สุรเชษฎ์ อร่ามรักษ์
รองศาสตราจารย์
ภาควิชาปฐพีวิทยา คณะเกษตร บางเขน
agrscar@ku.ac.th
02-942-8104-5ต่อ224
EDUCATION
- Ph.D. (Soil Science), Washington State University, USA, 2557
- วท.ม.(เกษตรศาสตร์) สาขาวิชาปฐพีวิทยา, ม.เกษตรศาสตร์, ประเทศไทย, 2550
- วท.บ.(เคมีการเกษตร) เกียรตินิยมอันดับ 1, ม.เกษตรศาสตร์, ประเทศไทย, 2548
RESOURCE
แหล่งที่มา
ผลงาน
Works
INTEREST
ความสนใจ
ฟิสิกส์สิ่งแวดล้อมดิน, อุทกวิทยาเขตวาโดส
Expertise Cloud
ความเชี่ยวชาญ
Person
Relationship
นักวิจัย
ที่มีผลงานมากที่สุด 10 คนแรก
Scopus
h-index
h-index: 11
# | Document title | Authors | Year | Source | Cited by |
---|---|---|---|---|---|
1 | Role of air-water interfaces in colloid transport in porous media: A review | Flury M., Aramrak S. | 2017 | Water Resources Research, 53(7), pp. 5247-5275 | 100 |
2 | Detachment of deposited colloids by advancing and receding air-water interfaces | Aramrak S., Flury M., Flury M., Harsh J.B. | 2011 | Langmuir, 27(16), pp. 9985-9993 | 69 |
3 | Does colloid shape affect detachment of colloids by a moving air-water interface? | Aramrak S., Aramrak S., Flury M., Harsh J.B., Zollars R.L., Davis H.P. | 2013 | Langmuir, 29(19), pp. 5770-5780 | 49 |
4 | Transport of barrel and spherical shaped colloids in unsaturated porous media | Knappenberger T., Knappenberger T., Knappenberger T., Aramrak S., Aramrak S., Aramrak S., Flury M., Flury M. | 2015 | Journal of Contaminant Hydrology, 180, pp. 69-79 | 40 |
5 | Biochar and ash derived from silicon-rich rice husk decrease inorganic arsenic species in rice grain | Leksungnoen P., Wisawapipat W., Ketrot D., Aramrak S., Nookabkaew S., Rangkadilok N., Rangkadilok N., Satayavivad J., Satayavivad J., Satayavivad J. | 2019 | Science of the Total Environment, 684, pp. 360-370 | 36 |
6 | Colloid mobilization and transport during capillary fringe fluctuations | Aramrak S., Aramrak S., Flury M., Harsh J.B., Zollars R.L. | 2014 | Environmental Science and Technology, 48(13), pp. 7272-7279 | 28 |
7 | Sulfur amendments to soil decrease inorganic arsenic accumulation in rice grain under flooded and nonflooded conditions: Insights from temporal dynamics of porewater chemistry and solid-phase arsenic solubility | Wisawapipat W., Chooaiem N., Aramrak S., Chittamart N., Nookabkaew S., Rangkadilok N., Rangkadilok N., Satayavivad J., Satayavivad J., Satayavivad J., Christl I. | 2021 | Science of the Total Environment, 779, 146352 | 26 |
8 | Speciation and pH- and particle size-dependent solubility of phosphorus in tropical sandy soils | Saentho A., Saentho A., Wisawapipat W., Lawongsa P., Aramrak S., Prakongkep N., Klysubun W., Christl I. | 2022 | Geoderma, 408, 115590 | 23 |
9 | Effects of Chrysopogon zizanioides root biomass and plant age on hydro-mechanical behavior of root-permeated soils | Rajamanthri K., Jotisankasa A., Aramrak S. | 2021 | International Journal of Geosynthetics and Ground Engineering, 7(2), 36 | 18 |
10 | Potassium influence on soil aggregate stability | Phocharoen Y., Aramrak S., Chittamart N., Wisawapipat W. | 2018 | Communications in Soil Science and Plant Analysis, 49(17), pp. 2162-2174 | 17 |
11 | Silicate minerals control the potential uses of phosphorus-laden mineral-engineered biochar as phosphorus fertilizers | Sornhiran N., Aramrak S., Prakongkep N., Wisawapipat W. | 2022 | Biochar, 4(1), 2 | 12 |
12 | Biogeochemical cycling of zinc in soil-cassava cropping system in Thailand | Leksungnoen P., Aramrak S., Chittamart N., Wisawapipat W. | 2022 | Geoderma, 406, 115496 | 10 |
13 | Combining spectroscopic and flux measurement techniques to determine solid-phase speciation and solubility of phosphorus in agricultural soils | Tuntrachanida J., Wisawapipat W., Aramrak S., Chittamart N., Klysubun W., Amonpattaratkit P., Duboc O., Wenzel W.W. | 2022 | Geoderma, 410, 115677 | 9 |
14 | Assessment of multielement extractants for prediction of available potassium in Thai soils | Aramrak S., Chanchareonsook J., Suwannarat C., Sarobol E. | 2007 | Kasetsart Journal - Natural Science, 41(3), pp. 461-466 | 9 |
15 | Aluminum- And iron-engineered biochar from sugarcane filter cake as phosphorus adsorbents and fertilizers | Sornhiran N., Tuntrachanida J., Malachey P., Thongtuk P., Wisawapipat W., Aramrak S., Prakongkep N. | 2021 | ScienceAsia, 47(2), pp. 220-227 | 5 |
16 | Phosphate mineral solubility controls on cassava root exudates, rhizosphere nutrient availability, and plant nutrient accumulation | Nansahwang A., Nansahwang A., Leksungnoen P., Armatmontree C., Aramrak S., Kongsil P., Wisawapipat W. | 2022 | Rhizosphere, 23, 100575 | 5 |
17 | Triggering root proton efflux as an aluminum-detoxifying mechanism in cassava | Punpom T., Leksungnoen P., Aramrak S., Kongsil P., Wisawapipat W. | 2022 | Annals of Agricultural Sciences, 67(2), pp. 173-180 | 4 |
18 | Dynamics of soil aggregate stability as induced by potassium in a soil-plant system | Aramrak S., Chittamart N., Wisawapipat W., Rattanapichai W., Phun-Iam M., Aramrak A. | 2021 | Soil Science and Plant Nutrition | 4 |
19 | Utilization of Na-bentonite to Improve pH-buffering Capacity of Acid Sulfate Soils in Natural Gas Transmission Pipeline Rights-of-Way, Thailand | Chittamart N., Tawornpruek S., Ketrot D., Aramrak S., Chittanukul K., Sattapun R. | 2018 | IOP Conference Series: Earth and Environmental Science, 151(1), 012023 | 4 |
20 | Elemental dynamics in porewater of an acid sulfate paddy soil as affected by sodium bentonite and dolomite amendments: Insights from field study | Wongleecharoen C., Wisawapipat W., Ketrot D., Chittamart N., Aramrak S., Chittanukul K., Sattapun R., Tawornpruek S. | 2020 | E3S Web of Conferences, 167, 02003 | 3 |
21 | Feasibility assessment of bentonite drilling mud to improve the physical quality of loamy sand soil and water deficit of forest plant seedlings | Tawornpruek S., Aramrak S., Ketrot D., Wongleecharoen C., Wisawapipat W., Chittamart N., Songrukkiat K., Augsorntung S. | 2021 | Journal of the Air and Waste Management Association | 2 |
22 | Utilization of drilling sodium bentonite to improve acidity and aluminum–iron toxicity in acid sulfate soil beneath water storage pond base | Tawornpruek S., Ketrot D., Chittamart N., Aramrak S., Wongleecharoen C., Sattapun R., Chittanukul K. | 2023 | Results in Engineering, 17, 100881 | 2 |
23 | Iron toxicity downregulates root-proton efflux and decreases zinc accumulation in cassava | Armatmontree C., Leksungnoen P., Nansahwang A., Nansahwang A., Aramrak S., Kongsil P., Wisawapipat W. | 2023 | Annals of Agricultural Sciences, 68(1), pp. 97-104 | 2 |
24 | Biogeochemical Cycling of Carbon and Nitrogen in Rainfed Rice Production Under Conventional and Organic Rice Farming | Kaiphoem J., Kaiphoem J., Sornhiran N., Leksungnoen P., Saentho A., Nansahwang A., Khunthong S., Aramrak S., Prakongkep N., Wisawapipat W. | 2022 | Environment and Natural Resources Journal, 20(5), pp. 438-454 | 1 |
25 | Effect of long-term maize and cassava cropping management on soil organic carbon sequestration in different soil aggregate fractions | Tantarawongsa P., Chidthaisong A., Aramrak S., Yagi K., Tripetchkul S., Sriphirom P., Onsamrarn W., Nobuntou W., Amornpon W. | 2025 | Soil Science and Plant Nutrition | 1 |
26 | Circular utilization of sugarcane bagasse for water and nutrient retention in two-type of sugarcane cultivation soil by biochar and hydrochar addition | Taweengern K., Thapsamut T., Khaobang C., Areeprasert C., Aramrak S. | 2025 | Fuel, 392, 134870 | 0 |
27 | Physical qualities of acid sulfate soil: its limitations and implications for oil palm production | Srimawong P., Srimawong P., Aramrak S., Chittamart N., Jotisankasa A. | 2024 | Soil Science and Plant Nutrition | 0 |
28 | Influence of Biochar on Unsaturated Hydraulic Characteristics of a Tropical Residual Silty Sand | Hossain M., Jotisankasa A., Aramrak S., Nishimura S., Yodsudyai W. | 2024 | International Journal of Geosynthetics and Ground Engineering, 10(5), 78 | 0 |
29 | Association between Physical Quality and Chemical Fertility of Lateritic Soils under Dry Dipterocarp Forest and Cultivation | Panawong T., Aramrak S., Chittamart N., Wisawapipat W., Tantachasatid P., Kullawong A. | 2021 | Communications in Soil Science and Plant Analysis | 0 |