発表論文

2022年分

65

Kato, S., Ogasawara, A., Itoh, T., Sakai, H. D., Shimizu, M., Yuki, M., Kaneko, M., Takashina, T., & Ohkuma, M.(2022). Nanobdella aerobiophila gen. nov., sp. nov., a thermoacidophilic, obligate ectosymbiotic archaeon, and proposal of nanobdellaceae fam. nov., Nanobdellales ord. nov. and Nanobdellia class. nov. Int J Syst Evol Microbiol, 72(8),22. https://doi.org/10.1099/ijsem.0.005489

64

Shintani, T., Masuda, H., Nemoto, T., Ikawa, R., Marui, A., Tanimizu, M., & Ishikawa, T.(2022). Three-dimensional structure and sources of groundwater masses beneath the Osaka plain, Southwest Japan. Journal of Hydrology: Regional Studies, 43,101193. https://doi.org/10.1016/j.ejrh.2022.101193

63

Yasutaka, T., Murakami, M., Iwasaki, Y., Naito, W., Onishi, M., Fujita, T., & Imoto, S.(2022). Assessment of Covid-19 risk and prevention effectiveness among spectators of mass gathering events. Microbial Risk Analysis, 21,100215. https://doi.org/10.1016/j.mran.2022.100215

62

Nomura, S., Eguchi, A., Yoneoka, D., Murakami, M., Ghaznavi, C., Gilmour, S., Kaneko, S., Kawashima, T., Kunishima, H., Naito, W., Sakamoto, H., Sakurai, K., Takahashi, A., Takayama, Y., Tanoue, Y., Yamamoto, Y., Yasutaka, T., & Miyata, H.(2022). Characterising reasons for reversals of Covid-19 vaccination hesitancy among japanese people: one-year follow-up survey. The Lancet Regional Health, 27,100541. https://doi.org/10.1016/j.lanwpc.2022.100541

61

Ghaznavi, C., Yoneoka, D., Kawashima, T., Eguchi, A., Murakami, M., Gilmour, S., Kaneko, S., Kunishima, H., Naito, W., Sakamoto, H., Sakurai, K., Takahashi, A., Takayama, Y., Tanoue, Y., Yamamoto, Y., Yasutaka, T., Miyata, H., & Nomura, S.(2022). Factors associated with reversals of Covid-19 vaccination willingness: results from two longitudinal, national surveys in Japan 2021-2022. The Lancet Regional Health, 27,100540. https://doi.org/10.1016/j.lanwpc.2022.100540

60

Murakami, M., Fujita, T., Li, P., Imoto, S., & Yasutaka, T.(2022). Development of a Covid-19 risk assessment model for participants at outdoor music festivals: evaluation of the validity and control measure effectiveness based on two actual events in Japan and Spain. PeerJ, 10,e13846. https://doi.org/10.7717/peerj.13846

59

高畑修・原田拓也・宮口新治・桑原充・門間聖子・保高徹生・ & 小峯秀雄(2022). 道路盛土構造が有する酸性化抑制機能の評価. 土木学会論文集C(地圏工学), 78(2), https://doi.org/10.2208/jscejge.78.2_83

58

Miyahara, H., Hashimoto, Y., Mampuku, K., & Masaya, M.(2022). Characterization of porous aluminum silicates for CO2 adsorption. CLAY SCIENCE, 26(3-4),65-72. https://doi.org/10.11362/jcssjclayscience.MS-22-2

57

Ye, C., Takaya, Y., Tsunazawa, Y., Mochidzuki, K., & Tokoro, C.(2022). Influence of agitator shape on characteristics and grinding efficiency of attritor mill. IJAT, 16(6),756-765. https://doi.org/10.20965/ijat.2022.p0756

56

Tsuchida, K., Nakamura, K., Watanabe, N., & Komai, T.(2022). Influence of non-uniform flow on toxic elements transport in soil column percolation test. Heliyon, 8(11),e11541. https://doi.org/10.1016/j.heliyon.2022.e11541

55

Asahina, K., Takahashi, S., Saito, R., Kaihoe, K., & Oba, Y.(2022). Maleimide index: a paleo-redox index based on the fragmented fossil-chlorophylls obtained by chromic acid oxidation. RSC Advances, 12(48),31061-31067. https://doi.org/10.1039/D2RA04702K

54

Asano, Y., Yamaguchi, Y., & Kodama, S.(2022). Geological mapping by thermal inertia derived from long-term maximum and minimum temperatures of aster data. Quarterly Journal of Engineering Geology and Hydrogeology, 56, https://doi.org/10.1144/qjegh2022-050

53

安藤 佑介・荒岡大輔・吉村寿紘・ & 中島礼(2022). 瑞浪層群明世層産貝類におけるストロンチウム同位体年代の追加記録. 瑞浪市化石博物館研究報告, 49,119-122. https://doi.org/10.50897/bmfm.49.0_119

52

Ohtomo, Y., Yang, J., Nishikata, M., Kawamoto, D., Kimura, Y., Nga, T., & Sato, T.(2022). Low-temperature hydrothermal synthesis of chromian spinel from Fe-Cr hydroxides using a flow-through reactor. Minerals, 12(9),1110. https://doi.org/10.3390/min12091110

51

Kosaku, Y., Tsunazawa, Y., Okuyama, K., Iwamoto, M., Sekine, Y., & Tokoro, C.(2022). Investigation of optimum scale-up of media stirred mill using the discrete element method. MATERIALS TRANSACTIONS, 63(10),1501-1509. https://doi.org/10.2320/matertrans.M-M2022809

50

浅田美穂・横田俊之・佐藤幹夫・ & 棚橋学(2022). 音響マッピングによる海底下浅部に埋積する物質境界の可視化ー山形県酒田市沖表層型メタンハイドレート賦存域の例. 物理探査, 75,sp18-sp29. https://doi.org/10.3124/segj.75.sp18

49

近藤萌波・坂本靖英・川辺能成・中村謙吾・渡邉則昭・ & 駒井武(2022). 不飽和土壌からの揮発性化合物の揮発フラックスの定量的予測モデルの開発 ―土壌カラム試験のヒストリーマッチングによる関連パラメータの検証―. Analytical Chemistry, 48(3),87-103. https://doi.org/10.2208/jscejer.78.3_87

48

Koike, K., Yono, O., Sa, V. R. D., Tomita, S. A., Nozaki, T., Takaya, Y., & Komori, S.(2022). Effectiveness of neural kriging for three-dimensional modeling of sparse and strongly biased distribution of geological data with application to seafloor hydrothermal mineralization. Mathematical Geosciences, 54,1183-1206. https://doi.org/10.1007/s11004-022-10011-3

47

Tritch, G. T., Yatsuk, A., Takahata, N., Shakirov, R., Tomaru, H., Tanaka, K., Obzhirov, A., Salomatin, A., Aoki, S., Maryina ,V.M., Sano, Y., & Matsumoto, R.(2022). Ocean dynamics and methane plume activity in tatar strait, far eastern federal district, Russia as revealed by seawater chemistry, hydroacoustics, and noble gas isotopes. Front. Earth Sci, 10, https://doi.org/10.3389/feart.2022.825679

46

Maruo, Y., Sato, N., Nogawa, K., Aoki, S., & Noborio, K.(2022). Pore-scale wetting process of capillary-driven flow in unsaturated porous media under micro- and earth-gravities. Water, 14(13), https://doi.org/10.3390/w14131995

45

越田渓子・仲井亮平・佐藤颯哉・喜多村陽・ & 高倉伸一(2022). 鹿児島県岩戸鉱山西方岩戸山地区における含金珪酸鉱の探鉱活動. 資源地質, 72(1),1-12. https://doi.org/10.11456/shigenchishitsu.72.1

44

Matsunaga, Y., Kanda, W., Koyama, T., Takakura, S., & Nishizawa, T.(2022). Large-scale magmatic-hydrothermal system of Kusatsu-Shirane volcano, Japan, revealed by broadband magnetotellurics. Journal of Volcanology and Geothermal Research, 429,107600. https://doi.org/10.1016/j.jvolgeores.2022.107600

43

Zhao, Y., Cao, J., Zhang, X., & Zhang, M.(2022). Analyzing the characteristics of land use distribution in typical village transects at Chinese loess plateau based on topographical factors. Open Geosciences, 14(1),429-442. https://doi.org/10.1515/geo-2022-0370

42

Sugita, H., Oguma, T., Hara, J., Zhang, M., & Kawabe, Y.(2022). Effects of silicic acid on leaching behavior of arsenic from spent magnesium-based adsorbents containing arsenite. Sustainability, 14(7),4236. https://doi.org/10.3390/su14074236

41

Fujioka, R., Katayama, I., Kitamura, M., Okuda, H., & Hirose, T.(2022). Depth profile of frictional properties in the inner Nankai accretionary prism using cuttings from IOPD site C0002. Progress in Earth and Planetary Science, 9(31), https://doi.org/10.1186/s40645-022-00488-1

40

保高徹生・村上道夫・仲村健太郎・加茂将史・内藤航・竹下潤一・井元清哉・大竹文雄・井出和希・岸本充生・ & 粥川準二(2022). マスギャザリングイベントにおけるリスク評価・管理:検査とワクチンを事例として*. リスク学研究, 31(3),145-150. https://doi.org/10.11447/jjra.SRA-0393

39

Takada, M., Shirai, K., Murakami, M., Ohnuma, S., Nakatani, J., Yamada, K., Osako, M., & Yasutaka, T.(2022). Important factors for public acceptance of the final disposal of contaminated soil and wastes resulting from the fukushima daiichi nuclear power station accident. PLOS ONE, 17(6),e0269702. https://doi.org/10.1371/journal.pone.0269702

38

綱澤有輝・古作吉宏・坂入義隆・塚田浩二・斉藤瑞稀・蛭子陽介・三觜幸平・陳友晴・ & 所千晴(2022). High pressure grinding roll粉砕における銅鉱石の単体分離促進効果の定量的評価. Journal of MMIJ, 138(6),95-102. https://doi.org/10.2473/journalofmmij.138.95

37

西方美羽・保高徹生・森本和也・ & 井本由香利(2022). 浸水前処理およびシリアルバッチ吸着試験 による吸着材 へ の水接触 の 影響評価. 地盤工学ジャーナル, 17(2),195-204. https://doi.org/10.3208/jgs.17.195

36

都築雅年・宮本哲臣・山田直登・田中洋・矢野雅大・アフマディエコ・宮下庸介・宮崎晋行・大野哲二・ & 今泉博之(2022). 地熱井における新規開発pdcビットの掘削性能評価. 日本地熱学会誌, 44(3),123-135. https://doi.org/10.11367/grsj.44.123

35

Lei, X., Ohuchi, T., Kitamura, M., Li, X., & Li, Q.(2022). An effective method for laboratory acoustic emission detection and location using template matching. Journal of Rock Mechanics and Geotechnical Engineering, 14(5),1642-1651. https://doi.org/10.1016/j.jrmge.2022.03.010

34

Yoshihara, N., Matsumoto, S., Umezawa, R., & Machida, I.(2022). Catchment-scale impacts of shallow landslides on stream water chemistry. Science of The Total Environment, 825(15),153970. https://doi.org/10.1016/j.scitotenv.2022.153970

33

Lei, X., & Wang, G.(2022). Is clustered seismicity an indicator of regional stress? Insights from earthquake sequences in Yongning-Luguhu faulted basin, Southwest China. Earthquake Research Advances, 2(3),100138. https://doi.org/10.1016/j.eqrea.2022.100138

32

Lei, X.(2022). Was the 2018 Hokkaido eastern iburi earthquake in Japan related to carbon capture and storage (CCS)-CO2 injection? insights from geomechanical analysis. Frontiers in Earth Science, 10, https://doi.org/10.3389/feart.2022.873645

31

Umezawa, R., Jinguuji, M., & Yokota, T.(2022). Characterization of a river embankment using a non-destructive direct current electrical survey. Near Surface Geophysics, 20(3),238-252. https://doi.org/10.1002/nsg.12202

30

Zhao, Z., Hao, Y., Wang, T., Yeh, T. J., & Zhang, M.(2022). A generalized analytical solution of groundwater head response to dual tide in a multilayered island leaky aquifer system. Hydrological Processes, 36(4),e14548. https://doi.org/10.1002/hyp.14548

29

Hossain, H. M. Z., Kamei, A., & Araoka, D.(2022). Geochemical characteristics of shoreline sediments from the bay of Bengal, Bangladesh: implications for provenance and source-rock weathering. Geological Journal, 57(8),3431-3446. https://doi.org/10.1002/gj.4484

28

猪狩俊一郎(2022). 空気中軽質非メタン炭化水素の濃縮測定における,空気中酸素の妨害による回収率の低下. Researches in Organic Geochemistry, 38(1),19-28. https://doi.org/10.20612/rog.38.1_19

27

浅田美穂・ & 木戸ゆかり(2022). 海中観測成果が含む実効的な音響測位誤差についての検討. 情報地質, 3(2),41-50.

26

Asada, M., Satoh, M., Tanahashi, M., Yokota, T., & Goto, S.(2022). Visualization of shallow subseafloor fluid migration in shallow gas hydrate field using high-resolution acoustic mapping and ground truthing, and their implications on the formation process: a case study of a knoll off Sakata, eastern margin of the sea of Japan. Marine Geophysical Research, 43(34), https://doi.org/10.1007/s11001-022-09495-9

25

Yoshioka, M., Shrestha, G., Widiatmojo, A., & Uchida, Y.(2022). Seasonal changes in thermal process based on thermal response test of borehole heat exchanger. Geothermics, 102,102390. https://doi.org/10.1016/j.geothermics.2022.102390

24

Araoka, D., Simandl, G. J., Paradis, S., Yoshimura, T., Hoshino, M., & Kon, Y.(2022). Formation of the rock canyon creek carbonate-hosted REE-F-Ba deposit, British Columbia, Canada: constraints from Mg-Sr isotopes of dolomite, calcite, and fluorite. Journal of Geochemical Exploration, 240,107045. https://doi.org/10.1016/j.gexplo.2022.107045

23

Pyae, S. P., Yonezu, K., Imai, A., Watanabe, K., Tindell, T., & Sanematsu, K.(2022). Geological, mineralogical and ore fluid characteristics of the Tagun-Khin-Dan gold mineralization in Mogok-Mandalay-Mergui Belt, central Myanmar. Resource Geology, 72(1),e12298. https://doi.org/10.1111/rge.12298

22

Machida, I., Ono, M., Kamitani, T., & Muranaka, Y.(2022). Applicability of d-excess and 17O-excess as groundwater tracers for determination of recharge area. Hydrogeology Journal, 30, 2027-2041. https://doi.org/10.1007/s10040-022-02526-0

21

Hamanaka, A., Sasaoka, T., Shimada, H., & Matsumoto , S.(2022). Amelioration of acidic soil using fly ash for mine rehabilitation in post-mining land. International Journal of Coal Science & Technology, 9,33. https://doi.org/10.1007/s40789-022-00499-9

20

Yoshihara, N., & Hattanji, T.(2022). Estimation of shallow subsurface structures on granitic hillslopes based on electrical resistivity distribution. Journal of Applied Geophysics, 203,104704. https://doi.org/10.1016/j.jappgeo.2022.104704

19

Pyae, S. P., Yonezu, K., Imai, A., Watanabe, K., Tindell, T., & Sanematsu, K.(2022). Geological, mineralogical and ore fluid characteristics of the Tagun-Khin-Dan gold mineralization in Mogok-Mandalay-Mergui Belt, Central Myanmar. Resource Geology, 72(1),e12298. https://doi.org/10.1111/rge.12298

18

Suda, K., Aze, T., Miyairi, Y., Yokoyama, Y., Matsui, Y., Ueda, H., Saito, T., Sato, T., Sawaki, Y., Nakai, R., Tamaki, H., Takahashi, H. A., Morikawa, N., & Ono, S.(2022). The origin of methane in serpentinite-hosted hyperalkaline hot spring at Hakuba happo, Japan: Radiocarbon, methane isotopologue and noble gas isotope approaches. Earth and Planetary Science Letters, 585,117510. https://doi.org/10.1016/j.epsl.2022.117510

17

Nakashima, Y., Sawatsubashi, T., & Fujii, S.(2022). Nondestructive quantification of moisture in powdered low-rank coal by a unilateral nuclear magnetic resonance scanner. International Journal of Coal Preparation and Utilization, 42(5),1421-1434. https://doi.org/10.1080/19392699.2020.1722656

16

Takada, M., Yasutaka, T., Hayashi, S., Mai, M., & Tagami, K.(2022). Aggregated transfer factor of 137cs in edible wild plants and its time dependence after the Fukushima Dai-ichi nuclear accident. scientific reports, 5171(12),1. https://doi.org/10.1038/s41598-022-09072-5

15

Murofushi, A., Nga, T., Sanematsu, K., Ya, K. Y., Ito, A., Kikuchi, R., & Sato, T.(2022). Mineralogical evolution of a weathering profile in the Tagaung Taung Ni laterite deposit: significance of smectite in the formation of high-grade Ni ore in Myanmar. Mineralium Deposita, 57,1107-1122. https://doi.org/10.1007/s00126-021-01089-6

14

Takaya, Y., Xiao, Y., Tsunazawa, Y., Mauricio, M., & Tokoro, C.(2022). Mechanochemical degradation treatment of TBBPA: A kinetic approach for predicting the degradation rate constant. Advanced Powder Technology, 33(3),103469. https://doi.org/10.1016/j.apt.2022.103469

13

Matsuo, S., Masaya, M., & Shimazu, T.(2022). Proposal of agro-industrial integration heat transport system using high-performance medium for the realization of a sustainable society. Energies, 15(3),1211. https://doi.org/10.3390/en15031211

12

Parlin, A. A., Kondo, M., Watanabe, N., Nakamura, K., Wang, J., Sakamoto, Y., & Komai, T.(2022). Role of water in unexpectedly large changes in emission flux of volatile organic compounds in soils under dynamic temperature conditions. scientific reports, 12,4418. https://doi.org/10.1038/s41598-022-08270-5

11

Pujiwati, A., Nakamura, K., Wang, J., Kawabe, Y., Watanabe, N., & Komai, T.(2022). Potentially toxic elements pose significant and long-term human health risks in river basin districts with abandoned gold mines. Environmental Geochemistry and Health, 44(12),4685-4702. https://doi.org/10.1007/s10653-022-01229-5

10

坂原桜子・長野宇規・保高徹生・金井裕美子・ & 高田モモ(2022). 原子力災害の旧避難地区における放射線学習を伴った地域交流活動の意義と効果. 農村計画学会論文集, 2(1),1-6. https://doi.org/10.2750/jrps.2.1_1

9

Wang, S., Jiang, G., Lei, X., J., A. J., Tan, X., Xu, C., & Xu, X.(2022). Three mw >= 4.7 earthquakes within the changning (china) shale gas field ruptured shallow faults intersecting with hydraulic fracturing wells. Journal of Geophysical Research: Solid Earth, 127(2),e2021JB022946. https://doi.org/10.1029/2021JB022946

8

Pan, H., Sun, M., Wang, X., Zhang, M., Murugananthan, M., & Zhang, Y.(2022). A novel electric-assisted photocatalytic technique using self-doped TiO2 nanotube films. Applied Catalysis B: Environment and Energy, 307(15),121174. https://doi.org/10.1016/j.apcatb.2022.121174

7

Sun, M., Wang, X., Li, Y., Pan, H., Murugananthan, M., Han, Y., Wu, J., Zhang, M., Zhang, Y., & Kang, Z.(2022). Bifunctional Pd-Ox center at the liquid-solid-gas triphase interface for H2O2 photosynthesis. ACS Catalysis, 112(4),2138-2149. https://doi.org/10.1021/acscatal.1c05324

6

Sun, M., Wang, X., Li, Y., Pan, H., Murugananthan, M., Han, Y., Wu, J., Zhang, M., Zhang, Y., & Kang, Z.(2022). Bifunctional Pd-Ox center at the liquid-solid-gas triphase interface for H2O2 photosynthesis. ACS Catalysis, 112(4),2138-2149. https://doi.org/10.1021/acscatal.1c05324

5

Katayama, T., Yoshioka, H., Kaneko, M., Amo, M., Fujii, T., Takahashi, H. A., Yoshida, S., & Sakata, S.(2022). Cultivation and biogeochemical analyses reveal insights into methanogenesis in deep subseafloor sediment at a biogenic gas hydrate site. the isme journal, 16,1464-1472. https://doi.org/10.1038/s41396-021-01175-7

4

Maekawa, T.(2022). Equilibrium conditions of methane, nitrogen and argon hydrates in the presence of propan-2-one and 1,3-dioxolane. Journal of Chemical & Engineering Data, 67(3),768-774. https://doi.org/10.1021/acs.jced.1c00933

3

Jinguuji, M., & Yokota, T.(2022). Investigating soil conditions around buried water pipelines using very-low-frequency band alternating current electrical resistivity survey. Near Surface Geophysics, 20(2),192-207. https://doi.org/10.1002/nsg.12191

2

Tsunazawa, Y., Soma, N., & Sakai, M.(2022). Dem study on identification of mixing mechanisms in a pot blender. Advanced Powder Technology, 33(1),103337. https://doi.org/10.1016/j.apt.2021.10.029

1

Miyazaki, K., Ohno, T., Takehara, T., & Imaizumi, H.(2022). Wear and degradation of drilling performance of polycrystalline diamond compact bit in laboratory test. MATERIALS TRANSACTIONS, 63(3),294-303. https://doi.org/10.2320/matertrans.M-M2021825