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| 1 | Silicate minerals control the potential uses of phosphorus-laden mineral-engineered biochar as phosphorus fertilizers显示文摘Silicate minerals constitute the main components in silicon(Si)-rich biomass,affecting the phosphorus(P)adsorption and release competencies of mineral-engineered biochar;however,the mechanisms underlying their differences remain largely unresolved.To examine these interactions,we investigated the mineralogical compositions and quantified the P-adsorption capacities of Al-,Fe-,Mn-,Zn-,and Mg-engineered biochars from Si-rich rice husk material.The potential uses of P-laden mineral-engineered biochar for P fertilizers were assessed using citric acid extraction.The results from X-ray diffraction,scanning electron microscopy,and Fourier transform infrared spectrometry revealed that mixed metal(oxyhydr)oxides and metal-silicate compounds precipitated in the biochar structure and acted as the main P adsorbents.Micro-crystalline silicates derived from the biomass-induced metal-silicate precipitates in all engineered biochars,which effectively retained the aqueous P with varying excellent capacities(25.6-46.5 mg/g)but relatively slow kinetics(48 h).The suitability of the Zn-,Mg-,Mn-,and Fe-biochars as P-recycled fertilizers was confirmed by the high amounts of citric acid extractable P(19-69%of the total P).Varying amounts of Zn,Mg,and Mn(34-47%of the total host metals)were also released from the engineered biochar through ligand-promoted dissolution.Our data shed light on the novel potential utilization of Mn-,Mg-and Zn-biochars from Si-rich biomass for P retrieval and their use for P,Mg,and micronutrient(Mn and Zn)fertilizers.Regarding the P removal capacity,the mineral-engineered biochar needed a longer adsorption period than conventional metal-engineered biochar. | Natcha Sornhiran Surachet Aramrak Nattaporn Prakongkep Worachart Wisawapipat | 2022 | Biochar2022,4,1: | 1 |
| 2 | The efficacy of aloe vera used for burn wound healing: A systematic review 显示文摘 | Ratree M Nathorn C Surachet N | 2007 | Burns2007,33,6: | 1 |
| 3 | Multi-objective model for locating automatic vehicle identification readers 显示文摘 | Anthony C Piya C Surachet P | 2004 | Transportation Research Record2004,,2: | 1 |
| 4 | Examining the scaling effect and overlapping problem in logit-based stochastic user equilibrium models显示文摘 | Anthony Chen Surachet Pravinvongvuth Xiangdong Xu Seungkyu Ryu Piya Chootinan | 2012 | Transportation Research Part A2012,,8: | 1 |
| 5 | Preventive HIV vaccine acceptability and behavioral risk compensation among high-risk men who have sex with men and transgenders in Thailand显示文摘 | Peter A. Newman Surachet Roungprakhon Suchon Tepjan Suzy Yim | 2009 | Vaccine2009,,4: | 1 |
| 6 | Multi-objective Model for Locating Automatic Vehicle Identification Readers 显示文摘 | ANTHONY C PIYA C SURACHET P | 2004 | Transportation Research Record2004,,: | 1 |
| 7 | Strategies for Successful Ageing Living Alone显示文摘 | Boontip Siritarungsri Songsri Soranastaporn Malee Surachet Karen Francis Jane Mills | 2015 | Journalism and Mass Communication2015,5,2: | 0 |
| 8 | Performance of LiDAR-SLAM-based PNT with initial poses based on NDT scan matching algorithm显示文摘To achieve higher automation level of vehicles defned by the Society of Automotive Engineers,safety is a key requirement afecting navigation accuracy.We apply Light Detection and Ranging(LiDAR)as a main auxiliary sensor and propose LiDAR-based Simultaneously Localization and Mapping(SLAM)approach for Positioning,Navigation,and Timing.Furthermore,point cloud registration is handled with 3D Normal Distribution Transform(NDT)method.The initial guess of the LiDAR pose for LiDAR-based SLAM comes from two sources:one is the diferential Global Navigation Satellite System(GNSS)solution;the other is Inertial Navigation System(INS)and GNSS integrated solution,generated with Extended Kalman Filter and motion constraints added,including Zero Velocity Update and Non-Holonomic Constraint.The experiment compares two initial guesses for scan matching in terms navigation accuracy.To emphasize the importance of a multi-sensor scheme in contrast to the conventional navigation method using the stand-alone system,the tests are conducted in both open sky area and GNSS signal block area,the latter might cause Multipath and Non-Line-Of-Sight efects.To enhance the navigation accuracy,the Fault Detection and Exclusion(FDE)mechanism is applied to correct the navigation outcome.The results show that the application of NDT and FDE for INS/GNSS integrated system can not only reach where-in-lane level navigation accuracy(0.5 m),but also enable constructing the dynamic map. | Kaiwei Chiang Yuting Chiu Surachet Srinara Menglun Tsai | 2023 | Satellite Navigation2023,4,1: | 0 |
| 9 | Efficiency enhancement of Cs_(0.1)(CH_(3)NH_(3))_(0.9)PbI_(3) perovskite solar cell by surface passivation using iso-butyl ammonium iodide显示文摘Efficiency enhancement of Cs_(0.1)(CH_(3)NH_(3))_(0.9)PbI_(3) solar cell devices was performed by using iso-butyl ammonium iodide(IBA)passivated on Cs_(0.1)(CH_(3)NH_(3))_(0.9)PbI_(3) films.The n-i-p structure of perovskite solar cell devices was fabricated with the structure of FTO/SnO_(2)/Cs_(0.1)(CH_(3)NH_(3))_(0.9)PbI_(3)(FTO,i.e.,fluorine doped tin oxide)and IBA/Spiro-OMeTAD/Ag.The effect of different weights of IBA passivated on Cs-doped perovskite solar cells(PSCs)was systematically investigated and compared with non-passivated devices.It was found that the 5-mg IBA-passivated devices exhibited a high power conversion efficiency(PCE)of 15.49%higher than 12.64%of non-IBA-passivated devices.The improvement of photovoltaic parameters of the 5-mg IBA-passivated device can be clearly observed compared to the Cs-doped device.The better performance of the IBA-passivated device can be confirmed by the reduction of PbI_(2) phase in the crystal structure,lower charge recombination rate,lower charge transfer resistance,and improved contact angle of perovskite films.Therefore,IBA passivation on Cs_(0.1)(CH_(3)NH)_(0.9)PbI_(3) is a promising technique to improve the efficiency of Cs-doped perovskite solar cells. | Wakul Bumrungsan Kritsada Hongsith Vasan Yarangsi Pisith Kumnorkeaw Sukrit Sucharitakul Surachet Phaduangdhitidhada Supab Choopun | 2022 | International Journal of Minerals,Metallurgy and Materials2022,29,11: | 0 |