving their adsorption performances. The hydrophobicity-hydrophilicity experiments showed very hydrophobic biochar surfaces. The biochars were used as adsorbents for diclofenac and amoxicillin. They presented very high adsorption performances, which could be explained by the pore filling, hydrophobic surface, and π-π electron-donor-acceptor interactions between aromatic rings of both adsorbent and adsorbate. The biochar with the highest surface area (and highest uptake performance) was subjected to regeneration tests, showing that it can be reused multiple times.

4.
ACS Omega ; 7(22): 18997-19009, 2022 Jun 07.
Article in English | MEDLINE | ID: mdl-35694524

ABSTRACT

A biomass amino silica-functionalized material was successfully prepared by a simple sol-gel method. 3-Aminopropyltriethoxysilane (APTES) was added to a tannin-rich grape residue to improve its physicochemical properties and enhance the adsorption performance. The APTES functionalization led to significant changes in the material's characteristics. The functionalized material was efficiently applied in the removal of methyl orange (MO) due to its unique characteristics, such as an abundance of functional groups on its surface. The adsorption process suggests that the electrostatic interactions were the main acting mechanism of the MO dye removal, although other interactions can also take place. The functionalized biomass achieved a very high MO dye maximum adsorption capacity (Q max) of 361.8 mg g-1. The temperature positively affected the MO removal, and the thermodynamic studies indicated that the adsorption of MO onto APTES-functionalized biomass was spontaneous and endothermic, and enthalpy is driven in the physisorption mode. The regeneration performance revealed that the APTES-functionalized biomass material could be easily recycled and reused by maintaining very good performance even after five cycles. The adsorbent material was also employed to treat two simulated dye house effluents, which showed 48% removal. At last, the APTES biomass-based material may find significant applications as a multifunctional adsorbent and can be used further to separate pollutants from wastewater.

5.
Nanomaterials (Basel) ; 12(5)2022 Mar 04.
Article in English | MEDLINE | ID: mdl-35269353

ABSTRACT

Preparing sustainable and highly efficient biochars as electrodes remains a challenge for building green energy storage devices. In this study, efficient carbon electrodes for supercapacitors were prepared via a facile and sustainable single-step pyrolysis method using spruce bark as a biomass precursor. Herein, biochars activated by KOH and ZnCl2 are explored as templates to be applied to prepare electrodes for supercapacitors. The physical and chemical properties of biochars for application as supercapacitors electrodes were strongly affected by factors such as the nature of the activators and the meso/microporosity, which is a critical condition that affects the internal resistance and diffusive conditions for the charge accumulation process in a real supercapacitor. Results confirmed a lower internal resistance and higher phase angle for devices prepared with ZnCl2 in association with a higher mesoporosity degree and distribution of Zn residues into the matrix. The ZnCl2-activated biochar electrodes' areal capacitance reached values of 342 mF cm-2 due to the interaction of electrical double-layer capacitance/pseudocapacitance mechanisms in a matrix that favors hydrophilic interactions and the permeation of electrolytes into the pores. The results obtained in this work strongly suggest that the spruce bark can be considered a high-efficiency precursor for biobased electrode preparation to be employed in SCs.

6.
Molecules ; 27(2)2022 Jan 11.
Article in English | MEDLINE | ID: mdl-35056771

ABSTRACT

In this work, Norway spruce bark was used as a precursor to prepare activated biochars (BCs) via chemical activation with potassium hydroxide (KOH) as a chemical activator. A Box-Behnken design (BBD) was conducted to evaluate and identify the optimal conditions to reach high specific surface area and high mass yield of BC samples. The studied BC preparation parameters and their levels were as follows: pyrolysis temperature (700, 800, and 900 °C), holding time (1, 2, and 3 h), and ratio of the biomass: chemical activator of 1: 1, 1.5, and 2. The planned BBD yielded BC with extremely high SSA values, up to 2209 m2·g-1. In addition, the BCs were physiochemically characterized, and the results indicated that the BCs exhibited disordered carbon structures and presented a high quantity of O-bearing functional groups on their surfaces, which might improve their adsorption performance towards organic pollutant removal. The BC with the highest SSA value was then employed as an adsorbent to remove Evans blue dye (EB) and colorful effluents. The kinetic study followed a general-order (GO) model, as the most suitable model to describe the experimental data, while the Redlich-Peterson model fitted the equilibrium data better. The EB adsorption capacity was 396.1 mg·g-1. The employment of the BC in the treatment of synthetic effluents, with several dyes and other organic and inorganic compounds, returned a high percentage of removal degree up to 87.7%. Desorption and cyclability tests showed that the biochar can be efficiently regenerated, maintaining an adsorption capacity of 75% after 4 adsorption-desorption cycles. The results of this work pointed out that Norway spruce bark indeed is a promising precursor for producing biochars with very promising properties.


Subject(s)
Azo Compounds/chemistry , Charcoal/chemistry , Graphite/chemistry , Hydroxides/chemistry , Plant Bark/chemistry , Potassium Compounds/chemistry , Adsorption , Biomass , Kinetics , Porosity , Spectrum Analysis , Temperature , Water Pollutants, Chemical
7.
Nanomaterials (Basel) ; 11(2)2021 Feb 07.
Article in English | MEDLINE | ID: mdl-33562379

ABSTRACT

Cheap and efficient carbon electrodes (CEs) for energy storage systems (ESS) such as supercapacitors (SCs) and batteries are an increasing priority issue, among other things, due to a globally increasing share of intermittent electricity production (solar and wind) and electrification of transport. The increasing consumption of portable and non-portable electronic devices justifies research that enables environmentally and economically sustainable production (materials, processing techniques, and product design) of products with a high electrochemical performance at an acceptable cost. Among all the currently explored CEs materials, biomass-based activated carbons (AC) present enormous potential due to their availability and low-cost, easy processing methods, physicochemical stability, and methods for self-doping. Nitrogen doping methods in CEs for SCs have been demonstrated to enhance its conductivities, surface wettability, and induced pseudocapacitance effect, thereby delivering improved energy/power densities with versatile properties. Herein, a short review is presented, focusing on the different types of natural carbon sources for preparing CEs towards the fabrication of SCs with high electrochemical performance. The influences of ACs' pore characteristics (micro and mesoporosity) and nitrogen doping on the overall electrochemical performance (EP) are addressed.

8.
Int J Pharm ; 596: 120244, 2021 Mar 01.
Article in English | MEDLINE | ID: mdl-33484920

ABSTRACT

Inadequate flowability of powders in industries during handling can cause many problems. For example, lack of flow from hoppers, poor tablet weight consistency, and low production rate in tableting. Many factors are known to commonly affect flow properties of powders, such as temperature, humidity and conditioning duration. In this paper, flow properties of a mannitol powder, which was conditioned between 24 and 72 h at various high relative humidities and temperature, were measured using a shear tester. A statistical model was developed to investigate the relative importance of these variables on the mannitol flow properties. The developed model showed all independent variables are significant in estimating bulk cohesion. Two separate approaches were used to evaluate inter-particle forces in the bulk, and how these changed with environmental conditions. First, inter-particle forces were inferred from the measured bulk properties using the Rumpf model approach. Secondly, inter-particle forces were predicted based on a model of moisture present on the particle surface using a combination of Kelvin model with the Laplace-Young (KLY) equation. The second approach also involved a new method to measure surface energy of mannitol powder based on measurements using Finite Dilution Inverse Gas Chromatography (FD-IGC). The surface energies of the mannitol powder were measured at high temperature (35 °C) and at different range of relative humidities. In spite of the fundamentally different approaches to the two ways of inferring inter-particles forces, these forces came out within less than 1.5:1 in magnitude. The Rumpf approach from bulk behaviour data obviously reflected the measured change in behaviour with humidity in particular, but this was not predicted from the KLY approach, however the likely reasons for this are postulated and recommendations for improvement are made.


Subject(s)
Excipients , Mannitol , Humidity , Particle Size , Powders , Surface Properties , Temperature
9.
RSC Adv ; 11(46): 28542-28549, 2021 Aug 23.
Article in English | MEDLINE | ID: mdl-35478541

ABSTRACT

In this study, bio-adhesives from natural rubber latex (NRL) were combined with starch and formic acid to fabricate jute stick-based particleboards (JSPs). Different blends of NRL, starch, and formic acid, i.e., 6 : 1 : 1, 2 : 1 : 1, and 2 : 3 : 3, were used to produce particleboards using a pressing temperature of 180 °C and applied pressure of 5 MPa using a 5 min pressing time. The particleboards were tested for physical, mechanical, and thermal properties according to ANSI standards. Based on initial screening, the best formula (NRL/starch/formic acid of 2 : 3 : 3) was used to optimize the temperature and pressing time for the highest board performance. The highest density, tensile strength, modulus of elasticity, and modulus of rupture were 830 g cm-3, 10.51, 2380, and 20.05 N mm-2, respectively. Thermo-gravimetric analysis indicated that thermal decomposition of samples primarily occurred in a temperature range of 265 to 399 °C, indicating good thermal performance. The measured physical and mechanical properties of the produced JSPs fulfilled the production standards. However, fulfilling the water absorption and thickness swelling criteria was a challenge. The results indicate that NRL is a promising alternative binder when blended with starch and formic acid.

10.
Nanomaterials (Basel) ; 10(7)2020 Jul 18.
Article in English | MEDLINE | ID: mdl-32708405

ABSTRACT

Some recent developments in the preparation of biomass carbon electrodes (CEs) using various biomass residues for application in energy storage devices, such as batteries and supercapacitors, are presented in this work. The application of biomass residues as the primary precursor for the production of CEs has been increasing over the last years due to it being a renewable source with comparably low processing cost, providing prerequisites for a process that is economically and technically sustainable. Electrochemical energy storage technology is key to the sustainable development of autonomous and wearable electronic devices. This article highlights the application of various types of biomass in the production of CEs by using different types of pyrolysis and experimental conditions and denotes some possible effects on their final characteristics. An overview is provided on the use of different biomass types for the synthesis of CEs with efficient electrochemical properties for batteries and supercapacitors. This review showed that, from different biomass residues, it is possible to obtain CEs with different electrochemical properties and that they can be successfully applied in high-performance batteries and supercapacitors. As the research and development of producing CEs still faces a gap by linking the type and composition of biomass residues with the carbon electrodes' electrochemical performances in supercapacitor and battery applications, this work tries to diminish this gap. Physical and chemical characteristics of the CEs, such as porosity, chemical composition, and surface functionalities, are reflected in the electrochemical performances. It is expected that this review not only provides the reader with a good overview of using various biomass residues in the energy storage applications, but also highlights some goals and challenges remaining in the future research and development of this topic.

11.
Phys Chem Chem Phys ; 21(32): 17901-17912, 2019 Aug 15.
Article in English | MEDLINE | ID: mdl-31380541

ABSTRACT

Activated reduced graphene oxide (a-rGO) is a material with a rigid 3D porous structure and high specific surface area (SSA). Using variation of activation parameters and post-synthesis mechanical treatment we prepared two sets of materials with a broad range of BET (N2) SSA ∼1000-3000 m2 g-1, and significant differences in pore size distribution and oxygen content. The performance of activated graphene as an electrode in a supercapacitor with KOH electrolyte was correlated with the structural parameters of the materials and water sorption properties. a-rGO is a hydrophobic material as evidenced by the negligibly small BET (H2O) SSA determined using analysis of water vapor sorption isotherms. However, the total pore volume determined using water vapor sorption and sorption of liquid water is almost the same as the one found by analysis of nitrogen sorption isotherms. Ball milling is found to provide an improved bulk density of activated graphene and collapse of all pores except the smallest ones (<2 nm). A decrease in the activation temperature from 850 °C to 550 °C is found to result in materials with a narrow micropore size distribution and increased oxygen content. Elimination of mesopores using ball milling or a lower activation temperature provided materials with better specific capacitance despite a significant decrease (by ∼30%) of the BET (N2) SSA. The best gravimetric and volumetric capacitances in KOH electrolyte were achieved not for samples with the highest value of the BET (N2) SSA but for materials with 80-90% of the total pore volume in micropores and an increased BET (H2O) SSA. Comparing the performance of electrodes prepared using rGO and a-rGO shows that a more hydrophilic surface is favorable for charge storage in supercapacitors with KOH electrolyte.

12.
Bioresour Technol ; 274: 65-72, 2019 Feb.
Article in English | MEDLINE | ID: mdl-30500765

ABSTRACT

Hot-air (75-100 °C) pasteurisation (HAP) of birch-wood-based substrate was compared to conventional autoclaving (steam at 121 °C) with regard to shiitake growth and yield, chemical composition of heat-pretreated material and spent mushroom substrate (SMS), enzymatic digestibility of glucan in SMS, and theoretical bioethanol yield. Compared to autoclaving, HAP resulted in faster mycelial growth, earlier fructification, and higher or comparable fruit-body yield. The heat pretreatment methods did not differ regarding the fractions of carbohydrate and lignin in pretreated material and SMS, but HAP typically resulted in lower fractions of extractives. Shiitake cultivation, which reduced the mass fraction of lignin to less than half of the initial without having any major impact on the mass fraction of glucan, enhanced enzymatic hydrolysis of glucan about four-fold. The choice of heating method did not affect enzymatic digestibility. Thus, HAP could substitute autoclaving and facilitate combined shiitake mushroom and bioethanol production.


Subject(s)
Ethanol/metabolism , Shiitake Mushrooms/metabolism , Glucans/metabolism , Hydrolysis , Lignin/metabolism , Shiitake Mushrooms/growth & development , Steam , Wood/chemistry
13.
Bioresour Technol ; 263: 654-659, 2018 Sep.
Article in English | MEDLINE | ID: mdl-29776721

ABSTRACT

Hydrothermal carbonization (HTC) can be used to break down sludge structure and generate carbonaceous hydrochar suitable for solid fuel or value-added material applications. The separation of char and the reaction medium however generates a filtrate, which needs to treated before potential discharge. Thus, this work determined filtrate properties based on HTC temperature and sludge moisture content and estimated the discharge emissions and the potential increase in analyte loads to an industrial wastewater treatment plant based on derived regression models. Direct discharge of HTC filtrate would significantly increase effluent emissions at the mill, indicating the filtrate treatment is crucial for the future implementation of HTC at pulp and paper mills. Recycling the HTC filtrate to the wastewater plant would lead to only a nominal increase in effluent flow, but would increase the suspended solids, BOD, COD and total nitrogen loads by 0.1-0.8%, 3.8-5.3%, 2.7-3.1% and 42-67%, respectively, depending on HTC temperature.


Subject(s)
Carbon/chemistry , Refuse Disposal , Industrial Waste , Temperature , Wastewater , Water
14.
Bioresour Technol ; 116: 396-402, 2012 Jul.
Article in English | MEDLINE | ID: mdl-22542137

ABSTRACT

Douglas fir (Pseudotsuga menziesii L.) particles were exposed to high pressure saturated steam (200 and 220 °C for 5 and 10 min) to improve the durability and hydrophobicity of pellets produced from them. Depending on treatment severity, the moisture content of the particles increased from 10% to 36% (wet basis). Douglas fir particles steam-treated at 220 °C for 10 min had the fastest drying rate of 0.014 min(-1). The equilibrium moisture content (EMC) of steam-treated samples decreased with increasing steam temperature and treatment time. The Giggnheim-Anderson-deBoer (GAB) equilibrium model gave a good fit with the equilibrium data with R(2) = 0.99. The adsorption rate of untreated pellets exposed to humid air (30 °C, 90% RH) for 72 h was 0.0152 min(-1) while that of steam-treated pellets ranged from 0.0125 to 0.0135 min(-1) without a clear trend with steam treatment severity. These findings are critical to develop durable and less hygroscopic pellets.


Subject(s)
Desiccation/methods , Humidity , Pseudotsuga/chemistry , Steam , Adsorption , Kinetics , Particle Size , Pressure , Temperature , Time Factors
15.
Intensive Crit Care Nurs ; 27(6): 331-7, 2011 Dec.
Article in English | MEDLINE | ID: mdl-22055397

ABSTRACT

OBJECTIVE: Next of kin (NoK) to patients undergoing cardiac surgery expect successful outcomes but sometimes serious complications occur and this affects their NoK. To describe NoK's experiences of information and support when serious complications occur during the first 30 days after cardiac surgery. METHODS: A qualitative, critical incident technique was used. Forty-two NoK were asked to describe their experiences of information and support. RESULTS: Three main areas emerged from the analysis. The first main area, Confidence during the waiting period, described how NoK could not participate in the forthcoming operation and how the NoK were informed. The second main area, Involvement during the hospital stay, described how the NoK feel trust in the healthcare professionals and dissatisfaction with the care in relation to the operation. The third main area, Sense of abandonment, described problems with the rehabilitation. CONCLUSIONS: These findings show the importance of pre- and post operative contacts between healthcare professionals, patients and NoK. When the NoK and the patients are well informed it constitutes a basis for fruitful conversations between them and the healthcare professionals, and everyone can be better prepared if complications occur.


Subject(s)
Caregivers , Consumer Behavior , Heart Diseases/surgery , Postoperative Complications/rehabilitation , Professional-Family Relations , Adult , Aged , Aged, 80 and over , Female , Heart Diseases/nursing , Heart Diseases/rehabilitation , Humans , Male , Middle Aged , Postoperative Complications/nursing , Qualitative Research , Social Support , Spouses/psychology , Sweden , Trust
16.
AANA J ; 79(1): 51-61, 2011 Feb.
Article in English | MEDLINE | ID: mdl-21473227

ABSTRACT

The purpose of this descriptive cohort study was to identify perioperative risk factors associated with postoperative outcome up to 4 months after surgery in elderly patients with hip fracture. Data were collected prospectively through the Swedish National Hip Fracture, the local Acute and Emergency, and Anesthesia registers, and retrospectively from medical and nursing records. The 428 patients (aged > or = 65 years) with hip fracture were consecutively included. Multiple logistic regression analyses were used to identify factors predicting each of 4 outcomes. Perioperative risk factors predicting death within 4 months after surgery were fasting time of 12 or more hours and blood transfusion of 1 U or more. Risk factors predicting postoperative confusion were postoperative oxygen saturation less than 90% and fasting time 12 hours or longer. Risk factors predicting in-hospital complications were transfusion of 1 or more units of blood, preoperative oxygen saturation less than 90%, and fasting time 12 hours or more. Risk factor predicting length of stay longer than 10 days was blood transfusion of 1 U or more. To minimize morbidity and mortality, providers should increase efforts to optimize the patients' oxygen saturation and hemoglobin level and reduce fasting time and waiting time for surgery.


Subject(s)
Anesthesia/mortality , Hip Fractures/mortality , Hip Fractures/surgery , Perioperative Care/statistics & numerical data , Age Distribution , Aged , Aged, 80 and over , Female , Humans , Male , Nurse Anesthetists , Registries , Retrospective Studies , Risk Factors
17.
AANA J ; 77(1): 49-58, 2009 Feb.
Article in English | MEDLINE | ID: mdl-19263829

ABSTRACT

The purpose of this descriptive cohort study was to describe patients with hip fracture on the basis of ASA physical status and to identify preoperative risk factors associated with postoperative outcome up to 4 months after surgery. Data were collected prospectively through the Swedish National Hip Fracture and Anesthetic registers and retrospectively from medical and nursing records. The 428 patients (aged > or = 65 years) with hip fracture were consecutively included. Multiple logistic regression analyses were used to identify factors predicting each of 4 outcomes. Risk factors for a poorer 4-month survival after hip fracture were ASA physical status 3 and 4, more extensive fractures, 85 years or older, male sex, and dependency in living. Mortality within 4 months was significantly associated with ASA physical status 3 and 4, age 85 years or older, male sex, dementia diagnosis, fewer than 8 correct answers on the Short Portable Mental Status Questionnaire, 4 or more prescribed drugs, hemoglobin level less than 100 g/L, creatinine level more than 100 micromol/L, dependency in living, inability to walk alone, and fracture other than undisplaced intracapsular. Elderly patients with hip fracture should be identified immediately at admission regarding risk factors leading to a poorer survival and more complications.


Subject(s)
Hip Fractures/surgery , Aged , Aged, 80 and over , Cohort Studies , Female , Humans , Length of Stay , Logistic Models , Male , Multivariate Analysis , Postoperative Complications , Risk Factors , Survival Analysis , Sweden , Treatment Outcome
18.
Intensive Crit Care Nurs ; 24(4): 242-50, 2008 Aug.
Article in English | MEDLINE | ID: mdl-18387301

ABSTRACT

OBJECTIVE: Relatives of patients undergoing cardiac surgery expect successful outcome but sometimes complications cause death. The aim was to interview relatives of patients who have died in connection with cardiac surgery and describe their experiences of information, reception and care. METHODS: Data were obtained from semi-structured interviews with 18 relatives of deceased patients and then analysed using qualitative content analysis. RESULTS: Two main groups emerged: "Analysing the situation" with the sub-groups: knowledge of cardiac disease, the road to operation, hope and despair, information and choice and "The thin thread of life" with the sub-groups, reception, life is over, care, death as a relief, cause of death and support. CONCLUSION: Most relatives were satisfied with the information and care in connection with the operation and at the end of life. However, some aspects such as inadequate pain control and transportation of critically ill patients to other wards and hospitals could be improved. One way is to introduce a co-ordinator in order to better support patients, next of kin and colleagues without experience of cardio-thoracic surgery who need help during the patients' way from diagnosis and acceptance of cardiac surgery and through the treatment and postoperative care.


Subject(s)
Attitude to Health , Cardiac Surgical Procedures/psychology , Death, Sudden, Cardiac , Family/psychology , Morale , Adaptation, Psychological , Adult , Aged , Aged, 80 and over , Cardiac Surgical Procedures/adverse effects , Cause of Death , Communication , Death, Sudden, Cardiac/etiology , Female , Humans , Male , Middle Aged , Nursing Methodology Research , Perioperative Care/psychology , Professional-Family Relations , Qualitative Research , Quality of Health Care , Social Support , Surveys and Questionnaires , Sweden , Terminal Care/psychology
19.
Bioresour Technol ; 99(15): 7176-82, 2008 Oct.
Article in English | MEDLINE | ID: mdl-18261898

ABSTRACT

In this study, pre-compaction was evaluated as a method to enhance stable reed canary grass pellet production. An experimental design of the factors raw material moisture content, steam addition, raw material bulk density, and die temperature was used to find production conditions for high quality pellets by multiple linear regression modelling of responses. Response variables being modelled were variability of pelletizer current (as a measurement of uneven production), pellet bulk density, and pellet durability. By pre-compacting the raw material from a bulk density of 150 kg/m3 to 270kg/m3, continuous production could be obtained at minimum raw material moisture content of 13.8%. Bulk density and durability were both highly correlated to raw material moisture content, but showed different optima. Multiple response optimization was used to target process settings for production of high quality reed canary grass pellets with bulk density >650kg/m3 and durability >97.5%.


Subject(s)
Bioelectric Energy Sources , Biomass , Multivariate Analysis
20.
Patient Educ Couns ; 67(1-2): 32-8, 2007 Jul.
Article in English | MEDLINE | ID: mdl-17350783

ABSTRACT

OBJECTIVE: The aim was to describe the patients' own experiences of risk information in connection with cardiac surgery and it's outcome. METHODS: Questionnaires were answered prior to and 8 weeks after cardiac surgery. Data were analysed using qualitative content analysis. Patients in the intervention group (n=55) received standard information and a newly written extended information brochure about risks in connection with cardiac surgery. Patients in the control group (n=44) only received standard information. RESULTS: Three categories emerged: attitude towards information, deficiencies and advantages of the information and concerns related to cardiac surgery. Patients in both groups pointed out the importance of information when they were put on the waiting list. Patients in the control group missed information about complications and some patients thought that their complications were caused by maltreatment. Patients having complications in the intervention group were more understanding about their situation. CONCLUSION: Much can be done for the patients on their path from diagnosis and being accepted for cardiac surgery and throughout the treatment period regarding the provision of information. PRACTICE IMPLICATIONS: If patients become carefully and thoroughly informed by the health care professionals, they are more satisfied and better prepared if complications occur.


Subject(s)
Attitude to Health , Cardiac Surgical Procedures , Patient Education as Topic , Adult , Aged , Aged, 80 and over , Female , Humans , Male , Middle Aged , Pamphlets , Patient Satisfaction , Risk , Sweden , Waiting Lists
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