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Scott X. Chang

Wikidata Item | Scholia Profile [curation] | Reasonator | SQID

Listed Publications

68 publications found

TitleAuthors (identified)Published InIdentifier(s)TopicPublished Date
Pulp mill biosolids mitigate soil greenhouse gas emissions from applied urea and improve soil fertility in a hybrid poplar plantation[1]Xinli Chen, [2]Barb R. Thomas, [3]Sarah Pattison, [4]Zhengfeng An, [5]Scott X. Chang [Full author list]Journal of Environmental Management [curation]DOI: 10.1016/J.JENVMAN.2023.118474
2023-10-01
New insights into the relationships between livestock grazing behaviors and soil organic carbon stock in an alpine grassland[1]Yuye Shen, [2]Yunying Fang, [3]Huai Chen, [4]Zilong Ma, [5]Chengpeng Huang, [6]Xiaofen Wu, [7]Scott X. Chang, [8]Ehsan Tavakkoli, [9]Yanjiang Cai [Full author list]Agriculture, Ecosystems & Environment [curation]DOI: 10.1016/J.AGEE.2023.108602
grassland [curation]2023-10-01
Litterfall quality modulates soil ammonium and nitrate supply through altering microbial function in bamboo encroachment of broadleaf forests[1]Qiumei Teng, [2]Xiaoni Lu, [3]Qianqian Zhang, [4]Linlin Cai, [5]Muhammad Fahad Sardar, [6]Yongfu Li, [7]Touqeer Abbas, [8]Yong Li, [9]Scott X. Chang, [10]Yongchun Li [Full author list]Geoderma [curation]DOI: 10.1016/J.GEODERMA.2023.116592
2023-09-01
Publisher Correction: Tree diversity increases decadal forest soil carbon and nitrogen accrual[1]Xinli Chen, [2]Anthony R. Taylor, [3]Peter B. Reich, [4]Masumi Hisano, [5]Han Y. H. Chen, [6]Scott X. Chang [Full author list]Nature [curation]DOI: 10.1038/S41586-023-06458-X
2023-07-24
Land-use-driven change in soil labile carbon affects microbial community composition and function[1]Haikuo Zhang, [2]Yunying Fang, [3]Baogang Zhang, [4]Yu Luo, [5]Xiaoyun Yi, [6]Jiasen Wu, [7]Youchao Chen, [8]Tushar C. Sarker, [9]Yanjiang Cai, [10]Scott X. Chang [Full author list]Geoderma [curation]DOI: 10.1016/J.GEODERMA.2022.116056
2022-11-01
Simulated heat wave events increase CO2 and N2O emissions from cropland and forest soils in an incubation experiment[1]Zhengfeng An, [2]Edward W. Bork, [3]David Olefeldt, [4]Cameron N. Carlyle, [5]Scott X. Chang [Full author list]Biology and Fertility of Soils [curation]DOI: 10.1007/S00374-022-01661-W
heat wave [curation]; forest soil [curation]2022-09-02
Meta-analysis shows that plant mixtures increase soil phosphorus availability and plant productivity in diverse ecosystems[1]Xinli Chen, [2]Han Y. H. Chen, [3]Scott X. Chang [Full author list]Nature Ecology and Evolution [curation]DOI: 10.1038/S41559-022-01794-Z
2022-06-27
Functional diversity dominates positive species mixture effects on ecosystem multifunctionality in subtropical plantations[1]Xi Li, [2]Hui Wang, [3]Junwei Luan, [4]Scott X. Chang, [5]Bing Gao, [6]Yi Wang, [7]Shirong Liu [Full author list]Forest Ecosystems [curation]DOI: 10.1016/J.FECS.2022.100039
2022-04-22
Concurrent and rapid recovery of bacteria and protist communities in Canadian boreal forest ecosystems following wildfire[1]Zhongmin Dai, [2]Xiaofei Lv, [3]Bin Ma, [4]Na Chen, [5]Scott X. Chang, [6]Jiahui Lin, [7]Xuehua Wang, [8]Weiqin Su, [9]Huaiting Liu, [10]Yanlan Huang, [11]Caixia Hu, [12]Yu Luo, [13]Randy A. Dahlgren, [14]Jianming Xu [Full author list]Soil Biology and Biochemistry [curation]DOI: 10.1016/J.SOILBIO.2021.108452
forest ecosystem [curation]; forest wildfire [curation]2021-12-01
Soil greenhouse gas emissions and grazing management in northern temperate grasslands[1]Zilong Ma, [2]Bharat M. Shrestha, [3]Edward Bork, [4]Scott X. Chang, [5]Cameron N Carlyle, [6]Timm F. Döbert, [7]Laio Silva Sobrinho, [8]Mark Boyce [Full author list]Science of the Total Environment [curation]DOI: 10.1016/J.SCITOTENV.2021.148975
greenhouse gas [curation]; grassland [curation]; greenhouse gas emissions [curation]2021-11-01
Multi‐year drought alters plant species composition more than productivity across northern temperate grasslands[1]Amgaa Batbaatar, [2]Cameron N Carlyle, [3]Edward Bork, [4]Scott X. Chang, [5]James F. Cahill [Full author list]Journal of Ecology [curation]DOI: 10.1111/1365-2745.13796
grassland [curation]2021-10-31
Plant mixture effects on carbon-degrading enzymes promote soil organic carbon accumulation[1]Baogang Zhang, [2]Yanjiang Cai, [3]Shuijin Hu, [4]Scott X. Chang [Full author list]Soil Biology and Biochemistry [curation]DOI: 10.1016/J.SOILBIO.2021.108457
soil organic carbon [curation]2021-10-16
Functional diversity of decomposers modulates litter decomposition affected by plant invasion along a climate gradient[1]Junwei Luan, [2]Shirong Liu, [3]Siyu Li, [4]Joann Whalen, [5]Yi Wang, [6]Jingxin Wang, [7]Yanchun Liu, [8]Wei Dong, [9]Scott X. Chang [Full author list]Journal of Ecology [curation]DOI: 10.1111/1365-2745.13548
plant invasion [curation]; litter decomposition [curation]; climatic gradient [curation]2020-11-01
Fuel, thermal and surface properties of microwave-pyrolyzed biochars depend on feedstock type and pyrolysis temperature[1]Christopher Nzediegwu, [2]Muhammed Arshad, [3]Aman Ulah, [4]M Anne Naeth, [5]Scott X. Chang [Full author list]Bioresource Technology [curation]DOI: 10.1016/J.BIORTECH.2020.124282
PubMed: 33120061
2020-10-19
Elevated temperature shifts soil N cycling from microbial immobilization to enhanced mineralization, nitrification and denitrification across global terrestrial ecosystems[1]Zhongmin Dai, [2]Mengjie Yu, [3]Huaihai Chen, [4]Haochun Zhao, [5]Yanlan Huang, [6]Weiqin Su, [7]Fang Xia, [8]Scott X. Chang, [9]Philip C Brookes, [10]Randy A. Dahlgren, [11]Jianming Xu [Full author list]Global Change Biology [curation]DOI: 10.1111/GCB.15211
PubMed: 32614503
denitrification [curation]2020-07-02
Residue retention promotes soil carbon accumulation in minimum tillage systems: Implications for conservation agriculture[1]Yuan Li, [2]Zhou Li, [3]Scott X. Chang, [4]Song Cui, [5]Sindhu Jagadamma, [6]Qingping Zhang, [7]Yanjiang Cai [Full author list]Science of the Total Environment [curation]DOI: 10.1016/J.SCITOTENV.2020.140147
PubMed: 32563000
2020-06-11
Carboxyl and hydroxyl groups enhance ammonium adsorption capacity of iron (III) chloride and hydrochloric acid modified biochars[1]Siyuan Wang, [2]Shaoying Ai, [3]Christopher Nzediegwu, [4]Jin-Hyeob Kwak, [5]Md Shahinoor Islam, [6]Yichun Li, [7]Scott X. Chang [Full author list]Bioresource Technology [curation]DOI: 10.1016/J.BIORTECH.2020.123390
PubMed: 32325379
hydrochloric acid [curation]; biochar [curation]2020-04-16
Additive negative effects of decadal warming and nitrogen addition on grassland community stability[1]Qian Wu, [2]Haiyan Ren, [3]Zhongwu Wang, [4]Zhiguo Li, [5]Yinghao Liu, [6]Zhen Wang, [7]Yuanheng Li, [8]Ruiyang Zhang, [9]Mengli Zhao, [10]Scott X. Chang, [11]Guodong Han [Full author list]Journal of Ecology [curation]DOI: 10.1111/1365-2745.13363
2020-02-28
Minimum tillage and residue retention increase soil microbial population size and diversity: Implications for conservation tillage[1]Yuan Li, [2]Qingping Zhang, [3]Yanjiang Cai, [4]Qian Yang, [5]Scott X. Chang [Full author list]Science of the Total Environment [curation]DOI: 10.1016/J.SCITOTENV.2020.137164
PubMed: 32059331
2020-02-06
Silicon fertilizer and biochar effects on plant and soil PhytOC concentration and soil PhytOC stability and fractionation in subtropical bamboo plantations[1]Chengpeng Huang, [2]Li Wang, [3]Xiaoqiang Gong, [4]Zhangting Huang, [5]Miaorong Zhou, [6]Jiong Li, [7]Jiasen Wu, [8]Scott X. Chang, [9]Peikun Jiang [Full author list]Science of the Total Environment [curation]DOI: 10.1016/J.SCITOTENV.2020.136846
PubMed: 32040993
biochar [curation]2020-01-22
Biochar surface complexation and Ni(II), Cu(II), and Cd(II) adsorption in aqueous solutions depend on feedstock type[1]Siyuan Wang, [2]Jin-Hyeob Kwak, [3]Md Shahinoor Islam, [4]M Anne Naeth, [5]Mohamed Gamal El-Din, [6]Scott X. Chang [Full author list]Science of the Total Environment [curation]DOI: 10.1016/J.SCITOTENV.2020.136538
PubMed: 32050382
biochar [curation]2020-01-08
Microbe-mediated attenuation of soil respiration in response to soil warming in a temperate oak forest[1]Yi Wang, [2]Shirong Liu, [3]Jingxin Wang, [4]Scott X. Chang, [5]Junwei Luan, [6]Yanchun Liu, [7]Haibo Lu, [8]Xiaojing Liu [Full author list]Science of the Total Environment [curation]DOI: 10.1016/J.SCITOTENV.2019.134563
PubMed: 31812424
soil respiration [curation]; oakwood [curation]2019-11-21
Extracellular enzyme activity in grass litter varies with grazing history, environment and plant species in temperate grasslands[1]Xiaozhu Chuan, [2]Cameron N Carlyle, [3]Edward W Bork, [4]Scott X. Chang, [5]Daniel B Hewins [Full author list]Science of the Total Environment [curation]DOI: 10.1016/J.SCITOTENV.2019.134562
PubMed: 31731122
grassland [curation]; grass litter [curation]2019-11-05
Spent mushroom substrate and cattle manure amendments enhance the transformation of garden waste into vermicomposts using the earthworm Eisenia fetida[1]Xiaoqiang Gong, [2]Suyan Li, [3]Michael A Carson, [4]Scott X. Chang, [5]Qian Wu, [6]Li Wang, [7]Zhengfeng An, [8]Xiangyang Sun [Full author list]Journal of Environmental Management [curation]DOI: 10.1016/J.JENVMAN.2019.109263
PubMed: 31336340
manure [curation]; Eisenia fœtida [curation]2019-07-20
Biochar properties and lead(II) adsorption capacity depend on feedstock type, pyrolysis temperature, and steam activation[1]Jin-Hyeob Kwak, [2]Md Shahinoor Islam, [3]Siyuan Wang, [4]Selamawit Ashagre Messele, [5]M Anne Naeth, [6]Mohamed Gamal El-Din, [7]Scott X. Chang [Full author list]Chemosphere [curation]DOI: 10.1016/J.CHEMOSPHERE.2019.05.128
PubMed: 31146131
biochar [curation]2019-05-20
Biochar composition-dependent impacts on soil nutrient release, carbon mineralization, and potential environmental risk: A review[1]Ali El-Naggar, [2]Ahmed Hamdy El-Naggar, [3]Sabry M Shaheen, [4]Binoy Sarkar, [5]Scott X. Chang, [6]Daniel C.W. Tsang, [7]Jörg Rinklebe, [8]Yong Sik Ok [Full author list]Journal of Environmental Management [curation]DOI: 10.1016/J.JENVMAN.2019.02.044
PubMed: 31027831
biochar [curation]2019-04-24
Manure pellet, woodchip and their biochars differently affect wheat yield and carbon dioxide emission from bulk and rhizosphere soils[1]Prem Pokharel, [2]Scott X. Chang [Full author list]Science of the Total Environment [curation]DOI: 10.1016/J.SCITOTENV.2018.12.380
PubMed: 31096376
manure [curation]; biochar [curation]; rhizosphere [curation]2018-12-27
Potential for mitigating global agricultural ammonia emission: A meta-analysis[1]Chaopu Ti, [2]Longlong Xia, [3]Scott X. Chang, [4]Xiaoyuan Yan [Full author list]Environmental Pollution [curation]DOI: 10.1016/J.ENVPOL.2018.10.124
PubMed: 30415033
meta-analysis [curation]2018-11-05
Alkyl polyglycoside and earthworm (Eisenia fetida) enhance biodegradation of green waste and its use for growing vegetables[1]Xiaoqiang Gong, [2]Suyan Li, [3]Scott X. Chang, [4]Qian Wu, [5]Linlin Cai, [6]Xiangyang Sun [Full author list]Ecotoxicology and Environmental Safety [curation]DOI: 10.1016/J.ECOENV.2018.10.063
PubMed: 30368139
biodegradation [curation]; Eisenia fœtida [curation]2018-10-24
Introducing trees to agricultural lands increases greenhouse gas emission during spring thaw in Canadian agroforestry systems[1]Jin-Hyeob Kwak, [2]Sang-Sun Lim, [3]Mark Baah-Acheamfour, [4]Woo-Jung Choi, [5]Farrah Fatemi, [6]Cameron N Carlyle, [7]Edward W Bork, [8]Scott X. Chang [Full author list]Science of the Total Environment [curation]DOI: 10.1016/J.SCITOTENV.2018.10.241
PubMed: 30380487
greenhouse gas [curation]; agroforestry [curation]; agricultural land [curation]; greenhouse gas emissions [curation]2018-10-22
Nitrogen deposition affects both net and gross soil nitrogen transformations in forest ecosystems: A review[1]Yi Cheng, [2]Jing Wang, [3]Scott X. Chang, [4]Zucong Cai, [5]Christoph Müller, [6]Jinbo Zhang [Full author list]Environmental Pollution [curation]DOI: 10.1016/J.ENVPOL.2018.10.054
PubMed: 30384066
forest ecosystem [curation]2018-10-11
A global strategy to mitigate the environmental impact of China's ruminant consumption boom[1]Yuanyuan Du, [2]Ying Ge, [3]Yuan Ren, [4]Xing Fan, [5]Kaixuan Pan, [6]Linshan Lin, [7]Xu Wu, [8]Yong Min, [9]Laura A. Meyerson, [10]Mikko Heino, [11]Scott X. Chang, [12]Xiaozi Liu, [13]Feng Mao, [14]Guofu Yang, [15]Changhui Peng, [16]Zelong Qu, [17]Jie Chang, [18]Raphael Didham [Full author list]Nature Communications [curation]DOI: 10.1038/S41467-018-06381-0
PubMed: 30297840
general chemistry [curation]; environmental effects [curation]2018-10-08
Environmental functions of biochar-a special issue for the 3rd Asia Pacific Biochar Conference (APBC 2016)[1]Hailong Wang, [2]Yong Sik Ok, [3]Scott X. Chang, [4]Yongtao Li [Full author list]Environmental Science and Pollution Research [curation]DOI: 10.1007/S11356-018-2937-7
PubMed: 30099711
biochar [curation]2018-08-11
Pine sawdust biochar reduces GHG emission by decreasing microbial and enzyme activities in forest and grassland soils in a laboratory experiment[1]Prem Pokharel, [2]Jin-Hyeob Kwak, [3]Yong Sik Ok, [4]Scott X. Chang, [4-Q43318958]Scott X. Chang [Full author list]Science of the Total Environment [curation]DOI: 10.1016/J.SCITOTENV.2017.12.343
PubMed: 29996421
environmental engineering [curation]; environmental chemistry [curation]; biochar [curation]; grassland [curation]; grassland soil [curation]2018-06-01
Bamboo biochar amendment improves the growth and reproduction of Eisenia fetida and the quality of green waste vermicompost[1]Xiaoqiang Gong, [2]Linlin Cai, [3]Suyan Li, [4]Scott X. Chang, [5]Xiangyang Sun, [6]Zhengfeng An [Full author list]Ecotoxicology and Environmental Safety [curation]DOI: 10.1016/J.ECOENV.2018.03.023
PubMed: 29550437
vermicompost [curation]; biochar [curation]; Eisenia fœtida [curation]2018-03-20
Recoupling Industrial Dairy Feedlots and Industrial Farmlands Mitigates the Environmental Impacts of Milk Production in China.[1]Xing Fan, [2]Jie Chang, [3]Yuan Ren, [4]Xu Wu, [5]Yuanyuan Du, [6]Ronghua Xu, [7]Dong Liu, [8]Scott X. Chang, [9]Laura A. Meyerson, [10]Changhui Peng, [11]Ying Ge [Full author list]Environmental Science & Technology [curation]DOI: 10.1021/ACS.EST.7B04829
PubMed: 29518325
environmental effects [curation]; agricultural land [curation]2018-03-14
Phosphorus sorption capacity of biochars varies with biochar type and salinity level[1]Abdelhafid Ahmed Dugdug, [2]Scott X. Chang, [3]Yong Sik Ok, [4]Anushka Upamali Rajapaksha, [5]Anthony Anyia [Full author list]Environmental Science and Pollution Research [curation]DOI: 10.1007/S11356-018-1368-9
PubMed: 29429110
biochar [curation]2018-02-10
Grazing and climate effects on soil organic carbon concentration and particle-size association in northern grasslands.[1]Daniel B Hewins, [2]Mark P Lyseng, [3]Donald F Schoderbek, [4]Mike Alexander, [5]Walter D Willms, [6]Cameron N Carlyle, [7]Scott X. Chang, [8]Edward W Bork [Full author list]Scientific Reports [curation]DOI: 10.1038/S41598-018-19785-1
PubMed: 29358591
grassland [curation]; soil organic carbon [curation]2018-01-22
Flexible and Self-Healing Aqueous Supercapacitors for Low Temperature Applications: Polyampholyte Gel Electrolytes with Biochar Electrodes[1]Xinda Li, [2]Li Liu, [3]Xianzong Wang, [4]Yong Sik Ok, [5]Janet A W Elliott, [6]Scott X. Chang, [7]Hyun-Joong Chung [Full author list]Scientific Reports [curation]DOI: 10.1038/S41598-017-01873-3
PubMed: 28490815
supercapacitor [curation]; biochar [curation]2017-05-10
Adsorption of ammonium in aqueous solutions by pine sawdust and wheat straw biochars[1]Hye In Yang, [2]Kangyi Lou, [3]Anushka Upamali Rajapaksha, [4]Yong Sik Ok, [5]Anthony O Anyia, [6]Scott X. Chang [Full author list]Environmental Science and Pollution Research [curation]DOI: 10.1007/S11356-017-8551-2
PubMed: 28229381
biochar [curation]; wheat straw [curation]2017-02-22
Forest and grassland cover types reduce net greenhouse gas emissions from agricultural soils[1]Mark Baah-Acheamfour, [2]Cameron N Carlyle, [3]Sang-Sun Lim, [4]Edward W Bork, [5]Scott X. Chang [Full author list]Science of the Total Environment [curation]DOI: 10.1016/J.SCITOTENV.2016.07.106
PubMed: 27450260
agriculture [curation]; greenhouse gas [curation]; grassland [curation]; agricultural soil [curation]; greenhouse gas emissions [curation]2016-07-20
Pyrolysis temperature and steam activation effects on sorption of phosphate on pine sawdust biochars in aqueous solutions[1]Kangyi Lou, [2]Anushka Upamali Rajapaksha, [3]Yong Sik Ok, [4]Scott X. Chang [Full author list]Chemical Speciation and Bioavailability [curation]DOI: 10.1080/09542299.2016.1165080
biochar [curation]2016-03-24
Sorption of copper(II) from synthetic oil sands process-affected water (OSPW) by pine sawdust biochars: effects of pyrolysis temperature and steam activation[1]Kangyi Lou, [2]Anushka Upamali Rajapaksha, [3]Yong Sik Ok, [4]Scott X. Chang [Full author list]Journal of Soils and Sediments [curation]DOI: 10.1007/S11368-016-1382-9
biochar [curation]2016-03-11
Coarse Woody Debris Increases Microbial Community Functional Diversity but not Enzyme Activities in Reclaimed Oil Sands Soils[1]Jin-Hyeob Kwak, [2]Scott X. Chang, [3]M Anne Naeth, [4]Wolfgang Schaaf [Full author list]PLOS One [curation]DOI: 10.1371/JOURNAL.PONE.0143857
PubMed: 26618605
2015-11-30
Sample storage-induced changes in the quantity and quality of soil labile organic carbon[1]Shou-Qin Sun, [2]Hui-Ying Cai, [3]Scott X. Chang, [4]Jagtar S Bhatti [Full author list]Scientific Reports [curation]DOI: 10.1038/SREP17496
PubMed: 26617054
2015-11-30
Fine root dynamics in lodgepole pine and white spruce stands along productivity gradients in reclaimed oil sands sites[1]Ghulam Murtaza Jamro, [2]Scott X. Chang, [3]M Anne Naeth, [4]Min Duan, [5]Jason House [Full author list]Ecology and Evolution [curation]DOI: 10.1002/ECE3.1742
PubMed: 26668730
productivity gradient [curation]2015-10-02
SMART biochar technology—A shifting paradigm towards advanced materials and healthcare research[1]Yong Sik Ok, [2]Scott X. Chang, [3]Bin Gao, [4]Hyun-Joong Chung [Full author list]DOI: 10.1016/J.ETI.2015.08.003
paradigm shift [curation]; biochar [curation]; soil science [curation]2015-10-01
Determinants of bacterial communities in Canadian agroforestry systems[1]Samiran Banerjee, [2]Mark Baah-Acheamfour, [3]Cameron N Carlyle, [4]Andrew Bissett, [5]Alan E Richardson, [6]Tariq Siddique, [7]Edward W Bork, [8]Scott X. Chang [Full author list]Environmental Microbiology [curation]DOI: 10.1111/1462-2920.12986
PubMed: 26184386
agroforestry [curation]2015-08-11
Production of carbon occluded in phytolith is season-dependent in a bamboo forest in subtropical China[1]Zhang-Ting Huang, [2]Pei-Kun Jiang, [3]Scott X. Chang, [4]Yan Zhang, [5]Yu-Qi Ying [Full author list]PLOS One [curation]DOI: 10.1371/JOURNAL.PONE.0106843
PubMed: 25188462
phytolith [curation]2014-09-04
Soil quality assessment for peat-mineral mix cover soil used in oil sands reclamation[1]A A Ojekanmi, [2]Scott X. Chang [Full author list]Journal of Environmental Quality [curation]DOI: 10.2134/JEQ2014.02.0061
PubMed: 25603242
peat [curation]; Soil quality assessment [curation]2014-09-01
Agricultural ammonia emissions contribute to China's urban air pollution[1]Baojing Gu, [2]Mark A Sutton, [3]Scott X. Chang, [4]Ying Ge, [5]Jie Chang [Full author list]Frontiers in Ecology and the Environment [curation]DOI: 10.1890/14.WB.007
2014-06-01
Pyrolysis condition affected sulfamethazine sorption by tea waste biochars[1]Anushka Upamali Rajapaksha, [2]Meththika Vithanage, [3]Ming Zhang, [4]Mahtab Ahmad, [5]Dinesh Mohan, [6]Scott X. Chang, [7]Sergio Angeli [Full author list]Bioresource Technology [curation]DOI: 10.1016/J.BIORTECH.2014.05.029
PubMed: 24926603
biochar [curation]2014-05-20
Long-term intensive management increased carbon occluded in phytolith (PhytOC) in bamboo forest soils[1]Zhang-ting Huang, [2]Yong-fu Li, [3]Pei-kun Jiang, [4]Scott X. Chang, [5]Zhao-liang Song, [6]Juan Liu, [7]Guo-mo Zhou [Full author list]Scientific Reports [curation]DOI: 10.1038/SREP03602
PubMed: 24398703
phytolith [curation]; forest soil [curation]2014-01-08
Nitrogen footprint in China: food, energy, and nonfood goods.[1]Baojing Gu, [2]Allison Leach, [3]Lin Ma, [4]James N. Galloway, [5]Scott X. Chang, [6]Ying Ge, [7]Jie Chang [Full author list]Environmental Science & Technology [curation]DOI: 10.1021/ES401344H
PubMed: 23883136
2013-08-06
Scaling relationships among twig size, leaf size and leafing intensity in a successional series of subtropical forests[1]En-Rong Yan, [2]Xi-Hua Wang, [3]Scott X. Chang, [4]Fangliang He [Full author list]Tree Physiology [curation]DOI: 10.1093/TREEPHYS/TPT042
PubMed: 23824241
2013-06-01
Plant trait-species abundance relationships vary with environmental properties in subtropical forests in eastern china[1]En-Rong Yan, [2]Xiao-Dong Yang, [3]Scott X. Chang, [4]Xi-Hua Wang [Full author list]PLOS One [curation]DOI: 10.1371/JOURNAL.PONE.0061113
PubMed: 23560114
abundance [curation]; plant trait [curation]2013-04-03
Critical loads and H+ budgets of forest soils affected by air pollution from oil sands mining in Alberta, Canada[1]Kangho Jung, [2]Scott X. Chang, [3]Yong Sik Ok, [4]M.A. Arshad [Full author list]Atmospheric Environment [curation]DOI: 10.1016/J.ATMOSENV.2012.12.010
Canada [curation]; air pollution [curation]; atmospheric sciences [curation]; forest soil [curation]2013-04-01
Quantitative trait loci for water-use efficiency in barley (Hordeum vulgare L.) measured by carbon isotope discrimination under rain-fed conditions on the Canadian Prairies[1]Jing Chen, [2]Scott X. Chang, [3]Anthony O Anyia [Full author list]Theoretical and Applied Genetics [curation]DOI: 10.1007/S00122-012-1817-7
PubMed: 22350092
Hordeum vulgare [curation]; quantitative trait locus [curation]2012-02-15
Effects of monocot and dicot types and species richness in mesocosm constructed wetlands on removal of pollutants from wastewater[1]Chong-Bang Zhang, [2]Wen-Li Liu, [3]Jiang Wang, [4]Yong Ge, [5]Ying Ge, [6]Scott X. Chang, [7]Jie Chang [Full author list]Bioresource Technology [curation]DOI: 10.1016/J.BIORTECH.2011.08.081
PubMed: 21937222
wastewater [curation]; constructed wetland [curation]; mesocosm [curation]; species richness [curation]2011-08-25
Gene discovery in cereals through quantitative trait loci and expression analysis in water-use efficiency measured by carbon isotope discrimination[1]Jing Chen, [2]Scott X. Chang, [3]Anthony O Anyia [Full author list]Plant, Cell and Environment [curation]DOI: 10.1111/J.1365-3040.2011.02397.X
PubMed: 21752030
quantitative trait locus [curation]2011-08-16
Effects of canopy-deposition interaction on H+ supply to soils in Pinus banksiana and Populus tremuloides ecosystems in the Athabasca oil sands region in Alberta, Canada.[1]Kangho Jung, [2]Scott X. Chang, [3]M A Charlie Arshad [Full author list]Environmental Pollution [curation]DOI: 10.1016/J.ENVPOL.2011.01.012
PubMed: 21310518
ecosystem [curation]; Populus tremuloides [curation]; Pinus banksiana [curation]; canopy [curation]2011-05-01
Sulfate adsorption properties of acid-sensitive soils in the Athabasca oil sands region in Alberta, Canada[1]Kangho Jung, [2]Sergio Angeli, [3]Scott X. Chang [Full author list]Chemosphere [curation]DOI: 10.1016/J.CHEMOSPHERE.2011.03.034
PubMed: 21489599
Canada [curation]2011-04-13
Effects of plant diversity on nutrient retention and enzyme activities in a full-scale constructed wetland[1]Chong-Bang Zhang, [2]Jiang Wang, [3]Wen-Li Liu, [4]Si-Xi Zhu, [5]Dong Liu, [6]Scott X. Chang, [7]Jie Chang, [8]Ying Ge [Full author list]Bioresource Technology [curation]DOI: 10.1016/J.BIORTECH.2009.10.001
PubMed: 19864127
biodiversity [curation]; constructed wetland [curation]; plant diversity [curation]2009-10-27
Different responses of two Mosla species to potassium limitation in relation to acid rain deposition[1]Meng Wang, [2]Bao-jing Gu, [3]Ying Ge, [4]Zhen Liu, [5]De-an Jiang, [6]Scott X. Chang, [7]Jie Chang [Full author list]Journal of Zhejiang University. Science. B [curation]DOI: 10.1631/JZUS.B0920037
PubMed: 19650194
acid rain [curation]2009-08-01
Technical note: nitrogen fertilization effects on the degradation of aged diesel oil in composted drilling wastes[1]Woo-Jung Choi, [2]Scott X. Chang [Full author list]International Journal of Phytoremediation [curation]DOI: 10.1080/15226510802655971
PubMed: 19810347
2009-07-01
Changes in nitrogen isotopic compositions during composting of cattle feedlot manure: effects of bedding material type.[1]Young-Joo Kim, [2]Woo-Jung Choi, [3]Sang-Sun Lim, [4]Jin-Hyeob Kwak, [5]Scott X. Chang, [6]Han-Yong Kim, [7]Kwang-Sik Yoon, [8]Hee-Myong Ro [Full author list]Bioresource Technology [curation]DOI: 10.1016/J.BIORTECH.2007.11.012
PubMed: 18077156
manure [curation]; compost [curation]2008-02-20
Drainage affects tree growth and C and N dynamics in a minerotrophic peatland[1]Woo-Jung Choi, [2]Scott X. Chang, [3]Jagtar S Bhatti [Full author list]Ecology [curation]DOI: 10.1890/0012-9658(2007)88[443:DATGAC]2.0.CO;2
PubMed: 17479762
peatland [curation]; minerotrophic peat [curation]2007-02-01
White spruce response to co-composted hydrocarbon-contaminated drilling waste: effects of compost age and nitrogen fertilization[1]Woo-Jung Choi, [2]Scott X. Chang, [3]Xiying Hao [Full author list]Journal of Environmental Quality [curation]DOI: 10.2134/JEQ2005.0436
PubMed: 15998854
compost [curation]2005-07-05
Correct Q number of author item for selected works.
NO replacement author: revert to author name strings

Common author items in these papers

Common names in these papers


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